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Second distinct conformation of the phosphohistidine loop in succinyl-CoA synthetase

机译:第二个不同的构象在琥珀酰辅酶合成酶phosphohistidine循环

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Succinyl-CoA synthetase (SCS) catalyzes a reversible reaction that is the only substrate-level phosphorylation in the citric acid cycle. One of the essential steps for the transfer of the phosphoryl group involves the movement of the phosphohistidine loop between active site I, where CoA, succinate and phosphate bind, and active site II, where the nucleotide binds. Here, the first crystal structure of SCS revealing the conformation of the phosphohistidine loop in site II of the porcine GTP-specific enzyme is presented. The phosphoryl transfer bridges a distance of 29 A between the binding sites for phosphohistidine in site I and site II, so these crystal structures support the proposed mechanism of catalysis by SCS. In addition, a second succinate-binding site was discovered at the interface between the α- and β-subunits of SCS, and another magnesium ion was found that interacts with the side chains of Glu141β and Glu204β via water-mediated interactions. These glutamate residues interact with the active-site histidine residue when it is bound in site II.
机译:琥珀酰辅酶合成酶(SCS)催化这是唯一的可逆反应柠檬的作用物水平磷酸化酸循环。磷酰基集团的转移涉及到phosphohistidine循环之间的运动活跃的网站我,辅酶a,琥珀酸和磷酸绑定和活性部位II,核苷酸结合。揭示的构象phosphohistidine循环现场II的猪GTP-specific酶。传输桥梁之间的距离29我和结合位点的phosphohistidine网站网站二世,所以这些晶体结构支持提出了由SCS的催化机制。此外,第二个succinate-binding网站发现在α-和之间的界面SCS的β亚基,另一个镁离子发现与侧链的交互通过water-mediated Glu141β和Glu204β交互。时活性部位的组氨酸残基绑定的网站。

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