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S Pang

Publications and source records attributed to S Pang.

At least 73 records · Page 4Linked to original sources

Comparison of adrenocorticotropin and adrenal steroid responses to corticotropin-releasing hormone versus metyrapone testing in patients with hypopituitarism.

We compared the responses of ACTH and cortisol (F) to corticotropin-releasing hormone (CRH) administration (ovine 1 microgram/kg i.v. bolus) with the responses of urinary 17-OH corticosteroids (17-OHCS) and serum deoxycorticosterone (DOC) to metyrapone administration (450 mg/m2/dose every 4 h x seven doses) in 16 hypopituitary patients. Glucocorticoid therapy for these patients was withheld for a minimum of 3 wk before testing. The CRH test was performed 3 d before or 3 wk after the metyrapone test was used to diagnose the ACTH reserve status. In nine ACTH-intact hypopituitary patients (post-metyrapone 17-OHCS > 12.2 mumol/m2/d; DOC > or = 11.5 nmol/L), the peak F (497-773 nmol/L) and ACTH (5.2-22 pmol/L) responses to CRH stimulation were similar to those of normal subjects (F peak = 554-993 nmol/L and ACTH peak = 6-25 pmol/L at 15-60 min). In one patient with partial ACTH deficiency (postmetyrapone 17-OHCS = 10.5 mumol/m2/d; DOC = 6 nmol/L), the peak F response was low and delayed (246 nmol/L at 180 min) and the peak ACTH response was normal (7 pmol/L). Six severely ACTH-deficient patients (postmetyrapone 17-OHCS < 5.4 mumol/m2/d; DOC < or = 3.4 nmol/L) had a low F response at 15-90 min in all, with a delayed rise in three at 120-180 min in response to CRH administration, whereas ACTH responses were variable: absent or low, normal, delayed, or persistently exaggerated. In conclusion, the CRH-stimulated F response pattern in hypopituitary patients was comparable to the urinary 17-OHCS and serum DOC response to metyrapone administration.(ABSTRACT TRUNCATED AT 250 WORDS)

17-Hydroxycorticosteroids↗

Evidence of a steroidogenic enzyme gene dose effect on adrenal gene expression in hereditary rabbit congenital adrenal hyperplasia.

We previously reported the gene deletion encoding cytochrome P-450 cholesterol side-chain cleavage enzyme (P-450SCC, resulting in complete elimination of the adrenal gene expression and causing congenital adrenal hyperplasia in the rabbit. Using the rabbit congenital adrenal hyperplasia model, we investigated the wild type (wt) P-450SCC gene dose effect on gene expression in three P-450SCC genotype animals [wt/wt, wt/mutant (mt), mt/mt] identified by Southern blot analysis. Northern blots using a rabbit P-450SCC cDNA probe revealed no detectable P-450SCC mRNA in individual adrenals of animals with congenital adrenal hyperplasia (mt/mt) and approximately half or slightly less than half the levels of the mRNA in the pooled adrenals of five heterozygous (wt/mt) newborn animals compared with the mRNA levels in the pooled adrenals of five homozygous normal (wt/wt) newborn animals. Identical P-450SCC mRNA levels were found individual adrenals of adult animals with regard to the P-450SCC genotype, although at a higher expression level than in the newborn animals of the same genotype. Control Northern blots using human CPY21-B cDNA and cytoplasmic actin cDNA probes confirmed the accuracy and integrity of RNA. Western immunoblotting using anti-ovine P-450SCC antibody revealed decreased P-450SCC protein in the adrenals of wt/mt animals at approximately half the level of the P-450SCC protein in the adrenals of the wt/wt animals. Baseline and ACTH-stimulated serum corticosterone (B) levels in vivo were similar between the age-matched wt/mt and wt/wt animals, whereas ACTH-stimulated B levels in adult animals were higher than those in the newborn animals irrespective of P-450SCC genotype.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Glands↗

Molecular basis of congenital adrenal hyperplasia in two siblings with classical nonsalt-losing 3 beta-hydroxysteroid dehydrogenase deficiency.

