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Simultaneous occurrence of various mutations and polymorphisms in cis and in trans of the galactose-1-phosphate uridyltransferase gene in a Turkish family with classical galactosemia.

Classical galactosemia, characterized clinically by acute hepatic dysfunction, sepsis, cataract, and failure to thrive, is caused by deficiency of galactose-1-phosphate uridyltransferase (GALT). Galactose restriction normalizes these acute symptoms; however, long-term complications such as intellectual deficits and ovarian failure are conspicuous in the majority of patients. Here we report two Turkish siblings with classical galactosemia. The clinical course of the two children differed markedly: only the older girl suffered from severe acute symptoms during the neonatal period, and she developed greater mental retardation than her younger affected brother. The functional activity of GALT was virtually absent in each affected children. The mother and two healthy siblings exhibited approximately 50% normal GALT activity and the father approximately 25%. Molecular analysis revealed that these two galactosemic siblings were homozygous for a stop codon mutation of E340X in GALT exon 10. Moreover, two additional mutations, a neutral polymorphism L218L and N314D, which are typical for the Duarte-I variant, were found in the same GALT allele. The two healthy siblings and the parents were heterozygous for these combinations of mutations. In addition, the father's second GALT allele revealed three intron mutations at nucleotide position 1105 (G-->C), 1323 (G-->A) and 1391 (G-->A) and the N314D mutation, which correspond to the mutations of Duarte-2 variant. Our findings indicate that in classical galactosemia several distinct mutations can be present in one allele (in cis) of the GALT gene. Therefore it seems to be necessary to examine all introns and exons of the GALT gene in galactosemic patients who do not carry the Q188R mutation or another frequent mutation in the GALT gene.

Adolescent↗

Growth in treated classical galactosemia patients.

Decreased height and weight in treated children with classical galactosemia have been reported. However, growth has not been extensively studied. Patients might be at risk for an abnormal growth because of either disease-related intrinsic factors or diet-related factors. The objective was to gain insight in growth in treated children and adolescents with classical galactosemia. The studied population was a previously reported group of 40 classical galactosemia children. Prenatal growth was evaluated using length, weight and head circumference (HC) data from welfare centers or parents. Postnatal growth was evaluated using three height and weight measurements at baseline, 1 and 2 years to calculate growth velocities. Height Z-score was also corrected for target height Z-score (height Z-score divided by target height Z-score). Linear regression analysis was performed between growth velocities, IGF-I, IGFBP-3, dietary intake and galactose-1-phosphate-uridyltransferase activity. We found normal length (median 50.5 cm), weight (median 3,255 grams) and HC (median 33.9 cm) at birth. Mean height growth velocity was 0.87+/-1.2 for boys and -0.89+/-2.1 for girls, and mean weight growth velocity was 0.91+/-1.6 for boys and -0.74+/-1.3 for girls. Mean height corrected for target height was -1.5+/-0.9 in girls and -0.6+/-0.7 in boys. Height growth velocity was correlated with IGF-I (Pearson correlation= 0.499), IGFBP-3 (Pearson correlation 0.4) and height Z-scores corrected for target height Z-scores (Pearson correlation=0.550). Five children grew beyond the age of 18 years. In conclusion, prenatal growth was normal but postnatal growth was affected. Predicted final height is less than target height in most patients; however, target height might be reached for the children who grow beyond the age of 18. Decreased IGF-I and IGFBP-3 and or suboptimal hormonal replacement in girls might play a role.

Adolescent↗

Biokinetics of galactose in the homozygotes and heterozygotes of both forms of galactosemia.

41 heterozygoes and 4 homozygotes with a deficiency of galactose 1-phosphate uridyl transferase and also 3 heterozygotes and 1 homozygous patient with galactokinase deficiency were subjected to intravenous galactose loading tests with a dose of 350 mg/kg body weight in order to answer the question whether it is possible to detect the heterozygotes of both types of galactosemia by this method. For comparison, 38 healthy children and adolescents, 24 children with epidemic hepatitis and 4 children with cirrhosis of the liver, which was verified by histology, were included in the study. The elimination half-life (and also the other pharmacokinetic parameters as inaugurated by Dost) was the same for all the heterozygotes for both types of galactosemia almost without exception, and for the healthy cs, children in the acute stages of hepatitis and patients with cirrhosis of the liver was prolonged 2 to 5 times the normal. In patients with hepatitis, however, the elimination half-life was normal before the transaminases. Accordingly, the galactose clearance was decreased to half and one-fourth of the normal. Hence, heterozygotes with galactosemia cannot be detected with galactose loading tests.

