结核分枝杆菌 CrgA 形成二聚体结构,其跨膜结构域夹在细胞质和包膜β片之间,可与其他分裂体蛋白发生多种相互作用。

Yiseul Shin, Ramesh Prasad, Nabanita Das, Joshua A Taylor, Huajun Qin, Wenhao Hu, Yan-Yan Hu, Riqiang Fu, Rongfu Zhang, Huan-Xiang Zhou, Timothy A Cross
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引用次数: 0

摘要

CrgA 是结核分枝杆菌(Mtb)细胞分裂过程中的一个关键跨膜(TM)蛋白,而结核分枝杆菌是导致结核病的病原体。虽然已经确定了许多 Mtb divisome 蛋白,但它们的结构和相互作用在很大程度上仍然未知。以前利用定向样品固态核磁共振对 CrgA 进行的研究已经确定了 TM 螺旋的倾斜和旋转,但细胞质和外质结构域甚至寡聚体状态都还没有定性。在这里,我们结合定向采样和魔角旋转固态核磁共振光谱,解析了 CrgA 的全长结构。该结构的特征是一个二聚体,其 TM 结构域夹在细胞质 β 片层和外质 β 片层之间。β 片稳定了二聚化,这反过来又增强了 CrgA 参与多种蛋白质相互作用的能力。在膜内,CrgA 通过其 TM 螺旋与 FtsQ、CwsA、PbpA、FtsI 和 MmPL3 结合;在细胞质中,Lys23 和 Lys25 从β片向外突出,与 FtsQ 和 FtsZ 的酸性残基相互作用。因此,CrgA的结构测定为我们提供了重要的信息,使我们能够深入了解它在招募其他分裂体蛋白并稳定其复合物以促进Mtb细胞壁合成和极性生长方面的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mycobacterium tuberculosis CrgA Forms a Dimeric Structure with Its Transmembrane Domain Sandwiched between Cytoplasmic and Periplasmic β-Sheets, Enabling Multiple Interactions with Other Divisome Proteins.

CrgA is a key transmembrane (TM) protein in the cell division process of Mycobacterium tuberculosis (Mtb), the pathogen responsible for tuberculosis. While many of the Mtb divisome proteins have been identified, their structures and interactions remain largely unknown. Previous studies of CrgA using oriented-sample solid-state NMR have defined the tilt and rotation of the TM helices, but the cytoplasmic and periplasmic domains and even the oligomeric state were uncharacterized. Here, combining oriented-sample and magic-angle spinning solid-state NMR spectra, we solved the full-length structure of CrgA. The structure features a dimer with a TM domain sandwiched between a cytoplasmic β-sheet and a periplasmic β-sheet. The β-sheets stabilize dimerization, which in turn increases CrgA's ability to participate in multiple protein interactions. Within the membrane, CrgA binds FtsQ, CwsA, PbpA, FtsI, and MmPL3 via its TM helices; in the cytoplasm, Lys23 and Lys25 project outward from the β-sheet to interact with acidic residues of FtsQ and FtsZ. The structural determination of CrgA thus provides significant insights into its roles in recruiting other divisome proteins and stabilizing their complexes for Mtb cell wall synthesis and polar growth.

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