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Down-Regulation of EPAS1 Transcription and Genetic Adaptation of Tibetans to High-Altitude Hypoxia

机译:EPAS1转录下调及藏族人对高原缺氧的遗传适应

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摘要

Tibetans are well adapted to the hypoxic environments at high altitude, yet the molecular mechanism of this adaptation remains elusive. We reported comprehensive genetic and functional analyses of EPAS1 , a gene encoding hypoxia inducible factor 2α (HIF-2α) with the strongest signal of selection in previous genome-wide scans of Tibetans. We showed that the Tibetan-enriched EPAS1 variants down-regulate expression in human umbilical endothelial cells and placentas. Heterozygous EPAS1 knockout mice display blunted physiological responses to chronic hypoxia, mirroring the situation in Tibetans. Furthermore, we found that the Tibetan version of EPAS1 is not only associated with the relatively low hemoglobin level as a polycythemia protectant, but also is associated with a low pulmonary vasoconstriction response in Tibetans. We propose that the down-regulation of EPAS1 contributes to the molecular basis of Tibetans’ adaption to high-altitude hypoxia.
机译:藏族人很好地适应了高海拔地区的缺氧环境,但这种适应的分子机制仍然难以捉摸。我们报告了EPAS1的综合遗传和功能分析,EPAS1是一种编码缺氧诱导因子2α(HIF-2α)的基因,在先前的藏族全基因组扫描中具有最强的选择信号。我们发现,富含藏液的EPAS1变体下调了人脐内皮细胞和胎盘中的表达。杂合子EPAS1基因敲除小鼠对慢性缺氧表现出迟钝的生理反应,反映了藏人的情况。此外,我们发现藏族版的EPAS1不仅与作为红细胞增多症保护剂的相对较低的血红蛋白水平有关,而且还与藏族人的低肺血管收缩反应有关。我们提出EPAS1的下调有助于藏族人适应高原缺氧的分子基础。

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