We report mutations of the type II 3 beta-hydroxysteroid dehydrogenase (3 beta HSD) gene in two siblings, male and female, with congenital adrenal hyperplasia caused by classical nonsalt-losing 3 beta HSD deficiency. During childhood, the male sibling, born with ambiguous genitalia, and the female sibling, born with normal genitalia, both manifested symptoms of mild androgen excess; both apparently had normal zona glomerulosa function. Gonadal dynamic study at puberty showed the presence of partial gonadal 3 beta HSD deficiency in both siblings despite their spontaneous pubertal maturation. The 5'-region as well as exons I-II, III, and IV and portions of the adjacent introns of the type II 3 beta HSD gene were amplified by polymerase chain reaction and sequenced. In both siblings and their mother, an identical single nucleotide substitution mutation in intron III, six bases up-stream from exon IV, was identified in one allele. This mutation, G to A at nucleotide 6651, may create a new splicing junction and affect the normal splicing of the messenger ribonucleic acid. In the other allele of both siblings, a missense mutation from GGG (Gly) to AGG (Arg) at codon 129 (G129R) in exon IV was found. We assessed the effect of the G129R missense mutation on enzymatic activity by in vitro analysis of the mutant recombinant enzyme generated by site-directed mutagenesis after its transient expression in COS-1 cells. Using homogenates from transfected cells, the G129R 3 beta HSD enzyme showed a Km value for pregnenolone of 10 +/- 2 mumol/L compared with 1.00 +/- 0.03 mumol/L for the wild-type type II 3 beta HSD enzyme. When dehydroepiandrosterone was used as substrate, the Km value for G129R3 beta HSD was 14 +/- 2 mumol/L compared with 2.1 +/- 0.2 mumol/L for the wild-type II 3 beta HSD enzyme. In addition to an apparent decrease in affinity, the G129R mutation caused a marked decrease in the apparent relative specific activity, thus leading to apparent relative specific efficiencies (relative specific activity/Km) of 2.0% and 4.7% that of the normal type II 3 beta HSD using pregnenolone or dehydroepiandrosterone as substrate, respectively. It appears likely that this low level of activity is sufficient to prevent salt loss, but it is also possible that part of the enzymatic activity comes from the putative remaining percentage of correctly spliced n6651 allele in these patients.

3-Hydroxysteroid Dehydrogenases↗

GLUT-4 NH2 terminus contains a phenylalanine-based targeting motif that regulates intracellular sequestration.

Expression of chimeras, composed of portions of two different glucose transporter isoforms (GLUT-1 and GLUT-4), in CHO cells had indicated that the cytoplasmic NH2 terminus of GLUT-4 contains important targeting information that mediates intracellular sequestration of this isoform (Piper, R. C., C. Tai, J. W. Slot, C. S. Hahn, C. M. Rice, H. Huang, D. E. James. 1992. J. Cell Biol. 117:729-743). In the present studies, the amino acid constituents of the GLUT-4 NH2-terminal targeting domain have been identified. GLUT-4 constructs containing NH2-terminal deletions or alanine substitutions within the NH2 terminus were expressed in CHO cells using a Sindbis virus expression system. Deletion of eight amino acids from the GLUT-4 NH2 terminus or substituting alanine for phenylalanine at position 5 in GLUT-4 resulted in a marked accumulation of the transporter at the plasma membrane. Mutations at other amino acids surrounding Phe5 also caused increased cell surface expression of GLUT-4 but not to the same extent as the Phe5 mutation. GLUT-4 was also localized to clathrin lattices and this colocalization was abolished when either the first 13 amino acids were deleted or when Phe5 was changed to alanine. To ascertain whether the targeting information within the GLUT-4 NH2-terminal targeting domain could function independently of the glucose transporter structure this domain was inserted into the cytoplasmic tail of the H1 subunit of the asialoglycoprotein receptor. H1 with the GLUT-4 NH2 terminus was predominantly localized to an intracellular compartment similar to GLUT-4 and was sequestered more from the cell surface than was the wild-type H1 protein. It is concluded that the NH2 terminus of GLUT-4 contains a phenylalanine-based targeting motif that mediates intracellular sequestration at least in part by facilitating interaction of the transporter with endocytic machinery located at the cell surface.

Amino Acid Sequence↗

Mutations in the type II 3 beta-hydroxysteroid dehydrogenase gene in a patient with classic salt-wasting 3 beta-hydroxysteroid dehydrogenase deficiency congenital adrenal hyperplasia.

