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EP300基因通过调控一氧化氮合成帮助藏族人群适应高原低氧环境

郭永博Wang-Shan Zheng和耀喜崔超英Quzong Deji白马康卓多吉卓玛Zhuoma Duoji

2017动物学研究Biochemistry, Genetics and Molecular Biology被引 19开放获取

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摘要

The genetic adaptation of Tibetans to high altitude hypoxia likely involves a group of genes in the hypoxic pathway, as suggested by earlier studies. To test the adaptive role of the previously reported candidate gene EP300 (histone acetyltransferase p300), we conducted resequencing of a 108.9 kb gene region of EP300 in 80 unrelated Tibetans. The allele-frequency and haplotype-based neutrality tests detected signals of positive Darwinian selection on EP300 in Tibetans, with a group of variants showing allelic divergence between Tibetans and lowland reference populations, including Han Chinese, Europeans, and Africans. Functional prediction suggested the involvement of multiple EP300 variants in gene expression regulation. More importantly, genetic association tests in 226 Tibetans indicated significant correlation of the adaptive EP300 variants with blood nitric oxide (NO) concentration. Collectively, we propose that EP300 harbors adaptive variants in Tibetans, which might contribute to high-altitude adaptation through regulating NO production.

引用本文(GB/T 7714)

郭永博, Wang-Shan Zheng, 和耀喜, 等. EP300基因通过调控一氧化氮合成帮助藏族人群适应高原低氧环境[J]. 动物学研究, 2017.

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DOI:https://doi.org/10.24272/j.issn.2095-8137.2017.036

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