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线粒体TIM23复合物的荧光图谱揭示了一个面向水、与底物相互作用的螺旋表面。

Fluorescence mapping of mitochondrial TIM23 complex reveals a water-facing, substrate-interacting helix surface.

作者信息

Alder Nathan N, Jensen Robert E, Johnson Arthur E

机构信息

Department of Molecular and Cellular Medicine, Texas A&M Health Science Center, College Station, TX 77843-1114, USA.

出版信息

Cell. 2008 Aug 8;134(3):439-50. doi: 10.1016/j.cell.2008.06.007.

Abstract

Protein translocation across the mitochondrial inner membrane is mediated by the TIM23 complex. While its central component, Tim23, is believed to form a protein-conducting channel, the regions of this subunit that face the imported protein are unknown. To examine Tim23 structure and environment in intact membranes at high resolution, various derivatives, each with a single, environment-sensitive fluorescent probe positioned at a specific site, were assembled into functional TIM23 complexes in active mitochondria and analyzed by multiple spectral techniques. Probes placed sequentially throughout a transmembrane region that was identified by crosslinking as part of the protein-conducting channel revealed an alpha helix in an amphipathic environment. Probes on the aqueous-facing helical surface specifically underwent spectral changes during protein import, and their accessibility to hydrophilic quenching agents is considered in terms of channel gating. This approach has therefore provided an unprecedented view of a translocon channel structure in an intact, fully operational, membrane-embedded complex.

摘要

蛋白质在线粒体内膜上的转运由TIM23复合体介导。虽然其核心组分Tim23被认为形成了一个蛋白质传导通道,但该亚基中面向输入蛋白质的区域尚不清楚。为了在完整膜中高分辨率地研究Tim23的结构和环境,将各种衍生物(每种衍生物在特定位点带有一个对环境敏感的荧光探针)组装到活性线粒体中的功能性TIM23复合体中,并通过多种光谱技术进行分析。通过交联鉴定为蛋白质传导通道一部分的跨膜区域中依次放置的探针显示,在两亲环境中有一个α螺旋。面向水相的螺旋表面上的探针在蛋白质输入过程中特异性地发生光谱变化,并且根据通道门控来考虑它们对亲水性淬灭剂的可及性。因此,这种方法提供了一个完整的、完全运作的、膜嵌入复合体中转位子通道结构的前所未有的视图。

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