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Biomedical subjects

M Jansen

Publications and source records attributed to M Jansen.

At least 19 recordsLinked to original sources

Mutation of the POU-specific domain of Pit-1 and hypopituitarism without pituitary hypoplasia.

A point mutation in the POU-specific portion of the human gene that encodes the tissue-specific POU-domain transcription factor, Pit-1, results in hypopituitarism, with deficiencies of growth hormone, prolactin, and thyroid-stimulating hormone. In two unrelated Dutch families, a mutation in Pit-1 that altered an alanine in the first putative alpha helix of the POU-specific domain to proline was observed. This mutation generated a protein capable of binding to DNA response elements but unable to effectively activate its known target genes, growth hormone and prolactin. The phenotype of the affected individuals suggests that the mutant Pit-1 protein is competent to initiate other programs of gene activation required for normal proliferation of somatotrope, lactotrope, and thyrotrope cell types. Thus, a mutation in the POU-specific domain of Pit-1 has a selective effect on a subset of Pit-1 target genes.

Animals

Testicular dysgenesis and mental retardation in two incompletely masculinized XY-siblings.

Aberrations of fetal sexual development were studied in two retarded phenotypic female 46,XY dysgonadal sisters from a consanguineous marriage. Endocrine evaluation revealed an inadequate response of plasma-testosterone to human chorionic gonadotropin (hCG) stimulation and a normal response to adrenocorticotropic hormone (ACTH) administration. At exploratory laparotomy dysgenetic testes and remnants of the Müllerian and of the Wolffian duct were found. Loss of testicular function, resulting in male pseudohermaphroditism (MPH), can occur at different times during intrauterine development, resulting in a variety of clinical manifestations. A thorough evaluation is warranted in all patients in order to reach a correct diagnosis which is of importance for appropriate gender assignment and genetic counseling.

Adolescent

Molecular mechanisms of glial cell swelling in acidosis.

The mechanism of glial swelling in acidosis were investigated in an in vitro model. C6 glial cells were exposed to pH levels between 7.4 and 6.2. The cell volume response was determined by flow cytometry. Cell swelling of 110% to 115% was observed if pH was reduced to 6.8 or below. This effect was independent of the length of exposure to acidosis. Swelling induced by pH could be attenuated by (a) inhibition of the Na+/H+ antiporter by amiloride, (b) replacement of bicarbonate by HEPES, and (c) inhibition of carbonic anhydrase by acetazolamide. Absence of Na+ ions from the incubation medium completely prevented acidosis-induced glial swelling. Inhibition of the Cl-/HCO3- antiporter reduced swelling only in its first phase. The results suggest that glial swelling in acidosis may be from an activation of anion and cation antiporters as an attempt to maintain a normal intracellular pH. It is concluded that swelling of glial cells in the ischemic penumbra zone evolves along similar mechanisms.

Acetazolamide

Transcripts of the insulin-like growth factors I and II in human hepatoma.

Using complementary DNAs of human insulin-like growth factors as probes, expressions of the insulin-like growth factors I and II mRNA were examined in seven human hepatoma tissues and their adjacent nontumorous livers. The level of insulin-like growth factor I mRNA in hepatoma was lower than that in the nontumorous liver control. This phenomenon was probably caused by the low expression of human growth hormone receptor in hepatoma tissues. The levels of insulin-like growth factor II mRNA vary among hepatomas. Some show elevated expression; some have diminished expression compared to their nontumorous liver counterparts. In four of the seven hepatomas, expression of fetal forms of insulin-like growth factor II transcripts was observed and may represent dedifferentiation of insulin-like growth factor II expression during hepatocarcinogenesis.

Carcinoma, Hepatocellular

Total deficiency of growth hormone and prolactin, and partial deficiency of thyroid stimulating hormone in two Dutch families: a new variant of hereditary pituitary deficiency.

Four out of 10 children in two unrelated families presented with a total pituitary growth hormone (GH) and prolactin deficiency and a partial thyrotropin (TSH) deficiency. The GH gene was intact in family I. The pituitaries, visualized by magnetic resonance imaging, were normal. All children responded well to GH and L-thyroxine therapy. Baseline plasma somatostatin and its peak response to arginine infusion were elevated in family I and they had a milder TSH deficiency than family II. Plasma insulin showed a poor response to arginine infusion. This hereditary combination of pituitary deficiencies suggests a deficiency of a common positive transcription factor.

Adult

Differential expression of the human insulin-like growth factor II gene. Characterization of the IGF-II mRNAs and an mRNA encoding a putative IGF-II-associated protein.

