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一个被正选择的 FBN1 错义变异体降低了秘鲁个体的身高。

A positively selected FBN1 missense variant reduces height in Peruvian individuals.

机构信息

Center for Data Sciences, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.

Division of Rheumatology, Inflammation, and Immunity, Brigham and Women's Hospital, Harvard Medical School, Boston, MA, USA.

出版信息

Nature. 2020 Jun;582(7811):234-239. doi: 10.1038/s41586-020-2302-0. Epub 2020 May 13.

Abstract

On average, Peruvian individuals are among the shortest in the world. Here we show that Native American ancestry is associated with reduced height in an ethnically diverse group of Peruvian individuals, and identify a population-specific, missense variant in the FBN1 gene (E1297G) that is significantly associated with lower height. Each copy of the minor allele (frequency of 4.7%) reduces height by 2.2 cm (4.4 cm in homozygous individuals). To our knowledge, this is the largest effect size known for a common height-associated variant. FBN1 encodes the extracellular matrix protein fibrillin 1, which is a major structural component of microfibrils. We observed less densely packed fibrillin-1-rich microfibrils with irregular edges in the skin of individuals who were homozygous for G1297 compared with individuals who were homozygous for E1297. Moreover, we show that the E1297G locus is under positive selection in non-African populations, and that the E1297 variant shows subtle evidence of positive selection specifically within the Peruvian population. This variant is also significantly more frequent in coastal Peruvian populations than in populations from the Andes or the Amazon, which suggests that short stature might be the result of adaptation to factors that are associated with the coastal environment in Peru.

摘要

一般来说,秘鲁人是世界上最矮的人之一。在这里,我们表明,美洲原住民血统与秘鲁人群中身高降低有关,并且在 FBN1 基因中发现了一个特定于人群的错义变体(E1297G),该变体与较低的身高显著相关。每个 minor allele(频率为 4.7%)的副本都会使身高降低 2.2 厘米(杂合子个体中降低 4.4 厘米)。据我们所知,这是已知与常见身高相关变体的最大效应大小。FBN1 编码细胞外基质蛋白原纤维蛋白 1,它是微纤维的主要结构成分。与 E1297 纯合子个体相比,G1297 纯合子个体的皮肤中原纤维蛋白 1 丰富的微纤维排列更不规则,密度更低。此外,我们表明 E1297G 基因座在非非洲人群中受到正选择,并且 E1297 变体在秘鲁人群中表现出轻微的正选择证据。该变体在秘鲁沿海人群中的频率也明显高于安第斯山脉或亚马逊地区的人群,这表明身材矮小可能是对与秘鲁沿海环境相关的因素的适应结果。

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