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分枝杆菌极性生长因子Wag31脂质结合结构域中自组装的结构基础

Structural basis of self-assembly in the lipid-binding domain of mycobacterial polar growth factor Wag31.

作者信息

Choukate Komal, Chaudhuri Barnali

机构信息

GN Ramachandran Protein Center, CSIR Institute of Microbial Technology, Chandigarh, 160036, India.

Academy of Scientific and Innovative Research (AcSIR), Anusandhan Bhawan, 2 Rafi Marg, New Delhi, 110001, India.

出版信息

IUCrJ. 2020 Jun 30;7(Pt 4):767-776. doi: 10.1107/S2052252520006053. eCollection 2020 Jul 1.

Abstract

Wag31, or DivIVA, is an essential protein and a drug target in the human pathogen that self-assembles at the negatively curved membrane surface to form a higher-order structural scaffold, maintains rod-shaped cellular morphology and localizes key cell-wall synthesizing enzymes at the pole for exclusive polar growth. The crystal structure of the N-terminal lipid-binding domain of mycobacterial Wag31 was determined at 2.3 Å resolution. The structure revealed a highly polar surface lined with several conserved charged residues that suggest probable sites for interactions with membrane lipids. Crystal-packing analysis revealed a previously unseen 'dimer-of-dimers' assembly state of N-terminal Wag31, which is formed by antiparallel stacking of two coiled-coil dimers. Size-exclusion column-chromatography-coupled small-angle solution X-ray scattering data revealed a tetrameric form as a major assembly state of N-terminal Wag31 in solution, further supporting the crystal structure. The results suggest that, in addition to lipid binding, the N-terminal Wag31 can participate in self-assembly to form filamentous structures. Plausible models of linear self-assembly and branching of Wag31 filaments consistent with available data are suggested.

摘要

Wag31,即DivIVA,是一种在人类病原体中不可或缺的蛋白质和药物靶点,它在负曲率膜表面自组装形成高阶结构支架,维持杆状细胞形态,并将关键的细胞壁合成酶定位在细胞极处以实现独特的极向生长。分枝杆菌Wag31的N端脂质结合结构域的晶体结构在2.3 Å分辨率下得以确定。该结构揭示了一个高度极性的表面,排列着几个保守的带电残基,这表明可能是与膜脂相互作用的位点。晶体堆积分析揭示了N端Wag31以前未见过的“二聚体的二聚体”组装状态,它由两个卷曲螺旋二聚体的反平行堆积形成。尺寸排阻柱色谱耦合小角溶液X射线散射数据表明,四聚体形式是N端Wag31在溶液中的主要组装状态,进一步支持了晶体结构。结果表明,除了脂质结合外,N端Wag31还可以参与自组装形成丝状结构。提出了与现有数据一致的Wag31丝线性自组装和分支模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/54bd/7340271/126e72d2bdde/m-07-00767-fig1.jpg

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