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Biomedical subjects

H Sakuraba

Publications and source records attributed to H Sakuraba.

At least 127 records · Page 7Linked to original sources

Intraperoxisomal form of alanine:glyoxylate aminotransferase in the peroxisomes of bird kidney.

Alanine:glyoxylate aminotransferase has been reported to be present as the apo form in the peroxisomes and as the holo form in the mitochondria in chicken kidney. In contrast, the enzyme was found to be present as the holo form both in the peroxisomes and in the mitochondria in pigeon kidney, suggesting that birds are classified into two groups on the basis of intraperoxisomal form of kidney alanine:glyoxylate aminotransferase. In the kidney, the pigeon peroxisomal holo enzyme did not cross-react immunologically with the chicken peroxisomal apo enzyme.

Alanine Transaminase↗

Purification and characterization of peroxisomal apo and holo alanine:glyoxylate aminotransferase from bird liver.

Alanine:glyoxylate aminotransferase has been reported to be present as the apo enzyme in the peroxisomes and as the holo enzyme in the mitochondria in chick (white leghorn) embryonic liver. However, surprisingly, birds were found to be classified into two groups on the basis of intraperoxisomal forms of liver alanine:glyoxylate aminotransferase. In the peroxisomes, the enzyme was present as the holo form in group 1 (pigeon, sparrow, Java sparrow, Australian budgerigar, canary, goose, and duck), and as the apo form in group 2 (white leghorn, bantam, pheasant, and Japanese mannikin). In the mitochondria, the enzyme was present as the holo form in both groups. The peroxisomal holo enzyme was purified from pigeon liver, and the peroxisomal apo enzyme from chicken (white leghorn) liver. The pigeon holo enzyme was composed of two identical subunits with a molecular weight of about 45,000, whereas the chicken apo enzyme was a single peptide with the same molecular weight as the subunit of the pigeon enzyme. The peroxisomal holo enzyme of pigeon liver was not immunologically cross-reactive with the peroxisomal apo enzyme of chicken liver, the mitochondrial holo enzymes from pigeon and chicken liver, and mammalian alanine:glyoxylate aminotransferases 1 and 2. The mitochondrial holo enzymes from both pigeon and chicken liver had molecular weights of about 200,000 with four identical subunits and were cross-reactive with mammalian alanine:glyoxylate aminotransferase 2 but not with mammalian alanine:glyoxylate aminotransferase 1.

Alanine Transaminase↗

Biosynthesis of human alpha-N-acetylgalactosaminidase: defective phosphorylation and maturation in infantile alpha-NAGA deficiency.

The biosynthesis of human alpha-N-acetylgalactosaminidase (alpha-NAGA) was studied in normal fibroblasts and in cells from patients with infantile alpha-NAGA deficiency. Normal alpha-NAGA is synthesized as a 52 kDa precursor which matures to a 49 kDa species through phosphorylation and carbohydrate triming. Fibroblasts from the patients synthesize normal amounts of a 52 kDa precursor, however phosphorylation does not occur and this precursor is subsequently degraded intracellularly.

Carbohydrate Metabolism, Inborn Errors↗

Fabry disease: detection of 13-bp deletion in alpha-galactosidase A gene and its application to gene diagnosis of heterozygotes.

Polymerase chain reaction amplification of reverse-transcribed messenger RNA from a patient with Fabry disease revealed a 13-base pair deletion in the 5' region (exon 1) of alpha-galactosidase A complementary DNA. This gene rearrangement was not detected by Southern or Northern analysis. Short direct repeats were present around the breakpoints, and considered to be of pathogenetic significance. Gene diagnosis of the mother and a female cousin was successfully achieved by polymerase chain reaction amplification of genomic DNA; the former as a Fabry disease heterozygote and the latter as a normal homozygote.

Adult↗

Acid carboxypeptidase deficiency in galactosialidosis.

Carboxypeptidase activity with an optimal pH at 5.7 was found to be deficient in cultured lymphoblastoid cells and skin fibroblasts from 16 galactosialidosis patients of Japanese origin. The amounts of residual enzyme activities did not correlate with clinical phenotypes (early infantile and juvenile/adult). Four parents of the patients from different families showed enzyme activities at an intermediate level between the patients and normal controls. It was concluded that this enzyme deficiency is closely connected to the genetic defect of "protective protein." Further characterization with various protease inhibitors indicated that the enzyme deficient in galactosialidosis cells is a serine carboxypeptidase with histidine and cysteine residues at or near the active site.