Insulin-like growth factor II (IGF-II) is a polypeptide of 67 amino acids which is thought to play an important role in fetal growth and development. The human IGF-II gene is situated on chromosome 11, very close to the insulin gene. It extends over 30 kb of chromosomal DNA and consists of five noncoding exons (exons 1-4 and 4B) followed by three protein encoding exons (exons 5-7), one of which (exon 7) contains a long 3'-untranslated region. Here we show that differential initiation of transcription can occur at three distinct promoter sites, resulting in the appearance of mRNA species of different lengths. These promoters show a tissue-specific and a development-specific regulation of expression. Furthermore, we have determined the entire nucleotide sequence of the 3'-terminal exon, exon 7, which is about 4 kb long and contains 3.8 kb of 3'-untranslated sequences. This completes the elucidation of the human IGF-II gene structure. Surprisingly, Northern blot analysis of fetal and adult RNA with a probe derived from the 3'-nontranslated region of exon 7 detects a novel 1.8 kb mRNA which appears to be coordinately expressed with the IGF-II mRNAs. In vitro translation of this 1.8 kb mRNA results in the formation of a translation product of 8.3 kDa, which compares well with the size of a predicted translation product from a 252-nucleotides-long open reading frame.

Amino Acid Sequence

Isolation of an insulin-like growth factor II cDNA with a unique 5' untranslated region from human placenta.

Human insulin-like growth factor II (IGF-II) cDNA from a placental library was isolated and sequenced. The 5' untranslated region (5'-UTR) sequence of this cDNA differs completely from that of adult human liver and has considerable base sequence identity to the same region of an IGF-II cDNA of a rat liver cell line, BRL-3A. Human placental poly(A)+ RNA was probed with either the 5'-UTR of the isolated human placental IGF-II cDNA or the 5'-UTR of the IGF-II cDNA obtained from adult human liver. No transcripts were detected by using the 5'-UTR of the adult liver IGF-II as the probe. In contrast, three transcripts of 6.0, 3.2, and 2.2 kilobases were detected by using the 5'-UTR of the placental IGF-II cDNA as the probe or the probe from the coding sequence. A fourth IGF-II transcript of 4.9 kilobases presumably containing a 5'-UTR consisting of a base sequence dissimilar to that of either IGF-II 5'-UTR was apparent. Therefore, IGF-II transcripts detected may be products of alternative splicing as their 5'-UTR sequence is contained within the human IGF-II gene or they may be a consequence of alternative promoter utilization in placenta.

Amino Acid Sequence

Heterozygotes for 17 alpha-hydroxylase deficiency can be detected with a short ACTH test.

A short ACTH test was performed in the six parents, and four siblings, of three cases with 17 alpha-hydroxylase deficiency. Baseline steroid levels were all normal in female heterozygotes but in males 17 alpha-hydroxyprogesterone levels were elevated. After ACTH-stimulation, plasma levels of corticosterone were elevated in five obligate heterozygotes and 18-hydroxydeoxycorticosterone levels were increased in four of them. Two of the four siblings had biochemical signs of heterozygosity. The short ACTH test appears to be an efficient method for detecting heterozygosity, but the abnormalities found are more heterogeneous than previously suggested.

Adolescent

Glial swelling during extracellular acidosis in vitro.

Intracellular and extracellular acidosis may determine the ultimate outcome for brain tissue in cerebral ischemia. An extracellular acidosis that occurs in the penumbra zone was investigated in vitro as to its role in the formation of cytotoxic cell swelling. For that purpose, C6 glioma cells or primary cultured astrocytes were suspended in normal isotonic medium in normoxia during acidification to a final pH of 6.2. The cell volume response was determined by flow cytometry using hydrodynamic focusing, which allows one to recognize changes in cell size of less than 1%. A threshold pH of 6.8 was found that had to be crossed to induce cell swelling by acidosis. Once pH fell below this threshold, the increase in cell size appeared to be an all-or-nothing phenomenon. The cells rapidly assumed a final cell size of 115% of normal in the case of C6 glioma or of 118% in the case of primary cultured astrocytes independent of the actual level of acidosis or the duration of exposure. Acidosis-induced glial swelling could be significantly attenuated by 1) addition of amiloride, 2) administration of acetazolamide, or 3) replacement of bicarbonate buffer against N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid (HEPES). Replacement of extracellular Na+ by choline chloride led to complete prevention of the acidosis-induced cell swelling. Taken together, the findings strongly indicate a central involvement of Na+/H+ and Cl-/HCO3- exchange mechanisms in the development of cell swelling under these conditions. Activation of the Na+/H+ antiporter can be considered an attempt to maintain a normal intracellular pH at the expense of an abnormal cell volume.(ABSTRACT TRUNCATED AT 250 WORDS)

Acidosis

Expression of insulin-like growth factor-I and -II genes in rat medullary thyroid carcinoma.

Several types of cancer cells produce polypeptide growth factors and often the same cells have functional receptors for the released growth factor (autocrine secretion). We have studied expression of genes encoding somatomedin-C/insulin-like growth factor-I (Sm-C/IGF-I) and IGF-II, in rat medullary thyroid carcinomas (MTCs) in different stages of tumour differentiation. RNAs hybridizing specifically to an IGF-I cDNA probe were detected in 6 out of 7 differentiated MTCs and IGF-II related RNAs were demonstrated in 5 out of these 7 differentiated MTCs. In 5 anaplastic MTCs no IGF RNAs were detected, except for a small amount of IGF-II related RNA in one tumour.