Adolescent↗

Prenatal diagnosis of galactosemia and properties of galactose-1-phosphate uridyltransferase in erythrocytes of galactosemic variants as well as in human fetal and adult organs.

The kinetic characteristics and isoelectrofocusing patterns of uridyltransferase and the concentrations of galactose-1-phosphate in hemolysates were investigated in a family with compound variants of Duarte and classical galactosemia. There were no significant differences in Km values between the genotypes. However, the isoelectrofocusing study with thin-layer polyacrylamide gels (PAGIF) as well as with agarose gels (AGIF) showed a distinctive difference. The enzyme from the Duarte variant resolved into at least two more activity bands at pH between 5.2 and 5.4. The accumulation of galactose-1-phosphate was observed only in homozygotes for classical galactosemia. Compound heterozygotes (G-D) without any clinical manifestations did not show an accumulation of galactose-1-phosphate. The isoelectrofocusing study of the enzyme in human tissues revealed their activity resolving into multiple bands, 6-8 bands at pH 5.50-6.00 and 1-3 bands at pH 4.9-5.2. No significant differences were found in the patterns between fetal and adult liver except that the intensity of the anodic bands (pH 4.9-5.2) was weaker in fetal tissues. Prenatal diagnosis of classical galactosemia was performed in nine families by measuring the enzyme activity in cultivated amniotic fluid cells. Absence of the enzyme activity in amniotic fluid cells was found in two cases, and in four cases the heterozygosity was diagnosed by a relative low enzyme activity, 30-50% of the activity in control cells cultured in parallel.

Amniotic Fluid↗

The development of electroretinogram abnormalities and the possible role of polyol pathway activity in diabetic hyperglycemia and galactosemia.

This study examined the induction of electroretinogram abnormalities in hyperglycemia and the possible role of increased polyol pathway activity in the development of these changes. Both diabetic hyperglycemia and galactosemia caused the prolongation of peak latencies and in some cases a reduction in the amplitudes of oscillatory potentials on the b-wave. Diabetic hyperglycemia-associated abnormalities were prevented and normalized by insulin or ADN-138, an aldose reductase inhibitor. Galactosemia-induced abnormalities were inhibited by ADN-138, and were reversed either by ADN-138 treatment or by withdrawal of galactose from the diet. Polyol accumulation was prevented by insulin or ADN-138, and the elevated polyol level was reversed by insulin, ADN-138, or withdrawal of galactose in diabetic hyperglycemia and/or galactosemia. These results suggest that the increased polyol pathway activity in the hyperglycemia may be involved in the development of electroretinogram abnormalities similar to those in human diabetes; therefore, ADN-138 could be a useful drug for therapy of retinopathy in the early diabetic stage.

Animals↗

Characterization of a novel biochemical abnormality in galactosemia: deficiency of glycolipids containing galactose or N-acetylgalactosamine and accumulation of precursors in brain and lymphocytes.

Classic galactosemia, an inborn error of human galactose metabolism, is characterized by a deficiency of the enzyme galactose-1-phosphate uridyltransferase (GALT). The current model for the pathophysiology of this disease ascribes most of its symptoms to the toxicity of intracellular galactose-1-phosphate (Gal-1-P), one of the substrates of GALT which accumulates in the untreated disease state. Recently, a reduction in the intracellular concentration of UDP-Gal (uridine diphosphogalactose), one of the products of GALT, has been described in treated galactosemic patients. We investigated whether galactosemic patients might also have reduced amounts of those macromolecules that depend on UDP-Gal for their biosynthesis. We report a reduction in glycolipids that contain either galactose or its derivative N-acetylgalactosamine and an accumulation of the precursors to these compounds in the brain of a neonate with galactosemia. We also found an imbalance in glycolipids in galactosemic lymphoblasts. This novel biochemical abnormality observed in galactosemic patients is not addressed by dietary galactose-restriction therapy and could explain some of the chronic neurologic and other complications of galactosemia.