Inherited adrenal and gonadal 3 beta-hydroxysteroid dehydrogenase (3 beta-HSD) deficiency is most likely caused by a mutation of the type II 3 beta-HSD gene. Cloning and sequencing of exons I-II, III, and IV and portions of the adjacent introns, amplified by polymerase chain reaction using primers specific for the type II gene, in one male pseudohermaphrodite with salt-wasting classic 3 beta-HSD deficiency congenital adrenal hyperplasia revealed the same mutation in all nine clones of exon IV consisting of a missense mutation at codon 248 [GTC(Val)-->AAC(Asn)] followed by a frameshift mutation at codon 249 [CGA (Arg)-->TA], resulting in a stop codon TAG, and normal sequences of exon I-II and III and the adjacent portions of introns. The same codon 248 and 249 mutations were found on one clone of his mother's DNA, but two other clones revealed normal sequences. These data indicate a homozygous combined missense/frameshift mutation in exon IV of the type II 3 beta-HSD gene resulting in severe salt-wasting adrenal and gonadal 3 beta-HSD deficiency in the patient.

3-Hydroxysteroid Dehydrogenases↗

Inherited congenital adrenal hyperplasia in the rabbit is caused by a deletion in the gene encoding cytochrome P450 cholesterol side-chain cleavage enzyme.

Congenital adrenal hyperplasia (CAH) comprises a family of inherited human disorders caused by a defect in cortisol biosynthesis. We previously reported absent cholesterol side-chain cleavage enzyme cytochrome P450 (P450scc) expression in rabbits affected with CAH. Further molecular studies via Southern blotting analyses, using a full-length human P450scc cDNA probe and a cloned rabbit P450scc cDNA probe, demonstrated the absence of P450scc DNA fragments in CAH animals. Reverse transcriptase-based polymerase chain reactions revealed that P450scc mRNA was not detectable in the adrenals of CAH rabbits, confirming the previous findings of absent P450scc gene expression by Northern and Western blotting. Cloning and sequencing of a 1336-basepair fragment of rabbit P450scc cDNA (85% of the coding sequence) revealed an approximately 80% identical nucleotide sequence and a 76% identical amino acid sequence compared to the human P450scc cDNA. We conclude that a large deletion mutation in the P450scc gene is most likely responsible for the absent P450scc gene expression resulting in the lethal and feminizing form of CAH in the rabbit. Further investigation of adrenal and gonadal steroidogenic enzyme gene expression in this CAH animal model will provide a greater understanding of the molecular genetics of CAH, while wild-type P450scc gene transfer experiments using CAH adrenals in vitro or in vivo will ultimately characterize the molecular basis of CAH and provide a foundation for CAH gene therapy modality.

Adrenal Hyperplasia, Congenital↗

The relationship between luteinizing hormone and estradiol secretion in female precocious puberty: evaluation by sensitive gonadotropin assays and the leuprolide stimulation test.

We used the GnRH agonist (GnRHa) stimulation test (20 micrograms/kg leuprolide sc, followed by 24-h serial sampling) to investigate the relationship between gonadotropin and estradiol (E2) secretion in the early phase of female central precocious puberty (CPP). Girls with CPP and moderately increased (early pubertal) peak E2 concentrations after GnRHa stimulation (136 +/- 11 pmol/L; range, 92-176; group B; n = 7) were compared to girls with CPP and higher (midpubertal) peak E2 responses to GnRHa (mean +/- SE, 590 +/- 63 pmol/L; range, 235-1189; group C; n = 19) and to a group of subjects with no breast development and a prepubertal hypothalamic-pituitary-gonadal axis (peak E2 response to GnRHa, 39 +/- 7 pM/L; range, 18-62; group A; n = 6). Compared to group A subjects, patients in group B had similar (P > 0.2) peak GnRHa-stimulated LH concentrations (B, 4.8 +/- 1 IU/L; A, 2.3 +/- 0.5 IU/L) and peak nocturnal LH (B, 0.81 +/- 0.2; A, 0.25 +/- 0 IU/L), but higher peak GnRHa-stimulated FSH concentrations (B, 26 +/- 7; A, 11 +/- 2 IU/L; P < 0.05) and mean nocturnal FSH (B, 4.2 +/- 1; A, 1.1 +/- 0.3 IU/L; P < 0.05) concentrations. Compared to group B, group C patients had higher (P < 0.001) GnRHa-stimulated peak LH (67 +/- 19 IU/L) and higher (P < 0.05) peak nocturnal LH (9.7 +/- 2.9 IU/L) concentrations, but similar GnRHa-stimulated peak FSH (27 +/- 3 IU/L) and mean nocturnal FSH (3.8 +/- 0.5 IU/L) levels. Group C patients with a ratio of peak GnRHa-stimulated LH to FSH concentrations below or above 1, respectively, had similar peak E2 responses to GnRHa (516 +/- 80 vs. 644 +/- 92 pM/L; P > 0.1). Stepwise regression analysis indicated that the peak LH response to GnRHa (r = 0.76; P < 0.001), but none of the FSH secretory parameters (P > 0.10), affected the E2 response to GnRHa. These data suggest that girls with CPP in the early phase of activation of the hypothalamic-pituitary-gonadal axis are capable of clinically relevant E2 production, which may occur in the face of low LH secretion and low LH/FSH ratios and cannot be explained solely on the basis of increased FSH secretion. Thus, endocrine or paracrine factors other than gonadotropins may be important in amplifying E2 secretion in the early phase of CPP.

