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结构和生化分析揭示了关于复合物II同源物喹啉:富马酸还原酶的共价黄素化的见解。

Structural and biochemical analyses reveal insights into covalent flavinylation of the Complex II homolog quinol:fumarate reductase.

作者信息

Starbird C A, Maklashina Elena, Sharma Pankaj, Qualls-Histed Susan, Cecchini Gary, Iverson T M

机构信息

Graduate Program in Chemical and Physical Biology, Vanderbilt University, Nashville, Tennessee 37232.

Molecular Biology Division, Veterans Affairs Medical Center, San Francisco, California 94121; Department of Biochemistry and Biophysics, University of California, San Francisco, California 94158.

出版信息

J Biol Chem. 2017 Aug 4;292(31):12921-12933. doi: 10.1074/jbc.M117.795120. Epub 2017 Jun 14.

Abstract

The Complex II homolog quinol:fumarate reductase (QFR, FrdABCD) catalyzes the interconversion of fumarate and succinate at a covalently attached FAD within the FrdA subunit. The SdhE assembly factor enhances covalent flavinylation of Complex II homologs, but the mechanisms underlying the covalent attachment of FAD remain to be fully elucidated. Here, we explored the mechanisms of covalent flavinylation of the QFR FrdA subunit. Using a Δ strain, we show that the requirement for the assembly factor depends on the cellular redox environment. We next identified residues important for the covalent attachment and selected the FrdA residue, which contributes to proton shuttling during fumarate reduction, for detailed biophysical and structural characterization. We found that QFR complexes containing FrdA have a structure similar to that of the WT flavoprotein, but lack detectable substrate binding and turnover. In the context of the isolated FrdA subunit, the anticipated assembly intermediate during covalent flavinylation, FrdA variants had stability similar to that of WT FrdA, contained noncovalent FAD, and displayed a reduced capacity to interact with SdhE. However, small-angle X-ray scattering (SAXS) analysis of WT FrdA cross-linked to SdhE suggested that the FrdA residue is unlikely to contribute directly to the FrdA-SdhE protein-protein interface. We also found that no auxiliary factor is absolutely required for flavinylation, indicating that the covalent flavinylation is autocatalytic. We propose that multiple factors, including the SdhE assembly factor and bound dicarboxylates, stimulate covalent flavinylation by preorganizing the active site to stabilize the quinone-methide intermediate.

摘要

复合物II同源物喹啉:富马酸还原酶(QFR,FrdABCD)在FrdA亚基内一个共价连接的FAD处催化富马酸和琥珀酸的相互转化。SdhE组装因子增强了复合物II同源物的共价黄素化作用,但FAD共价连接的潜在机制仍有待充分阐明。在此,我们探究了QFR的FrdA亚基共价黄素化的机制。利用一个缺失菌株,我们表明对组装因子的需求取决于细胞的氧化还原环境。接下来,我们鉴定了对共价连接重要的残基,并选择了在富马酸还原过程中有助于质子穿梭的FrdA残基,进行详细的生物物理和结构表征。我们发现含有FrdA的QFR复合物具有与野生型黄素蛋白相似的结构,但缺乏可检测到的底物结合和周转。在分离的FrdA亚基的情况下,共价黄素化过程中预期的组装中间体FrdA变体具有与野生型FrdA相似的稳定性,含有非共价FAD,并且与SdhE相互作用的能力降低。然而,对与SdhE交联的野生型FrdA进行的小角X射线散射(SAXS)分析表明,FrdA残基不太可能直接参与FrdA - SdhE蛋白 - 蛋白界面。我们还发现黄素化过程中绝对不需要辅助因子,这表明共价黄素化是自催化作用。我们提出,包括SdhE组装因子和结合的二羧酸盐在内的多种因素,通过预先组织活性位点以稳定醌甲基化物中间体来刺激共价黄素化。

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