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串联Per-Arnt-Sim(tandem PAS)化学感受器传感结构域对氨基酸识别和跨膜信号传导的结构基础。

Structural basis for amino-acid recognition and transmembrane signalling by tandem Per-Arnt-Sim (tandem PAS) chemoreceptor sensory domains.

作者信息

Liu Yu C, Machuca Mayra A, Beckham Simone A, Gunzburg Menachem J, Roujeinikova Anna

机构信息

Department of Microbiology, Monash University, Clayton, Victoria 3800, Australia.

Department of Biochemistry and Molecular Biology, Monash University, Clayton, Victoria 3800, Australia.

出版信息

Acta Crystallogr D Biol Crystallogr. 2015 Oct;71(Pt 10):2127-36. doi: 10.1107/S139900471501384X. Epub 2015 Sep 30.

Abstract

Chemotaxis, mediated by methyl-accepting chemotaxis protein (MCP) receptors, plays an important role in the ecology of bacterial populations. This paper presents the first crystallographic analysis of the structure and ligand-induced conformational changes of the periplasmic tandem Per-Arnt-Sim (PAS) sensing domain (PTPSD) of a characterized MCP chemoreceptor. Analysis of the complex of the Campylobacter jejuni Tlp3 PTPSD with isoleucine (a chemoattractant) revealed that the PTPSD is a dimer in the crystal. The two ligand-binding sites are located in the membrane-distal PAS domains on the faces opposite to the dimer interface. Mutagenesis experiments show that the five strongly conserved residues that stabilize the main-chain moiety of isoleucine are essential for binding, suggesting that the mechanism by which this family of chemoreceptors recognizes amino acids is highly conserved. Although the fold and mode of ligand binding of the PTPSD are different from the aspartic acid receptor Tar, the structural analysis suggests that the PTPSDs of amino-acid chemoreceptors are also likely to signal by a piston displacement mechanism. The PTPSD fluctuates between piston (C-terminal helix) up' and piston down' states. Binding of an attractant to the distal PAS domain locks it in the closed form, weakening its association with the proximal domain and resulting in the transition of the latter into an open form, concomitant with a downward (towards the membrane) 4 Å piston displacement of the C-terminal helix. In vivo, this movement would generate a transmembrane signal by driving a downward displacement of the transmembrane helix 2 towards the cytoplasm.

摘要

由甲基化接受趋化蛋白(MCP)受体介导的趋化作用在细菌群体生态学中起着重要作用。本文首次对一种已鉴定的MCP化学感受器的周质串联Per-Arnt-Sim(PAS)传感结构域(PTPSD)的结构和配体诱导的构象变化进行了晶体学分析。对空肠弯曲菌Tlp3 PTPSD与异亮氨酸(一种化学引诱剂)的复合物分析表明,PTPSD在晶体中是二聚体。两个配体结合位点位于二聚体界面相对面上的膜远端PAS结构域中。诱变实验表明,稳定异亮氨酸主链部分的五个高度保守残基对于结合至关重要,这表明该化学感受器家族识别氨基酸的机制高度保守。尽管PTPSD的折叠和配体结合模式与天冬氨酸受体Tar不同,但结构分析表明,氨基酸化学感受器的PTPSD也可能通过活塞位移机制进行信号传导。PTPSD在活塞(C端螺旋)“上”和活塞“下”状态之间波动。引诱剂与远端PAS结构域的结合将其锁定在闭合形式,削弱其与近端结构域的结合,并导致后者转变为开放形式,同时C端螺旋向下(朝向膜)发生4 Å的活塞位移。在体内,这种运动会通过驱动跨膜螺旋2向细胞质的向下位移产生跨膜信号。

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