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Structural Basis of Membrane Protein Chaperoning through the Mitochondrial Intermembrane Space.

Cell. 2018; 
WeinhäuplKatharina,LindauCaroline,HesselAudrey,WangYong,SchützeConny,JoresTobias,MelchiondaLaura,SchönfischBirgit,KalbacherHubert,BerschBeate,RapaportDoron,BrennichMartha,Lindorff-LarsenKresten,WiedemannNils,Schanda
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摘要

The exchange of metabolites between the mitochondrial matrix and the cytosol depends on β-barrel channels in the outer membrane and α-helical carrier proteins in the inner membrane. The essential translocase of the inner membrane (TIM) chaperones escort these proteins through the intermembrane space, but the structural and mechanistic details remain elusive. We have used an integrated structural biology approach to reveal the functional principle of TIM chaperones. Multiple clamp-like binding sites hold the mitochondrial membrane proteins in a translocation-competent elongated form, thus mimicking characteristics of co-translational membrane insertion. The bound preprotein undergoes conformational dynami... More

关键词

NMR spectroscopy,TIM complex,binding by avidity,membrane protein,mitochondria,molecular dynamics simulation,protein import,protein translocation,small-angle X-ray scattering,transfer-chape