首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Evidence for two conformational states of thioredoxin reductase from Escherichia coli: use of intrinsic and extrinsic quenchers of flavin fluorescence as probes to observe domain rotation.
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Evidence for two conformational states of thioredoxin reductase from Escherichia coli: use of intrinsic and extrinsic quenchers of flavin fluorescence as probes to observe domain rotation.

机译:来自大肠杆菌的硫氧还蛋白还原酶的两个构象状态的证据:使用黄素荧光的内在和外在猝灭剂作为探针观察结构域旋转。

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摘要

Thioredoxin reductase (TrxR) from Escherichia coli consists of two globular domains connected by a two-stranded beta sheet: an FAD domain and a pyridine nucleotide binding domain. The latter domain contains the redox-active disulfide composed of Cys 135 and Cys 138. TrxR is proposed to undergo a conformational change whereby the two domains rotate 66 degrees relative to each other (Waksman G, Krishna TSR, Williams CH Jr, Kuriyan J, 1994, J Mol Biol 236:800-816), placing either redox active disulfide (FO conformation) or the NADPH binding site (FR conformation) adjacent to the flavin. This domain rotation model was investigated by using a Cys 138 Ser active-site mutant. The flavin fluorescence of this mutant is only 7% that of wild-type TrxR, presumably due to the proximity of Ser 138 to the flavin in the FO conformation. Reaction of the remaining active-site thiol, Cys 135, with phenylmercuric acetate (PMA) causes a 9.5-fold increase in fluorescence. Titration of the PMA-treated mutant with the nonreducing NADP(H) analogue, 3-aminopyridine adenine dinucleotide phosphate (AADP+), results in significant quenching of the flavin fluorescence, which demonstrates binding adjacent to the FAD, as predicted for the FR conformation. Wild-type TrxR, with or without PMA treatment, shows similar quenching by AADP+, indicating that it exists mostly in the FR conformer. These findings, along with increased EndoGluC protease susceptibility of PMA-treated enzymes, agree with the model that the FO and FR conformations are in equilibrium. PMA treatment, because of steric limitations of the phenylmercuric adduct in the FO form, forces the equilibrium to the FR conformer, where AADP+ binding can cause fluorescence quenching and conformational restriction favors proteolytic susceptibility.
机译:来自大肠杆菌的硫氧还蛋白还原酶(TrxR)由通过两链β折叠连接的两个球形结构域组成:FAD结构域和吡啶核苷酸结合结构域。后一个结构域包含由Cys 135和Cys 138组成的氧化还原活性二硫化物。TrxR被提议进行构象变化,从而两个结构域相对于彼此旋转66度(Waksman G,Krishna TSR,Williams CH Jr,Kuriyan J, 1994,J Mol Biol 236:800-816),将氧化还原活性二硫键(FO构象)或NADPH结合位点(FR构象)置于黄素附近。通过使用Cys 138 Ser活性位点突变体研究了该域旋转模型。该突变体的黄素荧光仅为野生型TrxR的7%,可能是由于Ser 138与FO构型的黄素接近。剩余的活性部位硫醇Cys 135与乙酸苯汞(PMA)的反应导致荧光增加9.5倍。用未还原的NADP(H)类似物3-氨基吡啶腺嘌呤二核苷酸磷酸(AADP +)滴定PMA处理的突变体会导致黄素荧光的显着淬灭,这表明与FAD相邻的结合如FR构象所预测。经过或未经过PMA处理的野生型TrxR表现出相似的AADP +淬灭作用,表明它主要存在于FR构象异构体中。这些发现,以及经PMA处理的酶的EndoGluC蛋白酶敏感性增加,与FO和FR构象处于平衡状态的模型相符。由于FO形式的苯汞加合物的空间受限,PMA处理会迫使平衡达到FR构象异构体,其中AADP +结合会导致荧光猝灭,而构象约束则有利于蛋白水解敏感性。

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