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Galactose content of baby food meats: considerations for infants with galactosemia.

Treatment of galactosemia requires a galactose-restricted diet. Although meats are not traditionally thought of as a dietary carbohydrate source, small amounts may be present in free form and/or bound to proteins or lipids. The purpose of this study was to determine the free and bound galactose contents of baby food meats. Galactose was assayed using high-performance liquid chromatography. The free galactose content of baby food meats ranged from 0 to 0.031 mg/100 g. No statistically significant differences in free galactose content were found among the meats. Bound galactose was found in all analyzed baby food meats, ranging from 0.065 to 0.148 mg/100 g. The mean galactose content of BeechNut chicken (St. Louis, MO) was significantly less than that found in Gerber (Fremont, MI) and Heinz (Pittsburgh, PA) brands of chicken, beef, and turkey, and Gerber lamb and veal. Based on current recommendations, all examined baby food meats would be acceptable for infants with galactosemia.

Animals↗

Molecular structure of human galactokinase: implications for type II galactosemia.

Galactokinase functions in the Leloir pathway for galactose metabolism by catalyzing the MgATP-dependent phosphorylation of the C-1 hydroxyl group of alpha-D-galactose. The enzyme is known to belong to the GHMP superfamily of small molecule kinases and has attracted significant research attention for well over 40 years. Approximately 20 mutations have now been identified in human galactokinase, which result in the diseased state referred to as Type II galactosemia. Here we report the three-dimensional architecture of human galactokinase with bound alpha-D-galactose and Mg-AMPPNP. The overall fold of the molecule can be described in terms of two domains with the active site wedged between them. The N-terminal domain is dominated by a six-stranded mixed beta-sheet whereas the C-terminal motif contains six alpha-helices and two layers of anti-parallel beta-sheet. Those residues specifically involved in sugar binding include Arg37, Glu43, His44, Asp46, Gly183, Asp186, and Tyr236. The C-1 hydroxyl group of alpha-D-galactose sits within 3.3 A of the gamma-phosphorus of the nucleotide and 3.4 A of the guanidinium group of Arg37. The carboxylate side chain of Asp186 lies within approximately 3.2 A of the C-2 hydroxyl group of alpha-D-galactose and the guanidinium group of Arg37. Both Arg37 and Asp186 are strictly conserved among both prokaryotic and eukaryotic galactokinases. In addition to providing molecular insight into the active site geometry of the enzyme, the model also provides a structural framework upon which to more fully understand the consequences of the those mutations known to give rise to Type II galactosemia.

Amino Acid Sequence↗

Abnormalities of retinal metabolism in diabetes or experimental galactosemia VIII. Prevention by aminoguanidine.

PURPOSE: Aminoguanidine has been found to inhibit the development of some retinal lesions in diabetic rats and diabetic dogs, thereby raising a possibility that the formation of glycation end products (AGEs) may be an essential step in the pathogenesis of the retinopathy. The purpose of this study is to investigate the effect of aminoguanidine administration on other metabolic abnormalities which might be involved in the development of retinopathy in two models of the retinopathy, alloxan diabetes and experimental galactosemia. METHODS: Oxidative stress, nitric oxide (NO) and the activity of protein kinase C (PKC, total activity) were measured in the retina of the rats experimentally diabetic or galactosemic for 2 months. Effect of aminoguanidine administration on the inhibition of hyperglycemia-induced retinal dysmetabolism was investigated. RESULTS: Two months of diabetes or experimental galactosemia in rats resulted in elevation of retinal oxidative stress (increase in thiobarbituric acid reactive substances, TBARS, and decrease in glutathione, GSH), NO, and PKC activity. Aminoguanidine supplementation (2.5 g aminoguanidine/kg rat diet) significantly inhibited each of these abnormalities in retinas of diabetic rats and galactosemic rats, and did so without lowering the blood hexose levels of these animals. CONCLUSIONS: The ability of aminoguanidine to normalize the hyperglycemia-induced increases in retinal oxidative stress, NO and PKC in diabetic rats and galactose-fed rats suggests that these abnormalities may be inter-related in the retina, and that the biochemical mechanism by which aminoguanidine inhibits retinal microvascular disease in diabetes may be complex.

Animals↗

Diet does not ensure normal development in galactosemia.