Acetylgalactosamine↗

The first study of galactose-1-phosphate uridyl transferase mutations in Iranian galactosemia patients.

OBJECTIVES: Classical galactosemia (McKusick 230400) is an autosomal recessive disorder caused by mutations in the galactose-1-phosphate uridyl transferase (GALT;EC 2.7.7.10) gene. DESIGN AND METHODS: In the present study, we report molecular analysis of 14 unrelated Iranian galactosemia children with reduced or without GALT activity using PCR-RFLP and SSCP-Sequencing methods. RESULTS: Q188R mutation was the most observed mutation with the allelic frequency of 57.1%. The allelic frequencies for S135L, Y209S, A320T, and K285N were found to be 7.1%, 7.1%, 7.1%, and 3.57% respectively. CONCLUSIONS: Our results show that galactosemia is a heterogeneous disorder at the molecular level among the Iranian population.

Galactosemias↗

Short-term exogenous galactose supplementation does not influence rate of appearance of galactose in patients with classical galactosemia.

INTRODUCTION: Recently, evidence has been presented that adult patients with classical galactosemia have higher than expected galactose tolerance. This may be caused by a decrease of endogenous galactose production with ageing. Alternatively, suppression of endogenous galactose production by exogenous galactose might be implicated. The aim of this study was to determine if the rate of appearance of galactose is suppressed by exogenous galactose. MATERIALS AND METHODS: Two adult patients with classical galactosemia and three healthy control subjects were given a primed continuous infusion of D-[1-13C]galactose to determine the rate of appearance of galactose (GAR, expressed as micromol/kg/h) before and during additional galactose supplementation. After initial assessment of GAR (GAR1), GAR was determined during doubled (GAR2) or quadrupled (GAR4) galactose infusion. RESULTS: GAR1 was 2.48 and 2.44 in patients 1 and 2, and 0.46, 0.34, and 0.39 in control subjects 1, 2, and 3, respectively. GAR(2) was 2.43 and 2.13 in patients 1 and 2, and 0.57, 0.38, and 0.47 in control subjects 1, 2, and 3, respectively. In patient 1 the experiment was repeated during quadrupled galactose infusion. Here GAR1 was 3.01 and GAR4 was 3.26. CONCLUSIONS: No significant differences between GAR before and during additional galactose infusion were found in patients and in control subjects. GAR1 was significantly higher in patients than in control subjects. We conclude that the rate of appearance of galactose is not influenced by exogenous galactose, at least under short-term conditions, in patients with classical galactosemia and in control subjects.

Adult↗

The endocrine system in treated patients with classical galactosemia.

Endocrine abnormalities in classical galactosemia, female hypergonadotropic hypogonadism and low thyroxin in neonates, have been reported. Galactosemia is a secondary glycosylation disorder and hypoglycosylation of glycoproteins has a role in this dysfunction. Hypoglycosylation, improves but does not completely disappear with dietary treatment. Our aim was to evaluate the endocrine system in treated patients (n = 37, 25 females, 12 males, age 5-19 years). Endocrine determinations were compared to age and gender matched reference ranges. Sample t-test (to test differences with reference population) and linear regression analysis between hGH (growth hormone), IGF-1 (insulin-like growth factor), IGFBP-3 (insulin growth factor binding protein), FSH (follicle stimulating hormone), LH (luteinizing hormone) and GALT activity, and soy intake, was carried out. Mean IGF-1 Z-score was -0.98 +/- 0.84 (range -2.59 to 1.21) (P < 0.001) in females and 0.03 +/- 0.55 (range -1.0 to 0.89) (P = 0.84) in males. Mean IGFBP-3 Z-score was -0.98 +/- 1.3 (range -3.0 to 2.0) (P < 0.001) in females and 0.26 +/- 0.93 (range -0.94 to 2.0) (P = 0.35) in males. IGF-1 and IGFBP-3 were positively correlated (P < 0.001). IGF-1 or IGFBP-3 Z-scores and age, hGH, estradiol, GALT activity or soy intake were not correlated. FSH was elevated in females, other axes were normal. Besides the hypergonadotropic hypogonadism in females, IGF-1 and IGFBP-3 are in the low to normal ranges in girls. Hypoglycosylation in galactosemia is diet dependent and could worsen when galactose intake increases either because of poor compliance or diet liberalization.

