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Biomedical subjects

H Sakuraba

Publications and source records attributed to H Sakuraba.

At least 145 records · Page 8Linked to original sources

Identification of point mutations in the alpha-galactosidase A gene in classical and atypical hemizygotes with Fabry disease.

Efforts were directed to identify the specific mutations in the alpha-galactosidase A (alpha-Gal A) gene which cause Fabry disease in families of Japanese origin. By polymerase-chain-reaction-amplification of DNA from reverse-transcribed mRNA and genomic DNA, different point mutations were found in two unrelated Fabry hemizygotes. A hemizygote with classic disease manifestations and no detectable alpha-Gal A activity had a G-to-A transition in exon 1 (codon 44) which substituted a termination codon (TAG) for a tryptophan codon (TGG) and created an NheI restriction site. This point mutation would predict a truncated alpha-Gal A polypeptide, consistent with the observed absence of enzymatic activity and a classic Fabry phenotype. In an unrelated Japanese hemizygote who had an atypical clinical course characterized by late-onset cardiac involvement and significant residual alpha-Gal activity, a G-to-A transition in exon 6 (codon 301) resulted in the replacement of a glutamine for an arginine residue. This amino acid substitution apparently altered the properties of the enzyme such that sufficient enzymatic activity was retained to markedly alter the disease course. Identification of these mutations permitted accurate molecular heterozygote diagnosis in these families.

Adult↗

Alanine:glyoxylate aminotransferase is present as the apoenzyme in the peroxisomes of chicken kidney.

The subcellular distribution of alanine:glyoxylate aminotransferase in chicken kidney was examined by centrifugation in a sucrose density gradient. The enzyme was found to be present as the apoform in the peroxisomes and as the holoform in the mitochondria. Alanine:glyoxylate aminotransferase in different mammalian kidneys were all present as the holoenzyme in the mitochondrial and soluble fractions.

Animals↗

Fabry disease: six gene rearrangements and an exonic point mutation in the alpha-galactosidase gene.

Fabry disease, an X-linked recessive disorder of glycosphingolipid catabolism, results from the deficient activity of the lysosomal hydrolase, alpha-galactosidase. Southern hybridization analysis of the alpha-galactosidase gene in affected hemizygous males from 130 unrelated families with Fabry disease revealed six with different gene rearrangements and one with an exonic point mutation resulting in the obliteration of an Msp I restriction site. Five partial gene deletions were detected ranging in size from 0.4 to greater than 5.5 kb. Four of these deletions had breakpoints in intron 2, a region in the gene containing multiple Alu repeat sequences. A sixth genomic rearrangement was identified in which a region of about 8 kb, containing exons 2 through 6, was duplicated by a homologous, but unequal crossover event. The Msp I site obliteration, which mapped to exon 7, was detected in an affected hemizygote who had residual enzyme activity. Genomic amplification by the polymerase chain reaction and sequencing revealed that the obliteration resulted from a C to T transition at nucleotide 1066 in the coding sequence. This point mutation, the first identified in Fabry disease, resulted in an arginine356 to tryptophan356 substitution which altered the enzyme's kinetic and stability properties. The detection of these abnormalities provided for the precise identification of Fabry heterozygotes, thereby permitting molecular pedigree analysis in these families which revealed paternity exclusions and the first documented new mutations in this disease.

Blotting, Southern↗

Cloning, sequencing, and expression of cDNA for human beta-galactosidase.

We cloned and sequenced the full-length cDNA for human placental beta-galactosidase. The 2379-nucleotide sequence contains 2031 nucleotides which encode a protein of 677 amino acids. The amino acid sequence includes a putative signal sequence of 23 amino acids and 7 potential asparagine-linked glycosylation sites. The cDNA in the expression vector pSVL was used to transfect COS cells. Expression of the cDNA in transfected COS cells produced immunoprecipitable proteins and led to an increase in beta-galactosidase activity.

Amino Acid Sequence↗

Effect of vitamin E and ticlopidine on platelet aggregation in Fabry's disease.