This review deals with the treatment of inherited classical galactosemia by a lactose-free diet. Although, with dietary treatment, there is a remarkable improvement in the acute phase of the disease, the long-term outcome has been disappointing for most patients, especially regarding the central nervous system and ovarian dysfunction in females. There is a need for new approaches to treatment, in combination with diet therapy, that could improve the outcome of patients with galactosemia.

Galactosemias↗

The structural and molecular biology of type III galactosemia.

Type III galactosemia is a genetic disease caused by mutations in the gene encoding UDP-galactose 4-epimerase. A variety of different point mutations located throughout the gene can be responsible. The main, disease-causing effects of these mutations appear to be a reduction in the catalytic rate constant (kcat) and an increase in the proteolytic sensitivity of the protein. Many of the mutations are distant from the active site of the enzyme and therefore must be assumed to affect the overall fold of the protein. Although the disease was previously classified into a severe, or generalized, form and an essentially benign, or peripheral, form this distinction has been blurred by recent work. Instead of two separate conditions it now appears that type III galactosemia is a continuum and that the symptoms will vary depending on the mutation(s) carried by the individual sufferer. This new way of looking at the disease has implications for the treatment and long term monitoring of patients.

Binding Sites↗

Characterization of two mutations associated with epimerase-deficiency galactosemia, by use of a yeast expression system for human UDP-galactose-4-epimerase.

UDP-galactose-4-epimerase (GALE) is a highly conserved enzyme that catalyzes the interconversion of UDP-galactose and UDP-glucose. Impairment of this enzyme in humans results in one of two clinically distinct forms of epimerase-deficiency galactosemia-one benign, the other severe. The molecular and biochemical distinction between these disorders remains unknown. To enable structural and functional studies of both wild-type and patient-derived alleles of human GALE (hGALE), we have developed and applied a null-background yeast expression system for the human enzyme. We have demonstrated that wild-type hGALE sequences phenotypically complement a yeast gal10 deletion, and we have biochemically characterized the wild-type human enzyme isolated from these cells. Furthermore, we have expressed and characterized two mutant alleles, L183P-hGALE and N34S-hGALE, both derived from a patient with no detectable GALE activity in red blood cells but with approximately 14% activity in cultured lymphoblasts. Analyses of crude extracts of yeast expressing L183P-hGALE demonstrated 4% wild-type activity and 6% wild-type abundance. Extracts of yeast expressing N34S-hGALE demonstrated approximately 70% wild-type activity and normal abundance. However, yeast coexpressing both L183P-hGALE and N34S-hGALE exhibited only approximately 7% wild-type levels of activity, thereby confirming the functional impact of both substitutions and raising the intriguing possibility that some form of dominant-negative interaction may exist between the mutant alleles found in this patient. The results reported here establish the utility of the yeast-based hGALE-expression system and set the stage for more-detailed studies of this important enzyme and its role in epimerase-deficiency galactosemia.

Alleles↗

Unusual presentation of galactosemia in a 4-month-old child.

Galactosemia is a rare inborn error of metabolism, which if detected can be treated effectively. Galactosemia can occur due to the deficiency of either galatose-1-phosphate uridyl transferase (GLUT) or galactokinase. Both these deficiencies have their characteristic presentation. In this case report we describe a 4-month-old infant who presented with clinical symptoms highly suggestive of GLUT deficiency but on investigation turned out to be galactokinase deficiency.

Biopsy, Needle↗

Loss of transferase enzyme activity of transfused erythrocytes in galactosemia.

Rapid loss of erythrocyte galactose-1-phosphate uridyl transferase in hemolysates from an infant 26 days after transfusion led to investigation of the possiblity of an unstable enzyme or other variant of galactosemia. However, the child was found to have the classic type of galactosemia. The seeming transferase instability was attributable to loss of enzyme activity in hemolysates from blood containg aged, transfused cells, the source of the enzyme. Thus when transfusion is necessary, transferase assay for diagnosis of the enzyme deficiency before transfusion avoids confusion attributable to the enzyme supplied in the transfused cells.

Adult↗

Outcomes analysis of verbal dyspraxia in classic galactosemia.