Adolescent↗

[Vitreous hemorrhage in a neonate with galactosemia. A case report].

Galactosemia is an inherited metabolic disorder due to a defect in one of the three enzymes required to fully metabolize the galactose in glucose: the galactose 1-phosphate uridyltransferase. Because this enzyme is present in the normal foetal liver since the tenth week of gestation, its defect cause congenital abnormality due to galactose accumulation, when the mother had taken milk during the pregnancy. It is mainly a liver pathology whereas the foetal cataract is rare. This latter is usually considered as the sole ophthalmic consequence of this disorder but exceptional ocular haemorrhages have also been described. We report the case of a neonate with galactosemia free from foetal cataract but presenting an unilateral vitreous haemorrhage. Retinal anomalies seen after vitrectomy are probably the source of the vitreous blood favoured by the coagulopathy associated with the neonatal disease. The causes of infant vitreous haemorrhages are often debated and their complications, especially severe amblyopia, require vitrectomy within the month following their discovery. In galactosemia, vitreous haemorrhage can be prevented by an early diagnosis and an appropriate treatment of the liver pathology.

Galactosemias↗

Hyperglycemia and development of glomerular pathology: diabetes compared with galactosemia.

Dogs were randomly assigned to experimental galactosemia or diabetes, or to a normal untreated group, and diabetic animals were then randomly assigned to either poor or good glycemic control. At five years duration, kidneys from the animals were compared by quantitative stereology. Glomerulopathy appeared in the poor control diabetes group, and the thickness of glomerular capillary basement membrane, the glomerular tuft volume, and the fraction of glomerulus occupied by mesangium were each significantly greater than normal. The capillary filtering surface area per glomerulus was supranormal also, but nonetheless was subnormal relative to glomerular volume. The development of glomerulopathy was significantly inhibited in dogs assigned to good glycemic control. In galactosemic animals, the basement membrane thickness was greater than normal, but the glomerular volume, fractional and absolute volumes of mesangium, and capillary filtering surface area remained normal. The polyol concentration in renal cortex seemed elevated by galactosemia no less than by diabetes, and was highest in galactosemia. The galactosemic animals are known to have developed a retinopathy morphologically comparable to that of diabetic patients and diabetic dogs. Thus, sequelae of hyperglycemia sufficient to produce glomerular basement membrane thickening and retinopathy proved not necessarily sufficient to produce the mesangial expansion and glomerular hypertrophy typical of diabetes.

Animals↗

Novel Proactive Speech-Language Intervention Is More Effective Than Usual Care: Randomized Controlled Trial of Babble Boot Camp for Infants With Classic Galactosemia.

PURPOSE: Speech and language disorders cannot be diagnosed and treated until children are approximately 2-4 years old. To investigate whether these disorders can be prevented, we developed and trialed Babble Boot Camp (BBC), the first proactive sustained intervention starting with precursor skills including cooing and babbling. METHOD: Participants were two randomly assigned groups of 22 infants with classic galactosemia, a metabolic disease with known risks for severe speech and language disorders. One group started BBC at under 6 months of age, and the other started at 15 months of age, both completing BBC at 24 months of age. Coached by a speech-language pathologist in weekly telehealth sessions, caregivers implemented BBC activities and routines daily at home. A typical control group and a group of children with classic galactosemia who received usual care participated as well. All children completed standardized assessments of speech and language at postintervention. RESULTS: Assessment scores showed that BBC was more effective than usual care for both intervention groups. Greatest benefits were seen in the group that started at or before 6 months of age, with a proportion of clinically concerning scores equal to that in the typically developing peers. No effects of sex, genotype, or milk consumption were evident in the outcomes. CONCLUSIONS: Findings motivate a paradigm shift from deficit-based to proactive approaches for infants with classic galactosemia. BBC is extensible to many other disorders, with trials currently underway for infants with Down syndrome and infants born preterm.

