适应(眼睛)
电子传输链
呼吸系统
生物物理学
二聚体
电子转移
化学
生物
生物化学
解剖
神经科学
有机化学
作者
Young-Cheul Shin,Pedro Latorre,Amina Djurabekova,Oleksii Zdorevskyi,Christopher F. Bennett,Nils Burger,Kangkang Song,Xu Chen,Vivek Sharma,Maofu Liao,Pere Puigserver
标识
DOI:10.1101/2024.01.16.575914
摘要
Abstract In response to cold, mammals activate brown fat for respiratory-dependent thermogenesis reliant on the electron transport chain (1, 2). Yet, the structural basis of respiratory complex adaptation to cold remains elusive. Herein we combined thermoregulatory physiology and cryo-EM to study endogenous respiratory supercomplexes exposed to different temperatures. A cold-induced conformation of CI:III 2 (termed type 2) was identified with a ∼25° rotation of CIII 2 around its inter-dimer axis, shortening inter-complex Q exchange space, and exhibiting different catalytic states which favor electron transfer. Large-scale supercomplex simulations in lipid membrane reveal how unique lipid-protein arrangements stabilize type 2 complexes to enhance catalytic activity. Together, our cryo-EM studies, multiscale simulations and biochemical analyses unveil the mechanisms and dynamics of respiratory adaptation at the structural and energetic level.
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