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ClpV 回收 VipA/VipB 小管并防止非生产性小管形成,以确保有效的 VI 型蛋白分泌。

ClpV recycles VipA/VipB tubules and prevents non-productive tubule formation to ensure efficient type VI protein secretion.

机构信息

Center for Molecular Biology of the University of Heidelberg and German Cancer Research Center, DKFZ-ZMBH Alliance, Universität Heidelberg, Im Neuenheimer Feld 282, 69120 Heidelberg, Germany.

出版信息

Mol Microbiol. 2013 Mar;87(5):1013-28. doi: 10.1111/mmi.12147. Epub 2013 Feb 3.

Abstract

The multicomponent type VI secretion system (T6SS) mediates the transport of effector proteins by puncturing target membranes. T6SSs are suggested to form a contractile nanomachine, functioning similar to the cell-puncturing device of tailed bacteriophages. The T6SS members VipA/VipB form tubular complexes and are predicted to function in analogy to viral tail sheath proteins by providing the energy for secretion via contraction. The ATPase ClpV disassembles VipA/VipB tubules in vitro, but the physiological relevance of tubule disintegration remained unclear. Here, we show that VipA/VipB tubules localize near-perpendicular to the inner membrane of Vibrio cholerae cells and exhibit repetitive cycles of elongation, contraction and disassembly. VipA/VipB tubules are decorated by ClpV in vivo and become static in ΔclpV cells, indicating that ClpV is required for tubule removal. VipA/VipB tubules mislocalize in ΔclpV cells and exhibit a reduced frequency of tubule elongation, indicating that ClpV also suppresses the spontaneous formation of contracted, non-productive VipA/VipB tubules. ClpV activity is restricted to the contracted state of VipA/VipB, allowing formation of functional elongated tubules at a T6SS assembly. Targeting of an unrelated ATPase to VipA/VipB is sufficient to replace ClpV function in vivo, suggesting that ClpV activity is autonomously regulated by VipA/VipB conformation.

摘要

多组份 VI 型分泌系统 (T6SS) 通过刺穿靶膜来介导效应蛋白的转运。T6SS 被认为形成一个收缩纳米机器,其功能类似于有尾噬菌体的细胞刺穿装置。T6SS 成员 VipA/VipB 形成管状复合物,并且通过收缩提供分泌的能量,被预测模拟病毒尾鞘蛋白的功能。ATP 酶 ClpV 在体外使 VipA/VipB 管解体,但管解体的生理相关性仍不清楚。在这里,我们表明 VipA/VipB 管在霍乱弧菌细胞的内膜附近近乎垂直定位,并表现出重复的伸长、收缩和解体循环。ClpV 在体内对 VipA/VipB 管进行修饰,并在ΔclpV 细胞中变得静止,表明 ClpV 是管去除所必需的。VipA/VipB 管在ΔclpV 细胞中定位错误,并表现出管伸长频率降低,表明 ClpV 还抑制收缩的、非生产性的 VipA/VipB 管的自发形成。ClpV 活性仅限于 VipA/VipB 的收缩状态,允许在 T6SS 组装时形成功能性伸长的管。将一种无关的 ATP 酶靶向 VipA/VipB 足以在体内替代 ClpV 的功能,这表明 ClpV 活性通过 VipA/VipB 构象自主调节。

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