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Gain-of-function EGLN1 prolyl hydroxylase (PHD2 D4E:C127S) in combination with EPAS1 (HIF-2α) polymorphism lowers hemoglobin concentration in Tibetan highlanders.

Authors :
Tashi, Tsewang
Scott Reading, N.
Wuren, Tanna
Zhang, Xu
Moore, Lorna
Hu, Hao
Tang, Feng
Shestakova, Anna
Lorenzo, Felipe
Burjanivova, Tatiana
Koul, Parvaiz
Guchhait, Prasenjit
Wittwer, Carl T.
Julian, Colleen
Shah, Binal
Huff, Chad
Gordeuk, Victor
Prchal, Josef
Ge, RiLi
Source :
Journal of Molecular Medicine. Jun2017, Vol. 95 Issue 6, p665-670. 6p.
Publication Year :
2017

Abstract

Tibetans have lived at high altitude for generations and are thought to be genetically adapted to hypoxic environments. Most are protected from hypoxia-induced polycythemia, and a haplotype of EPAS1, encoding hypoxia-inducible factor (HIF-2α), has been associated with lower hemoglobin levels. We earlier reported a Tibetan-specific EGLN1 haplotype encoding PHD2 which abrogates HIF augmentation in hypoxia. We genotyped 347 Tibetan individuals from varying altitudes for both the Tibetan-specific EGLN1 haplotype and 10 candidate SNPs in the EPAS1 haplotype and correlated their association with hemoglobin levels. The effect of the EGLN1 haplotype on hemoglobin exhibited age dependency at low altitude, while at higher altitudes, it showed a trend to lower hemoglobin levels in the presence of the Tibetan-selected EPAS1 rs142764723 C/C allele. The observed gene-environment and gene-gene interactions and the moderate effect of the EGLN1 and EPAS1 haplotypes on hemoglobin indicate that other modifiers exist. It remains to be determined whether a blunting of erythropoiesis or other physiological consequences of HIF downregulation are the primary drivers of these genetic adaptations among Tibetans. Key message: [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
09462716
Volume :
95
Issue :
6
Database :
Academic Search Index
Journal :
Journal of Molecular Medicine
Publication Type :
Academic Journal
Accession number :
123191065
Full Text :
https://doi.org/10.1007/s00109-017-1519-3