Literature DB >> 35584682

A highland-adaptation mutation of the Epas1 protein increases its stability and disrupts the circadian clock in the plateau pika.

Na Liu1, Hongni Tian2, Ziqing Yu3, Haijiao Zhao4, Wenjing Li5, Di Sang3, Keteng Lin6, Yilin Cui7, Meimei Liao6, Zhancong Xu3, Chen Chen6, Ying Guo6, Yibing Wang6, Huan-Wei Huang6, Jiawen Wang6, He Zhang8, Wei Wu9, He Huang10, Shengqing Lv11, Zhenqian Guo12, Wei Wang6, Sanduo Zheng6, Fengchao Wang6, Yanming Zhang13, Tao Cai14, Eric Erquan Zhang15.   

Abstract

The Qinghai-Tibet Plateau (QTP) harbors hundreds of species well adapted to its extreme conditions, including its low-oxygen (hypoxic) atmosphere. Here, we show that the plateau pika-a keystone mammal of the QTP-lacks robust circadian rhythms. The major form of the plateau pika Epas1 protein includes a 24-residue insert caused by a point mutation at the 5' juncture site of Intron14 and is more stable than other mammalian orthologs. Biochemical studies reveal that an Epas1-Bmal1 complex with lower trans-activation activity occupies the E1/E2 motifs at the promoter of the core-clock gene Per2, thus explaining how an Epas1 mutation-selected in the hypoxic conditions of the QTP-disrupts the molecular clockwork. Importantly, experiments with hypoxic chambers show that mice expressing the plateau pika Epas1 ortholog in their suprachiasmatic nucleus have dysregulated central clocks, and pika Epas1 knockin mice reared in hypoxic conditions exhibit dramatically reduced heart damage compared with wild-type animals.
Copyright © 2022 The Author(s). Published by Elsevier Inc. All rights reserved.

Entities:  

Keywords:  CP: Molecular biology; Epas1 protein; circadian clock; heart damage; hypoxia; plateau pika

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Year:  2022        PMID: 35584682     DOI: 10.1016/j.celrep.2022.110816

Source DB:  PubMed          Journal:  Cell Rep            Impact factor:   9.995


  1 in total

1.  The human blood transcriptome exhibits time-of-day-dependent response to hypoxia: Lessons from the highest city in the world.

Authors:  Gal Manella; Saar Ezagouri; Benoit Champigneulle; Jonathan Gaucher; Monique Mendelson; Emeline Lemarie; Emeric Stauffer; Aurélien Pichon; Connor A Howe; Stéphane Doutreleau; Marina Golik; Samuel Verges; Gad Asher
Journal:  Cell Rep       Date:  2022-08-16       Impact factor: 9.995

  1 in total

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