Erythrocyte lactate dehydrogenase variants in the Icelandic and Swedish populations.
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Biomedical subjects
Publications and source records attributed to G Beckman.
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Transferrin (TF) types were examined by isoelectric focusing in an attempt to elucidate migrations and admixture between populations in the Baltic Sea region. A highly significant heterogeneity between populations was found with respect to TF*C subtypes as well as the rare TF variants B2, B0-1 and DCHI. With the exception for Estonia, increased frequencies of the TF*C3 allele were observed east of the Baltic Sea. The island of Gotland in the middle of the Baltic Sea also showed a high TF*C3 frequency indicating an eastern influence. The TF*DCHI allele, a marker of eastern (Finno-Ugric) influence, was found in Finland and Estonia and on the island of Gotland, but not in mainland Sweden and in the Baltic peoples (Latvians and Lithuanians). These results indicate the presence of a Finno-Ugric, most likely Estonian or Livonian, genetic influence in the Gotland population.
Genetic polymorphism of orosomucoid (ORM) was studied by isoelectric focusing and immunoblotting in Finns, Swedes and Swedish Saamis. The ORM2 locus was found to be monomorphic in all three ethnic groups. In the Swedish sample the frequency of the ORM1*2 allele (0.414) was within the range found in other European populations, whereas Finns (0.282) and Saamis (0.210) showed significantly lower ORM1*2 frequencies. The extremely low ORM1*2 frequency in the Saamis further underlines the genetic uniqueness of this population. The ORM1*2 frequency in Saamis resembles those in Asiatic Mongoloid populations, but this is unlikely to reflect an Asiatic influence, since the accumulated knowledge on genetic markers in the Saamis show no unequivocal evidence for an Asiatic influence in this population.
Serum complement (C3, BF, C4) types were examined in Swedish Saamis (Lapps). In agreement with previous studies, a very low frequency of the C3*F allele (0.033) was found. Compared to Swedes and other Caucasian populations, Swedish Saamis showed a significantly increased frequency of the BFS, C4A4 and C4B2 variants, and a lower frequency of C4 deficiency. BFS, C4A4 and C4B2 show haplotype associations and thus the frequency of the S-A4-B2 complotype is significantly increased among the Saamis. Although the serum complement constitution of the Saamis shows some similarity with that of Asiatic Mongoloid populations it is unlikely to be due to Asiatic ethnic influence. The marked genetic deviations of the Saamis from all other populations has often been interpreted as a result of the founder effect and genetic drift. In this particular case, however, immunogenetic adaptation appears to be a plausible alternative explanation for the deviations in genetic complement factors.
Restriction fragment length polymorphisms have previously been found in the placental alkaline phosphatase (PLAP) and germ cell alkaline phosphatase (GCAP) genes, but not in the closely related intestinal alkaline phosphatase (IAP) locus. We here report on a PstI restriction fragment length polymorphism in IAP found in Finns and Swedes but not in Saamis. A probable T-->G mutation in position 175 of intron 11 would create a new cleavage site for PstI. The borderline frequency of the mutant allele (0.01) is in agreement with previous observations suggesting that IAP is considerably less polymorphic than PLAP and GCAP.
Enzyme and DNA polymorphisms and haplotypes of tissue-specific alkaline phosphatase genes were studied in Finns, Saamis and Swedes. In placental alkaline phosphatase (PLAP) restriction fragment length polymorphisms (RFLPs), found after digestion with RsaI and PstI, no significant population differences were observed. The PstI RFLP of the germ cell alkaline phosphatase (GCAP) locus showed significant allele frequency variations between Finns and Swedes (p = 0.014) and between Saamis and Swedes (p = 1 x 10(-4)). Electrophoretic enzyme variants of PLAP were studied in Finns and Swedes. The PLAP variant 18 (D in older nomenclature) was found at a polymorphic frequency in the Finnish sample. In all populations, strong linkage disequilibria were found between the RFLPs and between RFLPs and electrophoretic PLAP types. There was, however, one notable exception: between the RsaI RFLP of PLAP and the PstI RFLP of GCAP no linkage disequilibrium was found. Two new RFLPs were observed in the Finnish population sample, a RsaI mutant site in PLAP with a frequency of 0.02 and a KpnI mutant site outside and upstream of the PLAP gene with a frequency of 0.036. In accordance with findings in previous studies at the enzyme level, PLAP also appeared to be more polymorphic than GCAP and intestinal alkaline phosphatase at the DNA level.
