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二硫键连接细胞外环不会影响 OmpF 孔蛋白在酸性 pH 下的关闭。

Disulfide bond tethering of extracellular loops does not affect the closure of OmpF porin at acidic pH.

机构信息

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

出版信息

Proteins. 2010 Nov 1;78(14):2886-94. doi: 10.1002/prot.22807.

DOI:10.1002/prot.22807
PMID:20665474
Abstract

The permeability of the outer membrane of gram-negative bacteria is essentially controlled by pore-forming proteins of the porin family. The trimeric E. coli porin OmpF is assembled as a triple β-barrel, where each monomer contains a central pore and extracellular loops. Electrophysiological analysis of the behavior of OmpF at acidic pH reveals that the protein undergoes a conformational change leading to the sequential step-wise closure of the three monomers. A previous atomic force microscopy study suggested that the conformational change might be due to a bending of extracellular loops over the pore opening, and loop deletion experiments suggested that loops L1, L7, and L8 are involved. In order to test the hypothesis for loop movement, we engineered a series of double cysteine mutants in loops L1, L6, L7 and L8 in order to create disulfide bonds linking two loops to each other, or the two branches of a loop, or a loop to the β-barrel. Five out of the six mutants showed the formation of the disulfide bond. However, none of these had an altered response to acidic pH relative to the wildtype channel. Although we cannot dismiss the possibility that the mobility restriction introduced by each disulfide bond was too localized to impact a more global conformational change of the three loops, the fact that all of the different types of disulfide bond tethering were similarly ineffective suggests that the extracellular loops L1, L7, and L8 may not undergo a major acidic-pH induced conformational change leading to channel closure.

摘要

革兰氏阴性细菌外膜的通透性本质上由孔形成蛋白家族的孔蛋白控制。大肠杆菌三聚体孔蛋白 OmpF 组装成三聚体 β-桶,每个单体包含一个中央孔和细胞外环。在酸性 pH 下对 OmpF 行为的电生理分析表明,该蛋白发生构象变化,导致三个单体依次逐步关闭。先前的原子力显微镜研究表明,构象变化可能是由于细胞外环在孔开口处弯曲,并且环缺失实验表明环 L1、L7 和 L8 参与其中。为了验证环运动的假设,我们在 L1、L6、L7 和 L8 环中设计了一系列双半胱氨酸突变体,以创建将两个环彼此连接、将一个环的两个分支连接或将一个环连接到 β-桶的二硫键。六个突变体中有五个形成了二硫键。然而,与野生型通道相比,这些突变体在酸性 pH 下的反应没有改变。尽管我们不能排除每个二硫键引入的迁移限制过于局部化而不会影响三个环的更全局构象变化的可能性,但所有不同类型的二硫键固定都同样无效的事实表明,细胞外环 L1、L7 和 L8 可能不会发生导致通道关闭的主要酸性 pH 诱导构象变化。

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