Child↗

Hypothalamic-pituitary-gonadal axis function in pubertal male and female siblings with glucocorticoid-treated nonsalt-wasting 3 beta-hydroxysteroid dehydrogenase deficiency congenital adrenal hyperplasia.

We report pubertal maturation and dynamic studies of gonadotropin and gonadal hormone secretion in long term glucocorticoid-treated siblings with nonsalt-wasting classic adrenal and gonadal 3 beta-hydroxysteroid dehydrogenase (3 beta HSD) deficiency. The 18-yr-old female siblings spontaneously developed thelarche and menarche at 10 and 12 yr, respectively, and manifested irregular menses, hirsutism, and polycystic ovaries at 17 yr. The 16-yr-old male sibling spontaneously developed secondary sex characteristics at age 11 yr and exhibited Tanner IV-V pubic hair, a 6.5 x 3.0-cm surgically repaired penis, and enlarged nonnodular testes. Overnight (2200-0700 h) plasma gonadotropin (every 20 min) and gonadal steroid levels (every 2 h) under ACTH adrenal suppression revealed the following. In the male sibling, there were overall normal Tanner V male LH (3-21 mIU/mL) and FSH (1.2-13 mIU/mL) levels, normal peak frequency and amplitude of LH (70 +/- 62 min and 15 +/- 3 mIU/mL, respectively) and FSH (65 +/- 28 min and 13 +/- 3 mIU/mL), and low normal Tanner V testosterone (T) levels (11.4-17.9 nmol/L). In the female sibling, there were normal follicular phase range LH (10-28 mIU/mL) and FSH (5.1-17.2 mIU/mL) levels, normal peak frequency and amplitude of LH (96 +/- 17 min and 22 +/- 4.5 mIU/mL, respectively) and FSH (62 +/- 27 min, 13 +/- 4 mIU/mL), and early follicular phase estradiol (E2) levels (100-170 pmol/L). The LH-releasing hormone-stimulated LH response was in the normal adult range in the male and normal for the early follicular phase in the female. In contrast, ACTH and adrenal delta 5-steroid responses to CRH administration were elevated in each sibling. Gonadal suppression via Norlutin administration (30 mg/day for 3 days) after prolonged adrenal suppression by dexamethasone resulted in suppression of dehydroepiandrosterone (DHEA) and E2 in the female and DHEA and T in the male. Gonadal stimulation via hCG administration (5000 IU/day for 3 days, im) during continuous adrenal suppression resulted in a low E2 response in the female (200 pmol/L; control, 295-660 pmol/L) and a low T response in the male (15.3 nmol/L; control, 17-39 nmol/L), whereas delta 5-17-hydroxypregnenolone and DHEA levels rose 2- to 4.7-fold in each sibling. In conclusion, despite partial gonadal 3 beta HSD deficiency, the dynamics of gonadotropin and gonadal hormone secretion in these siblings indicate the absence of increased LH secretion, in contrast to the markedly increased ACTH secretion resulting from adrenal 3 beta HSD deficiency.(ABSTRACT TRUNCATED AT 400 WORDS)

3-Hydroxysteroid Dehydrogenases↗

Translocation of the glucose transporter (GLUT4) to the cell surface in permeabilized 3T3-L1 adipocytes: effects of ATP insulin, and GTP gamma S and localization of GLUT4 to clathrin lattices.

