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