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V抗原及其调节因子属间复合物的结构分析以及二价金属离子对它们的稳定作用。

Structural analysis of inter-genus complexes of V-antigen and its regulator and their stabilization by divalent metal ions.

作者信息

Basu Abhishek, Das Atanu, Mondal Abhisek, Datta Saumen

机构信息

Structural Biology and Bioinformatics Division, CSIR-Indian Institute of Chemical Biology, 4, Raja S.C. Mullick Road, Kolkata, 700032, West Bengal, India.

出版信息

Eur Biophys J. 2016 Mar;45(2):113-28. doi: 10.1007/s00249-015-1081-2. Epub 2015 Oct 13.

Abstract

Gram-negative bacteria like Yersinia, Pseudomonas, and Aeromonas need type III secretion system (T3SS) for their pathogenicity. V-antigen and its regulator are essential for functioning of T3SS. There is significant functional conservation amongst V-antigen and its regulator belonging to the Ysc family. In this study, we have structurally characterized the inter-genus complexes of V-antigen and its regulator. ConSurf analysis demonstrates that V-antigens belonging to the Ysc family show high structural identity predominantly confined to the two long helical regions. The regulator of V-antigen shows high conservation in its first intramolecular coiled-coil domain, responsible for interaction with V-antigen. ∆LcrG(1-70) localizes within the groove formed by long helices of LcrV, as observed in PcrV-∆PcrG(13-72) interaction. Inter-genus complexes of LcrV-PcrG and PcrV-LcrG exhibited elongated conformation and 1:1 heterodimeric state like the native complex of PcrV-PcrG and LcrV-LcrG. Both native and inter-genus complexes showed rigid tertiary structure, solvent-exposed hydrophobic patches, and cooperative melting behavior with high melting temperature. LcrV-PcrG and PcrV-LcrG showed nanomolar affinity of interaction, identical to PcrV-PcrG interaction, but stronger than LcrV-LcrG interaction. Calcium (a secretion blocker of T3SS) propels all the complexes towards a highly monodisperse form. Calcium and magnesium increase the helicity of the native and inter-genus complexes, and causes helix-helix stabilization. Stabilization of helices leads to a slight increase in the melting temperature by 1.5-2.0 °C. However, calcium does not alter the affinity of interaction of V-antigen and its regulator, emphasizing the effect of divalent of cations at the structural level without any regulatory implications. Therefore, the structural conservation of these inter-genus complexes could be the basis for their functional complementation.

摘要

革兰氏阴性菌,如耶尔森氏菌、假单胞菌和气单胞菌,需要III型分泌系统(T3SS)来实现其致病性。V抗原及其调节因子对T3SS的功能至关重要。属于Ysc家族的V抗原及其调节因子之间存在显著的功能保守性。在本研究中,我们对V抗原及其调节因子的属间复合物进行了结构表征。ConSurf分析表明,属于Ysc家族的V抗原显示出高结构同一性,主要局限于两个长螺旋区域。V抗原的调节因子在其第一个分子内卷曲螺旋结构域中显示出高度保守性,该结构域负责与V抗原相互作用。正如在PcrV-∆PcrG(13-72)相互作用中所观察到的,∆LcrG(1-70)定位于由LcrV的长螺旋形成的凹槽内。LcrV-PcrG和PcrV-LcrG的属间复合物呈现出细长的构象和1:1异二聚体状态,类似于PcrV-PcrG和LcrV-LcrG的天然复合物。天然复合物和属间复合物均显示出刚性三级结构、溶剂暴露的疏水斑块以及具有高熔点温度的协同解链行为。LcrV-PcrG和PcrV-LcrG显示出纳摩尔级的相互作用亲和力,与PcrV-PcrG相互作用相同,但强于LcrV-LcrG相互作用。钙(T3SS的分泌阻滞剂)促使所有复合物形成高度单分散的形式。钙和镁增加了天然复合物和属间复合物的螺旋度,并导致螺旋-螺旋稳定。螺旋的稳定导致熔点温度略有升高1.5 - 2.0°C。然而,钙不会改变V抗原及其调节因子的相互作用亲和力,强调了二价阳离子在结构水平上的作用,而没有任何调节意义。因此,这些属间复合物的结构保守性可能是它们功能互补的基础。

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