Insulin stimulates the movement of two glucose transporter isoforms (GLUT1 and GLUT4) to the plasma membrane (PM) in adipocytes. To study this process we have prepared highly purified PM fragments by gently sonicating 3T3-L1 adipocytes grown on glass coverslips. Using confocal laser immunofluorescence microscopy we observed increased PM labeling for GLUT1 (2.3-fold) and GLUT4 (eightfold) after insulin treatment in intact cells. EM immunolabeling of PM fragments indicated that in the nonstimulated state GLUT4 was mainly localized to flat clathrin lattices. Whereas GLUT4 labeling of clathrin lattices was only slightly increased after insulin treatment, labeling of uncoated PM regions was markedly increased with insulin. These data suggest that GLUT4 recycles from the cell surface both in the presence and absence of insulin. In streptolysin-O permeabilized adipocytes, insulin, and GTP gamma S increased PM levels of GLUT4 to a similar extent as observed with insulin in intact cells. In the absence of an exogenous ATP source the magnitude of these effects was considerably reduced. Removal of ATP per se caused a significant increase in cell surface levels of GLUT4 suggesting that ATP may be required for intracellular sequestration of these transporters. When insulin and GTP gamma S were added together, in the presence of ATP, PM GLUT4 levels were similar to levels observed when either insulin or GTP gamma S was added individually. Addition of GTP gamma S was able to overcome this ATP dependence of insulin-stimulated GLUT4 movement. GTP gamma S had no effect on constitutive secretion of adipsin in permeabilized cells. In addition, there was no effect of insulin or GTP gamma S on GLUT4 movement to the PM in noninsulin sensitive streptolysin-O-permeabilized 3T3-L1 fibroblasts overexpressing GLUT4. We conclude that the insulin-stimulated movement of GLUT4 to the cell surface in adipocytes may require ATP early in the insulin signaling pathway and a GTP-binding protein(s) at a later step(s). We propose that the association of GLUT4 with clathrin lattices may be important in maintaining the exclusive intracellular location of this transporter in the absence of insulin.

3T3 Cells↗

Rapid generation of sequence variation during primary HIV-1 infection.

OBJECTIVE: HIV-1 undergoes extensive genetic variation in infected individuals. The extent of genetic variation has been examined in patients with AIDS, but little is known regarding the appearance of HIV-1 genetic variation immediately following infection during the primary phase of HIV-1 infection prior to seroconversion. DESIGN: We examined HIV-1 genetic variation during this early phase of HIV-1 infection by polymerase chain reaction (PCR) and nucleotide sequence analysis of the V4 by polymerase chain reaction (PCR) and nucleotide sequence analysis of the V4 variable region and the CD4-binding domain. RESULTS: Our results demonstrate that extensive sequence variation is seen early after infection, although a predominant HIV-1 species is maintained. CONCLUSIONS: The type of variants that occur are dynamic, changing over time, and the mutations seen are consistent with those expected from random occurrence, unlike the pattern of variation previously reported during later stages of disease.

Adult↗

Developmental expression of insulin-regulatable glucose transporter GLUT-4.

The insulin-regulatable glucose transporter (GLUT-4) is expressed in adipose tissue and in cardiac and skeletal muscle (D. E. James, R. Brown, J. Navarro, and P. F. Pilch. Nature Lond. 333: 183-185, 1988). We examined GLUT-4 development between postnatal days 1 and 41 (P1-P41) in male and female rats in these tissues by quantitative immunoblotting. GLUT-4 was detectable in each tissue at comparable levels at P1. However, the subsequent patterns of GLUT-4 development were distinctive. GLUT-4 increased in the diaphragm after P7, peaked at P20, and then declined. GLUT-4 expression in the heart increased rapidly after P7 to plateau on P41 at levels four times greater than the diaphragm. In sharp contrast, adipose tissue expression was highest between P3 and P5 but declined to a nadir at P20 before rebounding at P34. These patterns were observed for both sexes within each tissue, but female GLUT-4 expression was higher in diaphragm and heart and lower in adipose tissue. The expression of GLUT-4 appears to be regulated in a tissue-specific manner by a developmental program that may coordinate the expression of other proteins of metabolic importance.

Adipose Tissue↗

Inherited congenital adrenal hyperplasia in the rabbit: absent cholesterol side-chain cleavage cytochrome P450 gene expression.

