Sequence variation in human succinate dehydrogenase genes: evidence for long-term balancing selection on SDHA
Open Access
- 21 March 2007
- journal article
- Published by Springer Nature in BMC Biology
- Vol. 5 (1) , 12
- https://doi.org/10.1186/1741-7007-5-12
Abstract
Balancing selection operating for long evolutionary periods at a locus is characterized by the maintenance of distinct alleles because of a heterozygote or rare-allele advantage. The loci under balancing selection are distinguished by their unusually high polymorphism levels. In this report, we provide statistical and comparative genetic evidence suggesting that the SDHA gene is under long-term balancing selection. SDHA encodes the major catalytical subunit (flavoprotein, Fp) of the succinate dehydrogenase enzyme complex (SDH; mitochondrial complex II). The inhibition of Fp by homozygous SDHA mutations or by 3-nitropropionic acid poisoning causes central nervous system pathologies. In contrast, heterozygous mutations in SDHB, SDHC, and SDHD, the other SDH subunit genes, cause hereditary paraganglioma (PGL) tumors, which show constitutive activation of pathways induced by oxygen deprivation (hypoxia). We sequenced the four SDH subunit genes (10.8 kb) in 24 African American and 24 European American samples. We also sequenced the SDHA gene (2.8 kb) in 18 chimpanzees. Increased nucleotide diversity distinguished the human SDHA gene from its chimpanzee ortholog and from the PGL genes. Sequence analysis uncovered two common SDHA missense variants and refuted the previous suggestions that these variants originate from different genetic loci. Two highly dissimilar SDHA haplotype clusters were present in intermediate frequencies in both racial groups. The SDHA variation pattern showed statistically significant deviations from neutrality by the Tajima, Fu and Li, Hudson-Kreitman-Aguadé, and Depaulis haplotype number tests. Empirically, the elevated values of the nucleotide diversity (% π = 0.231) and the Tajima statistics (D = 1.954) in the SDHA gene were comparable with the most outstanding cases for balancing selection in the African American population. The SDHA gene has a strong signature of balancing selection. The SDHA variants that have increased in frequency during human evolution might, by influencing the regulation of cellular oxygen homeostasis, confer protection against certain environmental toxins or pathogens that are prevalent in Africa.Keywords
This publication has 48 references indexed in Scilit:
- A Fine-Scale Map of Recombination Rates and Hotspots Across the Human GenomeScience, 2005
- A HIF1α Regulatory Loop Links Hypoxia and Mitochondrial Signals in PheochromocytomasPLoS Genetics, 2005
- The Mitochondrial SDHD Gene Is Required for Early Embryogenesis, and Its Partial Deficiency Results in Persistent Carotid Body Glomus Cell Activation with Full Responsiveness to HypoxiaMolecular and Cellular Biology, 2004
- Haplotype reconstruction from genotype data using Imperfect PhylogenyBioinformatics, 2004
- DnaSP, DNA polymorphism analyses by the coalescent and other methodsBioinformatics, 2003
- Altitude is a phenotypic modifier in hereditary paraganglioma type 1: evidence for an oxygen-sensing defectHuman Genetics, 2003
- Extensive Linkage Disequilibrium, a Common 16.7-Kilobase Deletion, and Evidence of Balancing Selection in the Human Protocadherin α ClusterAmerican Journal of Human Genetics, 2003
- Signatures of natural selection in the human genomeNature Reviews Genetics, 2003
- Moldy Sugarcane Poisoning— A Case Report with a Brief ReviewJournal of Toxicology: Clinical Toxicology, 1995
- Pattern of nucleotide substitution at major histocompatibility complex class I loci reveals overdominant selectionNature, 1988