首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Cysteine Scanning Mutagenesis and Disulfide Mapping Analysis of Arrangement of GspC and GspD Protomers within the Type 2 Secretion System
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Cysteine Scanning Mutagenesis and Disulfide Mapping Analysis of Arrangement of GspC and GspD Protomers within the Type 2 Secretion System

机译:半胱氨酸扫描诱变和二硫键映射分析GspC和GspD前体在2型分泌系统内的安排。

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摘要

The type II secretion system (T2SS) secretes enzymes and toxins across the outer membrane of Gram-negative bacteria. The precise assembly of T2SS, which consists of at least 12 core-components called Gsp, remains unclear. The outer membrane secretin, GspD, forms the channels, through which folded proteins are secreted, and interacts with the inner membrane component, GspC. The periplasmic regions of GspC and GspD consist of several structural domains, HRGspC and PDZGspC, and N0GspD to N3GspD, respectively, and recent structural and functional studies have proposed several interaction sites between these domains. We used cysteine mutagenesis and disulfide bonding analysis to investigate the organization of GspC and GspD protomers and to map their interaction sites within the secretion machinery of the plant pathogen Dickeya dadantii. At least three distinct GspC-GspD interactions were detected, and they involve two sites in HRGspC, two in N0GspD, and one in N2GspD. None of these interactions occurs through static interfaces because the same sites are also involved in self-interactions with equivalent neighboring domains. Disulfide self-bonding of critical interaction sites halts secretion, indicating the transient nature of these interactions. The secretion substrate diminishes certain interactions and provokes an important rearrangement of the HRGspC structure. The T2SS components OutE/L/M affect various interaction sites differently, reinforcing some but diminishing the others, suggesting a possible switching mechanism of these interactions during secretion. Disulfide mapping shows that the organization of GspD and GspC subunits within the T2SS could be compatible with a hexamer of dimers arrangement rather than an organization with 12-fold rotational symmetry.
机译:II型分泌系统(T2SS)在革兰氏阴性细菌的外膜上分泌酶和毒素。 T2SS的精确组装尚不清楚,它至少包含12个称为Gsp的核心组件。外膜促胰液素GspD形成通道,折叠的蛋白质通过该通道分泌,并与内膜组分GspC相互作用。 GspC和GspD的周质区域由几个结构域组成,HR GspC 和PDZ GspC ,以及N0 GspD 至N3 GspD <分别,最近的结构和功能研究提出了这些域之间的几个相互作用的站点。我们使用半胱氨酸诱变和二硫键分析来研究GspC和GspD启动子的组织,并在植物病原体Dickeya dadantii的分泌机制内绘制它们的相互作用位点。至少检测到三种不同的GspC-GspD相互作用,它们涉及HR GspC 中的两个位点,两个位于N0 GspD 中,而一个N2 GspD 中>。这些交互都不会通过静态接口发生,因为相同的站点也参与了与等效邻居域的自交互。关键相互作用位点的二硫键自结合可阻止分泌,表明这些相互作用的瞬时性质。分泌底物减少了某些相互作用,并引起HR GspC 结构的重要重排。 T2SS成分OutE / L / M对各种相互作用位点的影响不同,增强了一些相互作用,但减弱了其他相互作用,提示分泌过程中这些相互作用的可能转换机制。二硫键作图表明,T2SS中GspD和GspC亚基的组织可能与二聚体排列的六聚体相容,而不是与12倍旋转对称性的组织相容。

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