We investigated adrenal steroidogenic enzymes, their activity and mRNA expression, and in vitro biosynthesis of an enzyme in rabbits with congenital adrenal hyperplasia (CAH; weight: CAH, 19 +/- 5 mg/adrenal; normal, 2.7 +/- 1.0 mg/adrenal). Serum pregnenolone (delta 5-P) levels in CAH newborn rabbits (12-36 h) were normal (mean/range, 438/51-2191 ng/dl), but corticosterone levels were low [0.05 +/- 0.05 microgram/dl; P less than 0.001 vs. normal (0.66 +/- 0.57)]. Serum Na+ levels in CAH newborn rabbits were in the normal range (143 +/- 30 meq/liter), but K+ levels were elevated [7 +/- 1.1 meq/liter; P less than 0.05 vs. normal (5.9 +/- 0.6 meq/liter)]. Minced normal adrenal tissue incubated with [3H] cholesterol (30-100 pmol/flask) and ACTH (100 mU/flask) produced [3H]delta 5-P (newborn, 21 and 45 fmol/100 mg; adult, 3 and 5 fmol/100 mg) and [3H]corticosterone (newborn, 23 fmol/100 mg; adult, 11.3 fmol/100 mg), but CAH adrenals produced no product (less than 1.3 fmol/100 mg). Adrenal mitochondria from normal newborn rabbits produced delta 5-P (4.4-7 nmol/mg protein), but CAH adrenals did not, while CAH adrenal mitochondria demonstrated over 4 times greater 11 beta-hydroxylase activity. A Western blot of adrenal homogenate from normal newborn rabbits revealed a cholesterol side-chain cleavage cytochrome P450 (P450scc)-immunoreactive species (mol wt, 53 x 10(3), but this species was absent in CAH adrenals; CAH adrenals had a normal adrenodoxin and intensified 17 alpha-hydroxylase cytochrome P450 (P450(17)alpha) band compared to normal adrenals. In vitro translation of RNA in a cell-free rabbit reticulocyte lysate system containing [35S] methionine yielded a precursor P450scc protein (mol wt, 58.5 x 10(3)) with normal adrenal RNA, but not with CAH adrenal RNA. P450scc mRNA was detected in all normal adrenals, but was not detected in all CAH adrenals. 21-Hydroxylase cytochrome P450 mRNA expression was detected at a similar level in both normal and CAH adrenals. We conclude that CAH in the rabbit is caused by inherited absent P450scc gene expression. The clinical, pathological, and biochemical manifestations of P450scc deficiency in the rabbit are nearly identical to the human disorder. Increased 11 beta-hydroxylase activity and increased P450(17)alpha on Western blot of CAH adrenals indicate altered gene expression of other steroidogenic enzymes due to CAH. Further molecular analysis of the P450scc gene in this animal CAH model will facilitate understanding of P450scc deficiency CAH.

Adrenal Glands↗

Normal and elevated 3 alpha-androstanediol glucuronide concentrations in women with various causes of hirsutism and its correlation with degree of hirsutism and androgen levels.

We investigated peripheral androgen metabolic activity in 54 hirsute females (HF) by evaluating the serum 3 alpha-androstanediol glucuronide (3AG) concentration, hirsutism score (HS), and etiology of hirsutism. Based on basal and ACTH-stimulated steroid profiles (1 h post-Cortrosyn, 0.25 mg, i.v. bolus), the causes of hirsutism were determined to be increased adrenal androgen production (greater than 2 SD above normal mean), increased ovarian testosterone (T) production (greater than 2 SD above normal mean basal T of ovarian source only), or idiopathic cause (normal steroid profile). Serum 3AG levels in each group of HF were significantly higher (P less than 0.01-0.001) than those in normal females [normal: 2.9 +/- 0.94 nmol/L (n = 28); HF: increased adrenal androgen production of undefined cause, 7.7 +/- 7.5 nmol/L (n = 14); 21-hydroxylase deficiency, 7.6 +/- 7.4 nmol/L (n = 5); increased ovarian T production 5.5 +/- 3.5 nmol/L (n = 18); idiopathic cause, 5.8 +/- 4.8 nmol/L (n = 17)]. However, normal 3AG levels (less than 5.2 nmol/L) were present in 50-67% of HF in each group. Collectively, 3AG levels in HF correlated significantly (P less than 0.01) with dehydroepiandrosterone (DHEA; r = 0.41) and DHEA sulfate (DS; r = 0.44), while the correlation with androstenedione (r = 0.15) or T (r = 0.19) was not significant. Serum 3AG and adrenal androgen levels decreased in all subjects after dexamethasone treatment (0.5-1 mg at hour of sleep; 2 mg/day for 3-5 days). The correlation between 3AG and HS was significant (r = 0.6-0.74; P less than 0.01-0.001) only in HF with increased adrenal androgen secretion and idiopathic cause, and was not significant (r = 0.42) in HF with increased ovarian T secretion. There was no significant correlation between androgen levels and HS. We conclude that the serum 3AG level was not consistently elevated in HF and did not differ significantly between the various causes. Significant correlations between 3AG and DHEA/DS levels, and the simultaneous decrease in 3AG and adrenal androgens after dexamethasone administration in HF suggest that adrenal androgens contribute significantly to 3AG production. The significant correlation between 3AG and HS in HF with increased adrenal androgen secretion and idiopathic cause indirectly suggests an adrenal androgen contribution to both 3AG production and hirsutism in these HF. The insignificant correlation between 3AG and HS in HF with increased ovarian T secretion may result from a confounding effect of ovarian T on hirsutism.