We present here a new interesting feature of the human tumor suppressor gene p53: a very pronounced ethnic and clinal variation of polymorphic codon 72 alleles. The frequency of the A1 (Pro) allele showed a north-south cline from 17% in Swedish Saamis to 63% in African Blacks (Nigerians), and there was a significant (p < 0.001) correlation (r = 0.95) between the A2 frequency and latitude. In the Finnish and Swedish populations no significant differences were found with respect to the genotype and allele distributions in spontaneously aborted fetuses and liveborn children, which makes differential intrauterine selection unlikely. However, the ethnic and clinal variations suggest that the codon 72 polymorphism is balanced and maintained by natural selection.
Recently, results have been presented which suggest that placental alkaline phosphatase (PLAP) is an IgG receptor, and that the transplacental transport of IgG from mother to fetus is dependent on the fetal PLAP genotype. In order to confirm the relationship between the PLAP types and transplacental IgG transport, we studied fetal (cord serum) IgG levels in relation to PLAP types, quantitative variations in PLAP activity, maternal IgG levels and gestation length. Fetal IgG levels and the fetal/maternal IgG ratio showed no significant correlation with PLAP types and PLAP activity. Thus differences between PLAP types with respect to transplacental IgG transport are unlikely to play a selective role in the maintenance of the PLAP polymorphism. In accordance with results from previous studies, significant correlations were found with maternal IgG levels and gestation length. Perusal of the literature suggests that PLAP is mainly an IgG1 receptor.
Three different p53 polymorphisms (a codon 72 BstUI RFLP, a 16-bp duplication in intron 3 and an MspI RFLP in intron 6) and haplotype combinations were studied in three northern European populations, viz. Finns, Swedes and Swedish Saamis. Significant ethnic differences were found in the codon 72 and 16-bp polymorphisms. The three polymorphisms were in strong linkage disequilibria, all of which were highly significant (p < 1 x 10(-18)), and ethnic differences with respect to linkage disequilibria were observed. Estimates of the frequencies of extended haplotypes showed that the most common ('wild-type') haplotype in the three populations was 2-1-2, viz, the codon 72 Arg allele linked to absence of the 16-bp duplication and presence of the MspI site. There were two additional common haplotypes, 1-1-2 and 1-2-1, and five rare haplotypes with a combined frequency of about 0.03. The present results indicate that extended haplotypes would be more informative in studies of population differences and associations between p53 germline mutations and cancer.
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.
Three p53 DNA polymorphisms (BstUI and MspI RFLPs in exon 4 and intron 6, respectively, and a 16-bp duplication in intron 3) and their haplotype combinations were studied in 73 patients (61 males and 12 females) with nasopharyngeal cancer and 105 healthy controls from the Guizhou province in southern China. Increased frequencies of the 16-bp A2 allele (p = 0.005), MspI A1 allele (p = 0.021) and the BstUI A1 (Pro) allele (p = 0.072) were found among the patients, with more pronounced differences in male patients (p = 0.003, 0.014 and 0.052, respectively). Haplotype frequencies and linkage disequilibria differed from those in Caucasians. The differences between controls and patients, especially male patients, increased when the analysis was based on haplotypes. The lowest risk for nasopharyngeal cancer was associated with the haplotype 16-bp A1, BstUI A2, MspI A2 (1-2-2). A somewhat higher risk was observed in the 1-1-2 haplotype (replacing the Arg with a Pro allele). The highest risk was, however, found in the rare combinations including the 16-bp A2 and MspI A1 alleles with an odds ratio of 4.9 [95% confidence interval (CI) = 1.8-13.2] in all patients and 5.4 (95% CI = 2.0-14.8) in male patients. The haplotype associations found in this study differ from those found in previous cancer association studies in Caucasians. This together with the fact that the intronic markers conferred the highest risk figures suggest that the mechanism behind the observed associations is linkage disequilibrium and not direct functional involvement of the codon 72 alleles.
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.