PURPOSE: This study evaluates a genotype/phenotype relationship between developmental verbal dyspraxia (DVD) and the common, missense mutation of the galactose-1-phosphate uridyltransferase gene, Q188R, in patients with classic galactosemia (G/G). METHODS: As part of this study, we devised a questionnaire for "speech problems" to be completed by the patient\'s clinician. To validate the questionnaire and determine its accuracy in detecting DVD, we analyzed questionnaire responses for 21 patients by testing them independently and directly for DVD through a speech pathologist blinded to the patients' genotype. RESULTS: We found that the questionnaire had a sensitivity of 0.56 and a specificity of 0.75. We then calculated the prevalence of DVD for a larger set of 113 patients with G/G galactosemia whose biochemical phenotype, molecular genotypes, and clinical status were known. The prevalence of "speech problems" from raw data were 50 of 113 (44.2%). After adjusting for misclassification, 43 (38.1%) were classified as cases of DVD. Using multivariate, logistic, regression analyses we found a significant interaction between genotype and mean red blood cell (RBC) galactose-1-phosphate (Gal-1-P). When corrected, using mean RBC Gal-1-P < h 3.28 mg%, the Q188R/Q188R genotype was the best predictor of DVD. There was a significant risk (odds ratio = 9.6, p = 0.0504) of having DVD associated with homozygosity for Q188R compared with other genotypes. CONCLUSIONS: We conclude that homozygosity for Q188R mutations in the GALT gene is a significant risk factor for DVD. However, poor metabolic control obviates this relationship as indicated by RBC Gal-1-P greater than 3.28 mg%.

Apraxias↗

Insights into the pathogenesis of galactosemia.

In humans, the absence of galactose-1-phosphate uridyltransferase (GALT) leads to significant neonatal morbidity and mortality which are dependent on galactose ingestion, as well as long-term complications of primary ovarian failure and cognitive dysfunction, which are diet independent. The creation of a knockout mouse model for GALT deficiency was aimed at providing an organism in which metabolic challenges and gene manipulation could address the enigmatic pathophysiologic questions raised by humans with galactosemia. Instead, the mouse represents a biochemical phenotype without evidence of clinical morbidity. The similarities and differences between mice and humans with galactosemia are explored from metabolite, enzyme, and process points of view. The mouse both produces and oxidizes galactose in a manner similar to humans. It differs in brain accumulation of galactitol. Future directions for exploration of this enigmatic condition are discussed.

Animals↗

[Bone mineral turnover and bone densitometry in patients with a high-risk diet: hyperphenylalaninemia and galactosemia].

INTRODUCTION: Patients with any type of congenital metabolism error are at risk for developing osteoporosis. To gain further insight into the physiopathology of this disease, we studied bone mineral turnover in 10 children with hyperphenylalaninemia, seven with phenylketonuria and six with galactosemia. Oral intake was strictly controlled and the children followed recommendations for physical exercise. MATERIAL AND METHOD: Markers of bone resorption (hydroxyproline and pyridinoline in urine samples) and markers of bone formation (levels of osteocalcin and C-terminal procollagen peptide type I) were analyzed. Bone mineral density was analyzed by ultrasound densitometry. RESULTS: A non-significant reduction in bone densitometry with respect to the normal population was observed. Bone mineral turnover was slightly diminished in patients with phenylketonuria but was within the normal range in patients with hyperphenylalaninemia and galactosemia. CONCLUSION: Adequate control of dietary intake of both proteins and minerals, as well as a healthy lifestyle, can prevent the development of significant alterations in bone mineralization.

Adolescent↗

Abnormal somatosensory evoked potentials in patients with classic galactosemia: correlation with neurologic outcome.