Adolescent↗

Maternal side effects of prenatal dexamethasone therapy for fetal congenital adrenal hyperplasia.

UNLABELLED: Prenatal treatment of virilizing congenital adrenal hyperplasia in female fetuses via maternal dexamethasone (Dex) therapy (1-1.5 mg/day) from first trimester to birth was associated with excessive weight gain (47-56 pounds at 35-37 weeks gestation), Cushingoid facial features, severe striae resulting in permanent scarring, and hyperglycemic response (8-11.7 nmol/L) to oral glucose administration in all our experience (three cases). Other symptoms included hypertension, gastrointestinal intolerance, or extreme irritability. Previous pregnancies were uncomplicated by these problems. In each case, first or second trimester amniotic fluid 17-hydroxyprogesterone (17OHP, 17-41 nmol/L; normal less than 0.4 nmol/L), androstenedione (22-31 nmol/L, normal less than 5 nmol/L), and testosterone levels (0.54-0.7 nmol/L, normal less than 0.4 nmol/L) during Dex treatment were elevated regardless of the newborn genital outcome. Maternal serum estriol (E3) levels in one mother (normal newborn genitalia) were consistently low (less than 0.2 nmol/L) during the second and third trimester. In two mothers (partially virilized newborn genitalia) initial second trimester E3 levels were unsuppressed (11, 17.4 nmol/L) and suppressed (less than 1.4 nmol/L) following short-term increased dose. CONCLUSION: prenatal Dex treatment of virilizing congenital adrenal hyperplasia at a dose of 1-1.5 mg daily throughout gestation is associated with significant maternal side effects. Parents should be informed of these side effects before initiation of treatment. Careful monitoring for signs of side effects, medical intervention when necessary, and lowering of Dex dose during the second half of gestation would minimize the side effects. Maternal serum E3 levels appear useful for prediction of fetal outcome while amniotic fluid steroid levels may not.

Adrenal Hyperplasia, Congenital↗

Combined bromocriptine and growth hormone (GH) treatment in GH-deficient children with macroprolactinoma in situ.

Experience with PRL-secreting macroadenomas in the pediatric and adolescent population is limited. Although use of synthetic GH after treatment of central nervous system tumors in children without active disease is accepted practice, reports of GH use in patients with central nervous system tumors in situ are rare. Furthermore, the effect of GH on tumor growth is not known. We report GH treatment (10 and 11.5 months), concomitant with bromocriptine (BC; dopamine agonist) therapy in two children, a 15.5-yr-old male and a 15.5-yr-old female, with PRL-secreting macroadenomas in situ. Surgical resection was deemed undesirable because of the risk of major morbidity due to the large size of the tumors and the close proximity to major vessels. Both patients were GH deficient and had heights below the fifth percentile coupled with arrested pubertal progress. During BC therapy, a decrease in tumor size and a reduction in serum PRL levels occurred in both patients, which continued after the addition of GH treatment. Neither patient experienced changes in visual acuity during combined treatment, and both experienced marked improvement in growth velocity. We conclude that in children with PRL-secreting tumors and GH deficiency in whom surgery is not advised, combined treatment with BC and GH appears to be safe and efficacious. To our knowledge, these patients represent the first report of the combined therapeutic use of BC and GH as the primary mode of treatment in children with prolactinoma in situ with documented GH deficiency.

