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冷冻电镜结构解析表明志贺毒素 2 与天然核糖体 P stalk 复合物中涉及结合相互作用的残基。

Cryo-EM structure of Shiga toxin 2 in complex with the native ribosomal P-stalk reveals residues involved in the binding interaction.

机构信息

Institute for Quantitative Biomedicine, Department of Biochemistry and Microbiology, Rutgers University, Piscataway, New Jersey, USA.

Biocomputing Unit, Centro Nacional de Biotecnología (CNB), Consejo Superior de Investigaciones Científicas (CSIC), Madrid, Spain.

出版信息

J Biol Chem. 2023 Jan;299(1):102795. doi: 10.1016/j.jbc.2022.102795. Epub 2022 Dec 15.

Abstract

Shiga toxin 2a (Stx2a) is the virulence factor of enterohemorrhagic Escherichia coli. The catalytic A1 subunit of Stx2a (Stx2A1) interacts with the ribosomal P-stalk for loading onto the ribosome and depurination of the sarcin-ricin loop, which halts protein synthesis. Because of the intrinsic flexibility of the P-stalk, a structure of the Stx2a-P-stalk complex is currently unknown. We demonstrated that the native P-stalk pentamer binds to Stx2a with nanomolar affinity, and we employed cryo-EM to determine a structure of the 72 kDa Stx2a complexed with the P-stalk. The structure identifies Stx2A1 residues involved in binding and reveals that Stx2a is anchored to the P-stalk via only the last six amino acids from the C-terminal domain of a single P-protein. For the first time, the cryo-EM structure shows the loop connecting Stx2A1 and Stx2A2, which is critical for activation of the toxin. Our principal component analysis of the cryo-EM data reveals the intrinsic dynamics of the Stx2a-P-stalk interaction, including conformational changes in the P-stalk binding site occurring upon complex formation. Our computational analysis unveils the propensity for structural rearrangements within the C-terminal domain, with its C-terminal six amino acids transitioning from a random coil to an α-helix upon binding to Stx2a. In conclusion, our cryo-EM structure sheds new light into the dynamics of the Stx2a-P-stalk interaction and indicates that the binding interface between Stx2a and the P-stalk is the potential target for drug discovery.

摘要

志贺毒素 2a(Stx2a)是肠出血性大肠杆菌的毒力因子。Stx2a 的催化 A1 亚基(Stx2A1)与核糖体 P 臂相互作用,将其加载到核糖体上,并使 Sarcin-Ricin 环脱嘌呤,从而阻止蛋白质合成。由于 P 臂的固有灵活性,目前尚不清楚 Stx2a-P 臂复合物的结构。我们证明了天然的 P 臂五聚体以纳摩尔亲和力与 Stx2a 结合,我们采用 cryo-EM 来确定与 P 臂结合的 72 kDa Stx2a 复合物的结构。该结构确定了参与结合的 Stx2A1 残基,并揭示了 Stx2a 仅通过单个 P 蛋白的 C 末端结构域的最后六个氨基酸锚定在 P 臂上。首次 cryo-EM 结构显示了连接 Stx2A1 和 Stx2A2 的环,该环对于毒素的激活至关重要。我们对 cryo-EM 数据的主成分分析揭示了 Stx2a-P 臂相互作用的固有动力学,包括在复合物形成时 P 臂结合位点的构象变化。我们的计算分析揭示了 C 末端结构域内结构重排的倾向,其 C 末端的六个氨基酸在与 Stx2a 结合时从无规卷曲转变为α-螺旋。总之,我们的 cryo-EM 结构为 Stx2a-P 臂相互作用的动力学提供了新的认识,并表明 Stx2a 和 P 臂之间的结合界面可能是药物发现的潜在靶标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4110/9823235/be7d4ab18360/gr1.jpg

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