In classic galactosemia, long-term neurologic sequelae can include low cognitive functioning and a curious neurologic syndrome with tremors, dysmetria, and ataxia. An abnormal white-matter signal on cerebral magnetic resonance imaging (MRI) is present in almost all patients; some have mild cerebral or cerebellar atrophy and focal white-matter lesions. The present study was undertaken to assess the integrity of myelinated pathways by recording somatosensory evoked potentials. Results were correlated with age at diagnosis, severity of illness, age at evoked potentials, neurologic examination, MRI studies and cognitive outcome as measured by the Woodcock-Johnson Revised Standard Cognitive Battery. Evoked potentials were abnormal in 17 (28%) of 60 patients who had median nerve, and 26 (77%) of 34 patients who had posterior tibial nerve studies. Abnormalities of the central rather than the peripheral nervous system were most common. Evoked potentials correlated with severity of presenting symptoms (P = .011), age at evoked potential testing (P = .029), and presence of focal white-matter lesions on MRI (P = .049). Results of neurophysiologic testing showed no correlation with the Woodcock-Johnson Battery. Patients with classic galactosemia may have abnormal conduction along myelinated pathways that is associated with other central deficits. Myelin, which contains galactose, may be adversely affected in this inborn error of metabolism.

Adolescent↗

Fructose-induced hyperuricemia: observations in normal children and in patients with hereditary fructose intolerance and galactosemia.

After the infusion of fructose, 0.25 g/kg body wt, the mean peak plasma uric acid level was 5.4 +/- 0.7 (SEM) mg/100 ml in six normal children and was not significantly increased compared with that of the mean basal value of 4.1 +/- 0.5 mg/100 ml. The mean blood inorganic phosphate (Pi) levels were significantly less than the mean fasting value after fructose. Blood glucose, lactic acid, and fructose levels were significantly increased after fructose, but serum magnesium levels did not change. In two patients with hereditary fructose intolerance (HFI) the peak blood uric acid levels were 12.1 and 7.6 mg/100 ml, respectively, after fructose. In both patients the blood glucose concentrations decreased 69 and 26 mg/100 ml below the fasting levels after fructose. The serum Pi level decreased 2.3 and 1.2 mg/100 ml below fasting values, decrements greater than the mean decrement in serum Pi of 0.8 +/- 0.2 mg/100 ml which occurred in six normal children. The mean uric acid excretion, expressed as milligrams per mg urinary creatinine, was 0.6 +/- 0.1 (SEM) before fructose in the normal children and increased significantly to 1.0 +/- mg/mg creatinine after fructose. In two patients with HFI the uric acid excretion increased four- to fivefold after fructose administration; the increased uric acid excretion in HFI exceeded that of normal children. In three patients with galactosemia, increases in blood uric acid levels after galactose ingestion were similar to those in normal children after fructose, but less than those in patients with HFI after fructose. The serum Pi levels decreased less in galactosemic patients after galactose administration than in patients with HFI after fructose infusion. These studies support the hypothesis that fructose-induced hyperuricemia results from degradation of adenosine monophosphate. This effect appears to be specific for fructose. The lack of hyperruricemia in galactosemia patients after galactose ingestion may be explained by the observation that galactose is phosphorylated more slowly than fructose.

Adult↗

Stable isotope dilution analysis of galactitol in amniotic fluid: an accurate approach to the prenatal diagnosis of galactosemia.

A stable isotope dilution assay for galactitol in amniotic fluid has been developed using selected ion monitoring chemical ionization gas chromatography-mass spectrometry of the hexaacetate derivative. [1,1-2H2]Galactitol was synthesized for use as the internal standard. Galactitol is a component of normal amniotic fluid with a mean concentration of 0.70 +/- 0.18 mumol/liter (n = 5). The amniotic fluid of a fetus with galactosemia had a concentration of 7.96 mumol/liter. Mannitol, sorbitol, and inositol were also found to be normal constituents of amniotic fluid. This stable isotope dilution assay is a rapid accurate method for measurement of galactitol in amniotic fluid for prenatal diagnosis of galactosemia.

Amniotic Fluid↗

Gonadal function and ovarian galactose metabolism in classic galactosemia.

Evaluation of ovarian steroid secretion, histologic examination of ovarian tissue, and incubation studies with radiolabelled galactose in ovarian tissue slices were performed in a 21-year-old woman with galactosemia and incipient ovarian failure. After exogenous gonadotropin administration in an attempt to achieve fertility, there was no evidence of ovulation by ultrasound; estrogen and androgen production were deficient indicating ovarian unresponsiveness. Histologic examination of the ovary revealed that the ovarian stroma had an increase in fibrous tissue and that a few hyalinized atretic follicles were present with no intermediate or evolving Graafian follicles. After incubation with galactose-1-14C, there was absence of labelled CO2 production and only labelled galactose-1-phosphate was identified as compared to controls in which several labelled intermediates could be seen. The incorporation of galactose into the TCA-insoluble fraction was drastically reduced in the patient compared to controls, suggesting that there may be a deficiency of ovarian galactose-containing glycolipids, glycoproteins and mucopolysaccharides in the galactosemic ovary. Deficiency in the production of galactose containing compounds, or galactose-1-phosphate accumulation or both, may lead to the development of hypergonadotropic hypogonadism seen in women with galactosemia.