Adolescent↗

Scatter factor and hepatocyte growth factor: activities, properties, and mechanism.

Scatter factor (SF) was first identified as a fibroblast-derived protein which disperses (i.e., "scatters") cohesive colonies of epithelium. SF-like proteins were found in human smooth muscle cell conditioned medium, amniotic fluid, and placental tissue. SFs markedly stimulate migration of epithelial, carcinoma, and vascular endothelial cell types at picomolar concentrations. Hepatocyte growth factors (HGFs) were originally described as platelet- and serum-derived proteins which stimulate hepatocyte DNA synthesis. Partial amino acid sequence data for mouse and human SFs indicate significant homology with HGFs. We used biological, biochemical, and immunological assays to evaluate and compare the activities, properties, and mechanisms of action of mouse SF, human SF (fibroblast or placenta derived), and recombinant human HGF (hrHGF). We report the following findings: (a) mouse SF exhibits species-related differences in biological activities relative to the human factors; (b) human SF and hrHGF show significant overlap in biological activities (i.e., hrHGF stimulates motility of multiple normal and carcinoma cell types, whereas human SF stimulates DNA synthesis in several normal cell types); (c) the three factors contain common antigenic determinants; and (d) all three proteins stimulate rapid phosphorylation of tyrosine residues on the c-met protooncogene protein product (the putative receptor for HGF) and on another protein with Mr 110,000. A few biological and immunological differences between human SFs and hrHGF were observed. These may reflect minor variations in amino acid sequence or posttranslational modification related to the sources of the factors. Taken as a whole, our findings suggest that by structural, functional, immunological, and mechanistic criteria, human SF and human HGF are essentially identical.

Amino Acid Sequence↗

3 alpha-androstanediol glucuronide in virilizing congenital adrenal hyperplasia: a useful serum metabolic marker of integrated adrenal androgen secretion.

To determine whether serum 3 alpha-androstanediol glucuronide (3AG) reflects the overall effect of integrated adrenal androgen secretion in the virilizing form of congenital adrenal hyperplasia (CVAH), circadian levels (0800, 1200, 1600, and 2000 h) of serum 3AG and 17-hydroxyprogesterone (17OHP) or 11-deoxycortisol (S), androstenedione (A), testosterone (T), and 24-h urinary 17-ketosteroids (17KS) were examined in seven patients (pts) with classical 21-hydroxylase deficiency (21OHD) and one pt with classical 11 beta-hydroxylase deficiency (11 beta OHD). Hormonal studies were conducted during the second day of dexamethasone (Dex) administration (2 mg/day). In five poorly controlled CVAH pts, including the 11 beta OHD pt, highly elevated baseline morning (AM) serum 17OHP or S as well as A levels, and elevated AM T levels in three pts decreased markedly in the evening (PM), while elevated serum 3AG showed no significant circadian changes; 17KS levels were markedly elevated for age. During Dex, moderately or slightly elevated AM 17OHP, A, or T in two to four pts with 21OHD decreased to the normal range in the PM. In the pt with 11 beta OHD, S, A, and T levels were suppressed. 3AG levels were modestly elevated or normal, without circadian changes, in these pts; 17KS levels were elevated or normal. In two other 21OHD pts, modestly elevated AM baseline 17OHP and A levels decreased in the PM; elevated AM T decreased in one pt in the PM; modestly elevated 3AG levels showed no circadian changes; 17KS levels were modestly elevated. During Dex, normal or slightly elevated serum steroids and 17KS levels were associated with normal or high normal 3AG levels without circadian changes. In one postpubertal female with 21OHD, modestly elevated AM baseline 17OHP levels decreased at 2000 h; normal A and T levels throughout the day and low normal 17KS were associated with slightly low 3AG levels, without circadian variation. During Dex treatment, normal 17OHP, A, T, and low 17KS levels were associated with low 3AG levels without circadian variation. In all pts as a group, an excellent correlation (r = 0.9) was found between either 0800 h or mean, or 2000 h serum 3AG levels and 17KS. In addition, AM and PM serum 3AG levels in five normal women were similar. We conclude that the high correlation between serum 3AG and urinary 17KS and the absence of a significant circadian variation in 3AG indicate that serum 3AG, regardless of sample time, is a useful metabolic index of integrated adrenal androgen secretion in CVAH.

17-Ketosteroids↗