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霍乱弧菌孔蛋白OmpU和OmpT具有不同的通道特性。

The Vibrio cholerae porins OmpU and OmpT have distinct channel properties.

作者信息

Simonet Valérie C, Baslé Arnaud, Klose Karl E, Delcour Anne H

机构信息

Department of Biology and of Biochemistry, University of Houston, Houston, Texas 77204-5001, USA.

出版信息

J Biol Chem. 2003 May 9;278(19):17539-45. doi: 10.1074/jbc.M301202200. Epub 2003 Feb 25.

Abstract

Numerous environmental signals regulate the production of virulence factors and the composition of the outer membrane of Vibrio cholerae. In particular, bile promotes the ToxR-dependent expression of the porin OmpU. Strains expressing solely OmpU are more resistant to bile, are better able to colonize the intestine, and produce more cholera toxin than strains expressing solely the OmpT porin. To gain some understanding in the physiological relevance and the molecular mechanism underlying these porin-dependent phenotypes, we have undertaken a thorough electrophysiological characterization of the channel properties of the two porins. Purified OmpU or OmpT was reconstituted in liposomes suitable for patch clamp and in planar lipid bilayers. The high resolution of the patch clamp technique allowed us to analyze in detail the behavior of single OmpU and OmpT channels. Both channels exhibit closing transitions to various conductance states. OmpT is a much more dynamic channel than OmpU, displaying frequent and prolonged closures, even at low transmembrane potentials. With a critical voltage for closure V(c) of approximately +/-90 mV, OmpT is much more voltage-sensitive than OmpU (with a V(c) of approximately +/-160 mV), a feature that is also readily apparent in the voltage dependence of closing probability observed in patch clamp in the +/-100 mV range. OmpT has low ionic selectivity (P(K)/P(Cl) = approximately 4), whereas OmpU is more cation-selective (P(K)/P(Cl) = approximately 14). The distinct functional properties of the two porins are likely to play an integrated role with environmental regulation of their expression. For example, the higher selectivity of OmpU for cations provides a possible explanation for the protective role played by this porin in a bile-containing environment, because this type of selectivity would restrict the flux of anionic bile salts through the outer membrane and thus would reduce the exposure of the cytoplasmic membrane to this natural detergent.

摘要

众多环境信号调控霍乱弧菌毒力因子的产生及外膜的组成。特别是,胆汁可促进孔蛋白OmpU的ToxR依赖性表达。仅表达OmpU的菌株对胆汁更具抗性,在肠道中定殖的能力更强,且比仅表达OmpT孔蛋白的菌株产生更多的霍乱毒素。为了深入了解这些孔蛋白依赖性表型的生理相关性和分子机制,我们对这两种孔蛋白的通道特性进行了全面的电生理表征。将纯化的OmpU或OmpT重组到适合膜片钳和平面脂双层的脂质体中。膜片钳技术的高分辨率使我们能够详细分析单个OmpU和OmpT通道的行为。两种通道均表现出向各种电导状态的关闭转变。OmpT是一个比OmpU更具动态性的通道,即使在低跨膜电位下也频繁且长时间关闭。OmpT的关闭临界电压V(c)约为+/-90 mV,比OmpU(V(c)约为+/-160 mV)对电压更敏感,这一特征在膜片钳实验中观察到的+/-100 mV范围内关闭概率的电压依赖性中也很明显。OmpT的离子选择性较低(P(K)/P(Cl)约为4),而OmpU更具阳离子选择性(P(K)/P(Cl)约为14)。这两种孔蛋白不同的功能特性可能在其表达的环境调控中发挥综合作用。例如,OmpU对阳离子的更高选择性为该孔蛋白在含胆汁环境中的保护作用提供了一种可能的解释,因为这种选择性会限制阴离子胆盐通过外膜的通量,从而减少细胞质膜与这种天然去污剂的接触。

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