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Biomedical subjects

N Saha

Publications and source records attributed to N Saha.

262 records · Page 15Linked to original sources

Molecular variants of red cell glucose-6-phosphate dehydrogenase deficiency in Central Java, Indonesia.

One hundred and sixty-nine Javanese males were screened for the presence of red cell glucose-6-phosphate dehydrogenase (G6PD) variants by a dye decoloration screening test and starch gel electrophoresis. The frequency of G6PD deficiency was 14%. Three non-deficient electrophoretic variants with mobilities of 95, 105 and 107% of GdB+ were encountered. Sixteen G6PD-deficient subjects were further investigated for the presence of mutations at nt95 A-->G, nt487 G-->A, nt493 A-->G, nt563 C-->T, nt1024 C-->T, nt1376 G-->T, nt1388 G-->A and the silent mutation (nt1311 C-->T) of the G6PD gene by natural or artificially created amplified restriction sites. They were identified by the polymerase chain reaction and electrophoresis of restriction-digested products. Five subjects had the Mediterranean mutation (nt563 C-->T), but only one had simultaneous presence of nt1311(T). The next common mutations were 1376(T) in three subjects and 487(A) in two subjects. Five of the sixteen subjects had the nt1311(T) mutation giving an overall frequency of 0.31. The other four mutations were absent in this population sample.

Base Sequence↗

Biochemical characteristics of four common molecular variants in glucose-6-phosphate dehydrogenase-deficient Chinese in Singapore.

Biochemical characteristics were determined for four common molecular variants of glucose-6-phosphate dehydrogenase (G6PD) deficiency and 10 non-deficient Chinese males in Singapore. The variants included one Mediterranean (nt563 C-->T), two Canton (G-->T at nt1376) and one each of Kaiping (1388 G-->A) and Chinese-5 (1024 C-->T) variants. Molecular identification was carried out by amplication of genomic DNA with specific oligonucleotide primers followed by digestion with restriction enzymes that recognize artificially created or naturally occurring restriction sites. All the variants had low enzyme activity in red cells (0.2-0.6 IU/g Hb). All but the Chinese-5 variant (nt1024) had a normal Km for NADP (7-10 microM). The Mediterranean variant had a high utilization of deamino-NADP (296%), followed by the Canton variant 1376 substitution (131%). The Km for glucose-6-phosphate was low in the Mediterranean and 1376 variant (18-40 microM) but high in the 1024 substitution (104 microM). Electrophoretic mobility in TEB buffer (pH 8.6) was slightly faster (103%) for the 1376 mutation while 100% for all the others. All but the 1024 substitution had increased analogue utilization for galactose-6-phosphate and 2-deoxy-glucose-6-phosphate (58 and 68% for the Mediterranean mutation and 14-23% for the 1376 and 1388 substitutions, respectively), and reduced heat stability.

China↗

p53 polymorphisms and haplotypes show distinct differences between major ethnic groups.

Three different p53 DNA polymorphisms (a 16-bp duplication in intron 3 and BstUI and MspI RFLPs in exon 4 and intron 6, respectively) and haplotype combinations were studied in some major ethnic groups: Caucasians (Swedes), Chinese, Dravidian Indians and African Blacks. Significant ethnic differences in single polymorphisms were found between all groups except for African Blacks-Dravidian Indians, who differed only in their MspI7-16-bp duplication haplotype distribution. Since previous results have shown that p53 alleles are correlated with latitude (degree of insolation), the similarity between these two groups, who are genetically quite distinct, may be due to ecological adaptation to similar climatic conditions. All other major ethnic groups differed significantly from each other with respect to their haplotype distributions; thus, p53 alleles and haplotypes should be very useful as anthropological markers. Asiatic Mongoloid groups appear to be characterized by very low frequencies of the 16-bp duplication and the MspI A1 allele. These mutations have probably been introduced by migration to east Asia from either Europe or Africa, where the highest frequencies were found. The results of this study indicate that p53, besides its role as a tumor suppressor, shows distinct ethnic heterogeneity and may be involved in ecological (climatic) adaptation.

