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参与类囊体膜融合的两面性IM30环由IM30四聚体组装而成。

A Janus-Faced IM30 Ring Involved in Thylakoid Membrane Fusion Is Assembled from IM30 Tetramers.

作者信息

Saur Michael, Hennig Raoul, Young Phoebe, Rusitzka Kristiane, Hellmann Nadja, Heidrich Jennifer, Morgner Nina, Markl Jürgen, Schneider Dirk

机构信息

Institut für Molekulare Physiologie, Johannes Gutenberg-Universität Mainz, 55128 Mainz, Germany.

Institut für Pharmazie und Biochemie, Johannes Gutenberg-Universität Mainz, 55128 Mainz, Germany.

出版信息

Structure. 2017 Sep 5;25(9):1380-1390.e5. doi: 10.1016/j.str.2017.07.001. Epub 2017 Aug 10.

Abstract

Biogenesis and dynamics of thylakoid membranes likely involves membrane fusion events. Membrane attachment of the inner membrane-associated protein of 30 kDa (IM30) affects the structure of the lipid bilayer, finally resulting in membrane fusion. Yet, how IM30 triggers membrane fusion is largely unclear. IM30 monomers pre-assemble into stable tetrameric building blocks, which further align to form oligomeric ring structures, and differently sized IM30 rings bind to membranes. Based on a 3D reconstruction of IM30 rings, we locate the IM30 loop 2 region at the bottom of the ring and show intact membrane binding but missing fusogenic activity of loop 2 mutants. However, helix 7, which has recently been shown to mediate membrane binding, was located at the oppossite, top side of IM30 rings. We propose that a two-sided IM30 ring complex connects two opposing membranes, finally resulting in membrane fusion. Thus, IM30-mediated membrane fusion requires a Janus-faced IM30 ring.

摘要

类囊体膜的生物发生和动态变化可能涉及膜融合事件。30 kDa内膜相关蛋白(IM30)的膜附着会影响脂质双层的结构,最终导致膜融合。然而,IM30如何触发膜融合在很大程度上尚不清楚。IM30单体预先组装成稳定的四聚体结构单元,这些结构单元进一步排列形成寡聚环结构,不同大小的IM30环与膜结合。基于IM30环的三维重建,我们将IM30环2区域定位在环的底部,并显示环2突变体具有完整的膜结合能力,但缺乏融合活性。然而,最近已证明介导膜结合的螺旋7位于IM30环的相反一侧,即顶部。我们提出,双面的IM30环复合物连接两个相对的膜,最终导致膜融合。因此,IM30介导的膜融合需要一个两面的IM30环。

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