Humans↗

Delay of liver maturation as a cause of transient neonatal galactosemia.

BACKGROUND: Because a large amount of serum alpha-fetoprotein (alpha-FP) is synthesized in the liver of the fetus or premature newborn, high concentrations or delayed degradation of serum alpha-FP during the neonatal period may reflect hepatic immaturity. METHODS: In order to evaluate the relationship between transient neonatal galactosemia and delay of liver maturation, the concentration and half-life of serum alpha-FP during the neonatal period were measured in patients with transient galactosemia and in normal neonates. RESULTS: No significant differences were observed in the serum concentration of alpha-FP between normal and galactosemic patients less than 1 month of age. However, the half-life of serum alpha-FP was significantly longer in galactosemic patients between 15 and 60 days of age compared with age-matched normal neonates. CONCLUSION: Based on these results, we hypothesize that delay of liver maturation during the neonatal period, especially during the first 2 months after birth, can be a cause of transient neonatal galactosemia.

Galactose↗

Hypergonadotropic hypogonadism in female patients with galactosemia.

We evaluated gonadal function in 18 female and eight male patients with galactosemia due to transferase deficiency; it was normal in the males, but 12 females had signs of hypergonadotropic hypogonadism. All female patients had a 46,XX karyotype, normal levels of thyroid hormone and prolactin, and no anti-ovarian antibodies. The biologic activity of urinary gonadotropins was normal. Ultrasonography of the pelvis revealed that ovarian tissue was diminished or absent. Total estrogens increased in one of two patients after administration of human menopausal gonadotropin. The frequency of hypergonadotropic hypogonadism was higher in females in whom dietary treatment for galactosemia was delayed. Clinical course and mean erythrocyte galactose-1-phosphate and urinary galactitol levels did not correlate with ovarian function. We conclude that female patients with galactosemia have a high incidence of ovarian failure due to acquired ovarian atrophy. Galactose or its metabolites may be toxic to the ovarian parenchyma, particularly during the immediate neonatal period.

Adolescent↗

Risk factors for premature ovarian failure in females with galactosemia.

UNLABELLED: The risk for premature ovarian failure (POF) in females with galactosemia can be predicted by analyzing 3 areas of risk pathology: the patient's molecular genotype for galactose-1-phosphate uridyltransferase (GALT), alternate pathways for galactose metabolism, and the patient's environment at diagnosis and during treatment. STUDY DESIGN: Retrospective cross-sectional information was collected on 53 females with classic galactosemia, and their ovarian function was analyzed by determination of serum follicle-stimulating hormone and luteinizing hormone levels and by clinical observation. The associations were analyzed between POF and the mutations in GALT, the highest erythrocyte galactose-1-phosphate (Gal-1-P) level at diagnosis, the age at which dietary treatment was initiated, mean erythrocyte Gal-1-P level during treatment, and whole-body carbon 13-labeled galactose oxidation to (13)CO(2). RESULTS: The most prevalent mutation, Q188R, had a significant effect of genotype category (Q188R/Q188R, Q188R/Other, Other/Other) on POF (P =.04, Fisher exact test and an odds ratio of 8.3). Mean erythrocyte Gal-1-P level during treatment was a significant risk factor for POF (P =.04). Also, all patients studied with less than 5% total body oxidation of galactose to (13)CO(2) had POF, whereas those with more than 5% did not have POF (P =.008, Fisher exact test). CONCLUSION: The development of POF in females with galactosemia is more likely if the patient's genotype is Q188R/Q188R, if the mean erythrocyte Gal-1-P is >3.5 mg/dL during therapy, and if the recovery of (13)CO(2) from whole-body (13)C-galactose oxidation is reduced below 5% of administered (13)C-galactose.

Adolescent↗

Molecular basis for severe epimerase deficiency galactosemia. X-ray structure of the human V94m-substituted UDP-galactose 4-epimerase.