Adolescent↗

A screening for dystrophin gene deletions in Japanese patients with Duchenne/Becker muscular dystrophy by the multiplex polymerase chain reaction.

A new screening method involving the multiplex polymerase chain reaction was developed to detect dystrophin gene deletions in Japanese patients with Duchenne and Becker muscular dystrophy (DMD/BMD). Eleven exonic regions including deletion "hot spots" were analyzed. Gene deletions were found in 33% of 92 unrelated Japanese patients, mainly in the central portion (exons 43-52) and at the 5' end (exons 1-17). This is a useful laboratory test for the rapid genetic diagnosis of DMD/BMD.

Asian People↗

Hypertrophic cardiomyopathy in late-onset variant of Fabry disease with high residual activity of alpha-galactosidase A.

A new variant form of Fabry disease with hypertrophic cardiomyopathy of late onset is reported. Two unrelated male hemizygotes of this disease first presented with signs and symptoms of cardiomyopathy after 50 years of age. Cultured lymphoblastoid cells showed significantly higher residual alpha-galactosidase A activities than in the patients with classical phenotypic expressions.

Cardiomyopathy, Hypertrophic↗

Clinical and molecular heterogeneity in hereditary beta-galactosidase deficiency.

Results of a molecular analysis of GM1-gangliosidosis and galactosialidosis in our laboratory are briefly reviewed. A common single base substitution was found in adult/chronic form of GM1-gangliosidosis among heterogeneous beta-galactosidase gene mutations, and restriction site analysis was successfully performed for diagnosis of homozygotes and heterozygotes. All adult galactosialidosis patients had a common mutation at a splice junction which caused skipping of an exon of the protective protein/carboxypeptidase gene. An artificial restriction site was introduced in this case and applied to diagnosis of this disease. The heterogeneous gene mutations were compared and correlated with phenotypic manifestations in these two diseases.

Adolescent↗

Human beta-galactosidase gene mutations in GM1-gangliosidosis: a common mutation among Japanese adult/chronic cases.

Molecular analysis of the human beta-galactosidase gene revealed six different mutations in 10 of 11 Japanese GM1-gangliosidosis patients. They were the only abnormalities in each allele examined in this study. A 165-nucleotide duplication (positions 1103-1267) was found in two infantile patients, producing an abnormally large mRNA; one patient was probably a homozygote, and the other was a heterozygote of this mutation. The other two infantile patients had different mutations; a 123 Gly(GGG)----Arg(AGG) mutation in one patient and a 316 Tyr(TAT)----Cys(TGT) mutation in the other. A 201 Arg(CGC)----Cys(TGC) mutation, eliminating a BspMI site, was detected in a late-infantile/juvenile patient; the restriction-site analysis of amplified genomic DNA confirmed his heterozygosity for this mutation. A 51 Ile(ATC)----Thr(ACC) mutation was found in all five adult/chronic patients examined in this study. It created a SauI site, and restriction-site analysis confirmed that four patients were homozygous mutants. The other was a compound heterozygote for this mutation and another 457 Arg(CGA)----Gln(CAA) mutation. These mutant genes expressed markedly decreased or completely deficient enzyme activities in beta-galactosidase-deficient human fibroblasts transformed by adenovirus-SV40 recombinants. We conclude that gene mutations are heterogeneous in GM1-gangliosidosis but that the 51 Ile(ATC)----Thr(ACC) mutation is common among the Japanese adult/chronic cases. Genotype-phenotype correlations in GM1-gangliosidosis are briefly discussed.

Adolescent↗

Human beta-galactosidase gene mutations in morquio B disease.

Three different beta-galactosidase gene mutations--a 273Trp----Leu (mutation F) in both families, 482Arg----His (mutation G) in one family, and 509Trp----Cys (mutation H) in the other family--were identified in three patients with Morquio B disease who were from two unrelated families. Restriction-site analysis using StuI, Nsp(7524)I or RsaI confirmed these mutations. In human fibroblasts, mutation F expressed as much as 8% of the normal allele's enzyme activity, but the other mutations expressed no detectable enzyme activity. We conclude that the unique clinical manifestations are specifically associated with mutation F, a common two-base substitution, in this disease.

