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Nucleotide sequence analyses of human complement 6 (C6) gene suggest balancing selection
M Soejima1, H Tachida, M Tsuneoka
1Department of Forensic Medicine and Human Genetics, Kurume University School of Medicine, Kurume 830-0011, Japan.
Insights
The sixth complement component (C6) exhibits common C6A and C6B charge polymorphisms. Evidence suggests these C6 alleles are maintained by balancing selection in human populations.
Area of Science:
- Immunogenetics
- Human Population Genetics
Background:
- The sixth complement component (C6) possesses common charge polymorphisms, C6A and C6B, with consistent frequencies across major human populations.
- A distinct C6B2 variant is observed in Japanese populations at approximately 6% frequency.
Purpose of the Study:
- To investigate the evolutionary origins and population genetics of C6 charge polymorphisms.
- To determine if common C6 alleles in humans are influenced by balancing selection.
Main Methods:
- Sequence analysis of the C6 coding region in human and ape alleles.
- Examination of sequence variation in a 3.86 kb region including exon 3.
- Application of neutrality test statistics using sliding window methods.
Main Results:
- Sequence analysis revealed genetic differences between C6*B2 and C6*A, suggesting a recombination event.
- Extensive linkage disequilibrium (LD) was observed among single nucleotide polymorphisms (SNPs) in the C6 exon 3 region.
- Neutrality tests indicated significant values in the polymorphism-residing subregion across human populations.
Conclusions:
- The findings suggest that the common C6A and C6B alleles in human populations may be maintained through balancing selection.
- Recombination events may have contributed to the evolution of C6B2.
Abstract:
The sixth complement component (C6) has a common charge polymorphism, C6A and C6B, with similar gene frequencies in all major populations. In addition, C6B2 is also found in Japanese populations at a frequency of about 6%. Sequence analyses of the coding region of three human and ape C6 alleles indicated four nonsynonymous and three synonymous changes in C6*B2 relative to C6*A, suggesting that a recombination event occurred between C6*B2 and C6*A to give rise to C6*B. Sequence variation in a 3.86 kb region encompassing exon 3, where the causal base change of the common C6 polymorphism is found, indicated that several single nucleotide polymorphisms (SNPs) were in extensive linkage disequilibrium (LD), with little differentiation among populations. Sliding window estimates of two test statistics for neutrality revealed significant values in a subregion where the replacement coding polymorphism resides, in all three human populations. These results raise the possibility that the two common C6 alleles in human populations are maintained by balancing selection.
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