Thromboembolism, increased platelet aggregation and high plasma concentration of beta-thromboglobulin were observed frequently in hemizygotes and heterozygotes of Fabry's disease. The administration of vitamin E and ticlopidine could improve the increased platelet aggregation in this disease. The platelet activation, probably induced by vascular endothelial damages, would accelerate atherosclerotic and thromboembolic vascular changes. Antiplatelet therapy will be effective for the prevention of these vascular complications in this disease.

Adolescent↗

Activation of platelet function in Fabry's disease.

Increased platelet aggregation and high plasma concentration of beta-thromboglobulin were observed in hemizygotes and heterozygotes of Fabry's disease. Carbamazepine and phenytoin administered for the treatment of pains in these patients showed no significant effect on platelet aggregation. No activation of platelets was observed after the addition of ceramide trihexoside, the storage lipid of this disease. Mitral valve prolapse was found in eight of 12 patients. Although the pathogenesis of platelet activation and mitral valve prolapse are not known, the platelet activation could be an early indicator and an accelerating factor of thromboembolic vascular change in this disease.

Adolescent↗

[Fabry's disease].

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Fabry Disease↗

Cardiovascular manifestations in Fabry's disease. A high incidence of mitral valve prolapse in hemizygotes and heterozygotes.

Cardiovascular manifestations of Fabry's disease were studied clinically in 10 hemizygous males and 13 heterozygous females. Mitral valve prolapse was found in 5 of 9 hemizygotes and in 5 of 13 heterozygotes examined by echocardiography. Ordinary medical examinations revealed cardiomyopathy in some asymptomatic females, and the diagnosis of the Fabry heterozygote was established by demonstration of specific inclusion bodies in the biopsied myocardium and low alpha-galactosidase activity in leukocytes. Renovascular hypertension of juvenile onset and thromboembolism were also found in 7 patients. It was concluded that Fabry's disease should always be considered in cases of mitral valve prolapse, cardiomyopathy, renovascular hypertension and thrombosis of unknown etiology, and that the Fabry patients should be followed carefully for the early detection of cardiovascular involvements in this disease.

Adolescent↗

Galactosialidosis: low beta-galactosidase activity in serum after long-term clotting.

Serum beta-galactosidase activity was found to be markedly increased in clotting blood from normal subjects, but patients with galactosialidosis showed only a slight increase of this enzyme activity. Consequently, the beta-galactosidase activity was low in serum after long-term clotting in patients with this disease. The mechanism of the enzyme activation is unknown. The use of anticoagulants completely inhibited the activation.

Galactosidases↗

beta-Galactosidase-neuraminidase deficiency (galactosialidosis): clinical, pathological, and enzymatic studies in a postmortem case.

Three male siblings in a Japanese family were affected with beta-galactosidase-neuraminidase deficiency (galactosialidosis). One patient died at 45 years of age, and postmortem liver and brain tissues were studied enzymatically. The residual activity of neuraminidase was relatively high in these tissues. Neuraminidase activity did not change in the tissues after repeated freezing and thawing of the homogenates, whereas this enzyme in control tissues lost 30 to 60% of its activity. There was a profound deficiency of beta-galactosidase in the tissues of the patient. Michaelis constant, pH profiles, and cryostability were identical for the patient and control patients. Cathepsin B was moderately increased in activity in the patient's tissues.

Adult↗

Biochemical analysis of cerebrum of fetal rat X-irradiated in utero--DNA, RNA, superoxide dismutase and lipid peroxide--.

Wistar rats were X-irradiated in utero and biochemical analysis of the cerebrum was performed on gestational day (g d) 21. The cerebral weight was significantly lower in the irradiated group on g d 13 with above 75R than in the control group. The contents of DNA, RNA and protein were decreased in the cerebrum of the fetuses irradiated with 100R on g d 13 when calculated per cerebrum, and DNA only was decreased occasionally when expressed as per gm wet weight. The lipid peroxide level of the cerebrum in the irradiated group was increased compared to that of the control group. The superoxide dismutase (SOD; E.C. 1.15.1.1.) activity was extremely low and lipid peroxidation in vitro was considerably enhanced in fetal cerebrum. The low activity of SOD may be one of the factors which cause the vulnerability of fetal brain to irradiation.

Animals↗