Alleles↗

The codon 31 polymorphism of the p53-inducible gene p21 shows distinct differences between major ethnic groups.

The codon 31 polymorphism of the p53-inducible protein p21 was studied with respect to allele frequency variations between some major ethnic groups. The frequency of the Al (Arg) allele showed highly significant variations ranging from 4% in Caucasians (Swedes) to 50% in Chinese. Compared to Caucasians, a relatively high frequency was found in African Blacks (29%) and Indians (16%). Furthermore, Finns and Mordvinians also had higher frequencies (9-10%) than west Europeans (French and Swedes), consistent with an Asiatic Mongoloid influence known to exist in Finno-Ugrian tribes. The geographic allele frequency patterns of p53 and its effector protein p21 were quite different. The p21 A1 mutations in African, Asiatic and European populations were identical at the DNA level. The geographical distribution of the A1 allele suggests an independent origin in Africa and Asia. The very pronounced ethnic differentiation of tumour suppressor genes and the fact that tumour suppressor genes may be teratogenes suggest that these polymorphisms are maintained by natural selection, probably operating in the intrauterine period.

Alleles↗

T cell receptor beta chain RFLP in Chinese, Indians and Malays from Singapore.

Restriction fragment length polymorphism (RFLP) of the gene encoding the beta chain of the human T cell receptor (TcR) was studied in three ethnic groups in Singapore by Southern blotting. Polymorphism in the beta chain gene was identified in BglII-digested DNA samples using a 770-bp TcR beta cDNA clone containing the joining and constant region segments. The TcR beta/BglII polymorphism was studied in 136 Chinese, 93 Indian and 88 Malay samples. The frequency of the less frequent allele (TcR beta*2) in all the ethnic groups was significantly lower (0.15-0.29, p < 0.01) than that in the Caucasians (0.46). Indians had a significantly lower frequency of this allele (0.15) than the Chinese (0.29) and Malays (0.26).

Adolescent↗

Ethnic differences in interferon-alpha allele frequencies.

Interferon-alpha (IFN-alpha) is a protein family controlled by altogether 26 different IFN-alpha genes. We have previously described an SspI polymorphism in the IFN A17 gene and an association between the SspI A2 allele and nasopharyngeal cancer. In this paper we present data on ethnic differences with respect to IFN A17 SspI allele frequencies. Thus the frequency of the SspI A1 allele was high in two different Chinese populations (51 and 48%, respectively) and much lower (11%) in Swedes. Intermediate values were found in African Blacks (32%), Indians (25%), Saamis (29%) and Finns (24%). The very pronounced differences between major ethnic groups make the IFN A17 SspI polymorphism a very informative anthropological marker system and suggest that it may be balanced and maintained by natural selection.

Alleles↗

Ethnic differences in the HFE codon 282 (Cys/Tyr) polymorphism.

Recent studies have shown that hereditary hemochromatosis (HH) is likely to be caused by homozygosity for a Cys282Tyr mutation in the HFE gene located 4.5 Mb telomeric to HLA-A. Population studies of this polymorphism are facilitated by the fact that the Cys282Tyr mutation creates a Rsal restriction site. We have studied the codon 282 (Cys/Tyr) polymorphism in different ethnic groups. In agreement with previous observations the Tyr allele appeared to be rare or absent in Asiatic (Indian, Chinese) populations. The highest allele frequency (7.5%) was found in Swedes. Saamis (2%) and Mordvinians (1.8%) had significantly lower frequencies of the Tyr allele. Comparisons with allele frequencies based on prevalence estimates of HH showed some disagreements with the RFLP data, particularly in Finns. The newly described HFE marker provides a new approach to the screening of HH as well as studies of the relationship between the HFE Tyr allele and different disorders including cancer.

Alleles↗