Adolescent↗

Abnormalities of retinal metabolism in diabetes or experimental galactosemia. III. Effects of antioxidants.

Effects of antioxidants on hyperglycemia-induced alterations of retinal metabolism were evaluated in rats diabetic or experimentally galactosemic for 2 months. Oxidative stress was estimated by measuring lipid peroxides (measured as thiobarbituric acid reactive substances [TBARS]) in retina and plasma. Erythrocyte osmotic fragility, another measure of oxidative stress, also was determined in the same groups of rats. In diabetic rats, TBARS were elevated by 74% in retina and 87% in plasma. In galactose-fed rats, TBARS were significantly elevated in retina (P < 0.05), but were normal in plasma. The administration of supplemental dietary ascorbic acid and alpha-tocopherol acetate for 2 months prevented the elevation of retinal TBARS and the decrease of Na(+)-K(+)-ATPase and calcium ATPase activities in retinas of diabetic animals without having any beneficial effect on plasma TBARS. In galactosemic rats, these antioxidants had a partial beneficial effect on the activity of retinal Na(+)-K(+)-ATPase, but failed to have any effect on calcium ATPase. The beneficial effects of antioxidants in diabetes and experimental galactosemia were not caused by the amelioration of hyperglycemia or retinal polyol accumulation. Erythrocyte osmotic fragility was increased by more than twofold in diabetes, but was normal in experimental galactosemia, and antioxidants prevented diabetes-induced increases in erythrocyte osmotic fragility-Diabetes-induced increased oxidative stress and subnormal ATPase activities in the retina can be inhibited by dietary supplementation with antioxidants.

Animals↗

Abnormalities of retinal metabolism in diabetes or galactosemia. II. Comparison of gamma-glutamyl transpeptidase in retina and cerebral cortex, and effects of antioxidant therapy.

Levels of the intracellular antioxidant, glutathione, become subnormal in retina in diabetes or experimental galactosemia. In order to investigate the cause and significance of this abnormality, activity of gamma-glutamyl transpeptidase (an enzyme important in the synthesis and degradation of glutathione) and levels of reduced glutathione have been measured in retinas of diabetic rats and dogs and of experimentally galactosemic rats and dogs. Retinal gamma-glutamyl transpeptidase activity and glutathione level were significantly less than normal after 2 months of diabetes or galactosemia. In contrast, cerebral cortex from the same diabetic rats and galactosemic rats showed no significant reduction in either gamma-glutamyl transpeptidase activity or glutathione level. These different responses of the two tissues to hyperglycemia might help account for the difference in microvascular disease in these two tissues in diabetes. Consumption of the antioxidants, ascorbic acid (1.0%) plus alpha-tocopherol (0.1%), by diabetic rats and galactosemic rats inhibited the decrease of gamma-glutamyl transpeptidase activity and glutathione levels in retina, suggesting that defects in glutathione regulation in the retina are secondary to hyperglycemia-induced 'oxidative stress'.

Animals↗

Ophthalmic findings in classical galactosemia--a screened population.

Classical galactosemia due to a deficiency of galactose-1-phosphate-uridyl transferase, is an autosomal recessive disorder of galactose metabolism with an incidence in Ireland of one in 30,000 births. It can result in cataract formation through the accumulation of galactitol within the lens. Seventeen children with transferase deficient galactosemia were studied. Early diagnosis followed by a galactose-free diet and tight biochemical control prevented cataract formation in 13 cases after a mean follow-up of 6.3 years. Cataracts did not regress in all patients commenced on diet by 6 weeks but early treatment prevented progression. The ophthalmologist may play an important role in the monitoring of patients with this disease as the recognition of new lens opacities by slit-lamp biomicroscopy may be the most sensitive initial index of inadequate biochemical control.

Adolescent↗