Amino Acid Sequence↗

Galactosialidosis: simultaneous deficiency of esterase, carboxy-terminal deamidase and acid carboxypeptidase activities.

Esterase and deamidase activities at pH 7.0 and carboxypeptidase activity at pH 5.7 were markedly low or deficient in seven galactosialidosis fibroblast strains with deficient activity of "protective protein" for lysosomal beta-galactosidase and neuraminidase. No simultaneous deficiency of these three enzyme activities was observed in other lysosomal disease fibroblasts examined in this study. This result strongly suggests that "protective protein" is identical with a multifunctional protein with esterase/deamidase/carboxypeptidase activities and its mutation in galactosialidosis results in deficiency of these three enzyme activities.

Adolescent↗

Partial deletion of human alpha-galactosidase A gene in Fabry disease: direct repeat sequences as a possible cause of slipped mispairing.

A partial deletion involving exon 3 associated with a single base change (A to C) was found in the alpha-galactosidase A gene of a hemizygous male Fabry patient and his mother, a heterozygous proband. This 402-bp deletion was flanked by 6-bp direct repeat sequences, and the intervening portion was found to have unique complementary sequences. These specific structures may have promoted "slipped mispairing" in this family.

Base Sequence↗

Expression, glycosylation, and intracellular distribution of human beta-galactosidase in recombinant baculovirus-infected Spodoptera frugiperda cells.

A full-length cDNA encoding human acid beta-galactosidase was inserted into the baculovirus genome under transcriptional regulation of the viral polyhedrin gene promoter. The Spodoptera frugiperda cells infected with the recombinant virus expressed the beta-galactosidase activity 300-fold higher than human fibroblasts. Immunoblot analysis revealed an 82-kDa protein band, which was modified in molecular size by deglycosylating enzymes; an 80-kDa band appeared after N-glycanase digestion, and two bands (80-kDa and 81-kDa) appeared after endoglycosidase H digestion. This result suggested that the enzyme molecule was glycosylated, partly with high-mannose type oligosaccharides. The intracellular distribution of the enzyme observed by indirect immunofluorescence staining was perinuclear or diffusely cytoplasmic, and not characteristic of lysosomes; the enzyme was secreted to the culture medium in large quantities, and not translocated to lysosomes. Possible application of this expression system to the studies of the structure and function of normal and mutant human beta-galactosidases was discussed.

Animals↗

Beta-galactosidase-deficient human fibroblasts: uptake and processing of the exogenous precursor enzyme expressed by stable transformant COS cells.

COS-1 cells were transfected by electroporation with a cDNA for human acid beta-galactosidase cloned in our laboratory and stable transformants expressing the enzyme activity were selected. The precursor form of the enzyme was secreted in large quantities into the culture medium. The fibroblasts from patients with GM1-gangliosidosis or Morquio B disease showed a remarkable increase of enzyme activity, up to the normal level, after culture in this medium for 2 days; the amount of uptake was essentially the same as that for the precursor form in human fibroblasts. After endocytosis, the precursor molecules were processed normally to the mature form and remained as stable as those produced by human fibroblasts. On the other hand, cells from galactosialidosis patients did not show any increase of enzyme activity in a similar experiment. It was concluded that the transformants are useful as the source of precursor proteins for the study of intracellular turnover of enzyme molecules in mutant cells.

Animals↗

[Partial deletion of alpha-galactosidase A gene in a Japanese mutant of Fabry disease].

We identified a structural defect of alpha-galactosidase A (alpha-Gal A) gene in a Japanese patient with Fabry disease. A partial deletion approximately 0.4 kilobase-pairs in size was delineated by restriction endonuclease mapping; whole exon 3 sequence was removed. alpha-Gal A mRNA was deficient in the mRNA preparation from the lymphoblastoid cells derived from the patient, and a faulty transcription resulting in an unstable alpha-Gal A message was suggested in this case. Molecular pedigree analysis was successfully performed in identifying heterozygotes and the ancestry of the mutant allele in this family.

Adult↗