Galactosemia is an inherited disorder characterized by an inability to metabolize galactose. Although classical galactosemia results from impairment of the second enzyme of the Leloir pathway, namely galactose-1-phosphate uridylyltransferase, alternate forms of the disorder can occur due to either galactokinase or UDP-galactose 4-epimerase deficiencies. One of the more severe cases of epimerase deficiency galactosemia arises from an amino acid substitution at position 94. It has been previously demonstrated that the V94M protein is impaired relative to the wild-type enzyme predominantly at the level of V(max) rather than K(m). To address the molecular consequences the mutation imparts on the three-dimensional architecture of the enzyme, we have solved the structures of the V94M-substituted human epimerase complexed with NADH and UDP-glucose, UDP-galactose, UDP-GlcNAc, or UDP-GalNAc. In the wild-type enzyme, the hydrophobic side chain of Val(94) packs near the aromatic group of the catalytic Tyr(157) and serves as a molecular "fence" to limit the rotation of the glycosyl portions of the UDP-sugar substrates within the active site. The net effect of the V94M substitution is an opening up of the Ala(93) to Glu(96) surface loop, which allows free rotation of the sugars into nonproductive binding modes.

Crystallization↗

The molecular basis of UDP-galactose-4-epimerase (GALE) deficiency galactosemia in Korean patients.

PURPOSE: UDP-galactose-4-epimerase (GALE) deficiency galactosemia is an autosomal recessive disorder and the prevalence of the disease varies among ethnic groups. We aimed to investigate molecular characteristics of the Korean patients with attenuated GALE activity and elevated galactose-1-phosphate levels in blood. METHODS: In order to characterize the molecular defects underlying GALE deficiency, the GALE gene of 7 patients showing severe activity decreases was sequenced. PCR-RFLP was performed to confirm the presence of the mutations identified by sequencing. RESULTS: Nine mutations were identified: 8 missense mutations (p.A25V, p.R40C, p.D69E, p.E165K, p.R169W, p.R239W, p.G302D, and p.R335H) and one nonsense mutation (p.W336X). Except for p.R335H, all of these mutations are novel. Six patients were compound heterozygotes (p.D69E/p.G302D, p.R40C/p.R169W, p.D69E/p.E165K, p.R239W/p.R335H, p.A25V/p.R169W, and p.G302D/p.R335H) and the remaining patient had only one mutation (p.W336X/not detected). Thirty patients with moderately reduced GALE activity were also tested by PCR-RFLP for the presence of the above mutation, and mutations were detected in 17 of these 30 patients. The frequency of p.G302D (9/30), p.R239W (6/30) and p.R169W (5/30) in our Korean patients with GALE deficiency galactosemia was relatively high. CONCLUSIONS: We detected 9 mutations of the GALE gene in Korean galactosemia patients, and confirmed allelic heterogeneity in this disease.

DNA Mutational Analysis↗

Tissue-specific effects of aldose reductase inhibition on fluorescence and cross-linking of extracellular matrix in chronic galactosemia. Relationship to pentosidine cross-links.

Chronic experimental hyperglycemia mediated by galactose has been shown to induce browning and cross-linking of rat tail tendon collagen that could be duplicated in vitro by nonenzymatic galactosylation. To investigate the nature of these changes, Sprague-Dawley rats were placed on a 33% galactose diet without and with sorbinil for 6 and 12 mo. Collagen-linked fluorescence and pentosidine cross-links increased with age and galactosemia in tail tendons (P less than 0.001) and skin but were essentially unresponsive to aldose reductase inhibition (ARI). In contrast, tendon breaking time in urea, a likely parameter of cross-linking, was markedly improved (P less than 0.001) by ARI. Fluorescence that was inhibited by sorbinil treatment was increased in pepsin and proteinase K digest of aortic tissue from galactosemic rats (P less than 0.001), but impaired enzymatic digestibility was not observed. Systolic blood pressure as potential consequence of aortic stiffening was not increased in galactosemia. These data suggest that fluorescence in skin and tendon might be in part due to advanced glycosylation and pentosidine formation because these were not decreased by ARI. However, they also suggest that nonfluorescent cross-links may also be forming because, in contrast to fluorescence, tail tendon breaking time was partly corrected by ARI. Thus, it appears that extracellular matrix changes in chronic galactosemia are complex, being partly attributable to advanced glycosylation and partly to polyol-pathway activation.

Aldehyde Reductase↗