Carcinoma

The human insulin-like growth factor II gene contains two development-specific promoters.

The insulin-like growth factors (IGF) play an important role in fetal and postnatal development. Recently, the nucleotide sequences of the cDNAs encoding IGF-I and IGF-II and part of the human IGF genes were reported. In this communication we describe two distinct IGF-II cDNAs isolated from a human adult liver and a human hepatoma cDNA library, respectively. Using these two cDNAs, we have established that the human IGF-II gene contains at least 7 exons. Two different IGF-II promoters have been identified, 19 kilobases (kb) apart, which are active in a development-specific manner. The promoter, active in the adult stage, is located only 1.4 kb downstream from the insulin gene.

Base Sequence

Growth hormone dependence of somatomedin-C/insulin-like growth factor-I and insulin-like growth factor-II messenger ribonucleic acids.

The GH dependence of somatomedin-C/insulin-like growth factor I (Sm-C/IGF-I) and insulin like growth factor II (IGF-II) mRNAs was investigated by Northern blot hybridizations of polyadenylated RNAs from liver, pancreas, and brain of normal rats, untreated hypophysectomized rats, and hypophysectomized rats 4 h or 8 h after an ip injection of human GH (hGH). Using a 32P-labeled human Sm-C/IGF-I cDNA as probe, four Sm-C/IGF-I mRNAs of 7.5, 4.7, 1.7, and 1.2 kilobases (kb) were detected in rat liver and pancreas but were not detectable in brain. In both liver and pancreas, the abundance of these Sm-C/IGF-I mRNAs was 8- to 10-fold lower in hypophysectomized rats than in normal rats. Within 4 h after injection of hGH into hypophysectomized animals, the abundance of liver and pancreatic Sm-C/IGF-I mRNAs was restored to normal. A human IGF-II cDNA was used as a probe for rat IGF-II mRNAs which were found to be very low in abundance in rat liver and showed no evidence of regulation by GH status. In pancreas, IGF-II mRNA abundance was below the detection limit of the hybridization procedures. The brain contained two IGF-II mRNAs of 4.7 and 3.9 kb that were 5-fold lower in abundance in hypophysectomized rats than in normal rats. These brain IGF-II mRNAs were not, however, restored to normal abundance at 4 or 8 h after ip hGH injection into hypophysectomized animals. To investigate further, the effect of GH status on abundance of Sm-C/IGF-I and IGF-II mRNAs in rat brain, a second experiment was performed that differed from the first in that hypophysectomized rats were given an injection of hGH into the lateral ventricle (intracerebroventricular injection) and a rat Sm-C/IGF-I genomic probe was used to analyze Sm-C/IGF-I mRNAs. In this experiment, a 7.5 kb Sm-C/IGF-I mRNA was detected in brain polyadenylated RNAs. The abundance of the 7.5 kb mRNA was 4-fold lower in hypophysectomized rats than in normal rats and was increased to 80% of normal within 4 h after icv administration of hGH to hypophysectomized animals. As in the first experiment, the abundance of the 4.7 and 3.9 kb brain IGF-II mRNAs was lower than normal in hypophysectomized rats. Brain IGF-II mRNAs were increased to 50% of normal in hypophysectomized rats given an icv injection of hGH but within 8 h after the injection rather than at 4 h as with Sm-C/IGF-I mRNAs.

Animals

Common site of mutation in the erbB gene of avian erythroblastosis virus mutants that are temperature sensitive for transformation.

The genome of the avian erythroblastosis virus temperature sensitive mutant ts34 was cloned from a cell line that was shown to contain a single integrated copy of the virus. The mutation was localized to the v-erbB gene by making chimeric viruses between the mutant genome and that of wildtype. Sequencing of the mutant v-erbB gene revealed a single amino acid change of a histidine to an aspartate residue at a position equivalent to amino-acid 826 of the human epidermal growth factor receptor. Interestingly this is the identical mutation to that recently reported for another temperature sensitive mutant ts167, indicating that this may be a hot spot for mutations in the v-erbB gene that give rise to ts transformation mutants. In addition, the different biological phenotypes of ts34 and ts167 are suggested to be due to an additional mutation in v-erbA in ts167.

Alpharetrovirus

Microsomal and cytosolic epoxide hydrolase in Drosophila melanogaster.

Subcellular fractions from Drosophila melanogaster and rat liver were investigated on their epoxide hydrolase activity. Both microsomes and the post-microsomal supernatant of Drosophila appeared to contain epoxide hydrolase activity using styrene-7,8-oxide as the substrate. Based on body weight, these activities were in the same order of magnitude. Rat liver cytosol was able to catalyze the hydrolysis of styrene oxide only if the glutathione S-transferase activity was blocked.

Animals