Department of Pharmacology, Vanderbilt University, Nashville, TN, 37232, USA.
Molecular Biology Division, San Francisco VA Health Care System, San Francisco, CA, 94121, USA.
Nat Commun. 2018 Jan 18;9(1):274. doi: 10.1038/s41467-017-02713-8.
Flavin is covalently attached to the protein scaffold in ~10% of flavoenzymes. However, the mechanism of covalent modification is unclear, due in part to challenges in stabilizing assembly intermediates. Here, we capture the structure of an assembly intermediate of the Escherichia coli Complex II (quinol:fumarate reductase (FrdABCD)). The structure contains the E. coli FrdA subunit bound to covalent FAD and crosslinked with its assembly factor, SdhE. The structure contains two global conformational changes as compared to prior structures of the mature protein: the rotation of a domain within the FrdA subunit, and the destabilization of two large loops of the FrdA subunit, which may create a tunnel to the active site. We infer a mechanism for covalent flavinylation. As supported by spectroscopic and kinetic analyses, we suggest that SdhE shifts the conformational equilibrium of the FrdA active site to disfavor succinate/fumarate interconversion and enhance covalent flavinylation.
黄素共价结合到 ~10%的黄素酶的蛋白质支架上。然而,由于在稳定组装中间体方面存在挑战,共价修饰的机制尚不清楚。在这里,我们捕获了大肠杆菌复合物 II(醌:延胡索酸还原酶 (FrdABCD))的一个组装中间体的结构。该结构包含与共价 FAD 结合并与其组装因子 SdhE 交联的大肠杆菌 FrdA 亚基。与成熟蛋白的先前结构相比,该结构包含两个全局构象变化:FrdA 亚基内的一个结构域的旋转,以及 FrdA 亚基的两个大环的失稳,这可能会在活性部位形成一个隧道。我们推断出了共价黄素化的机制。通过光谱和动力学分析得到支持,我们认为 SdhE 改变了 FrdA 活性部位的构象平衡,不利于琥珀酸/延胡索酸相互转化,并增强了共价黄素化。