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首页> 外文期刊>Biochimica et biophysica acta. Bioenergetics >Aspartate-186 in the head group of the yeast iron-sulfur protein of the cytochrome bc_1 complex contributes to the protein conformation required for efficient electron transfer
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Aspartate-186 in the head group of the yeast iron-sulfur protein of the cytochrome bc_1 complex contributes to the protein conformation required for efficient electron transfer

机译:细胞色素bc_1复合物的酵母铁硫蛋白头基中的天冬氨酸186有助于有效电子转移所需的蛋白质构象

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摘要

Two conserved charged amino acids, aspartate-186 and arginine-190, localized in the aqueous head region of the iron-sulfur protein of the cytochrome bc_1 complex of yeast mitochondria, were mutated to alanine, glutamate, or asparagine and isoleucine, respectively. The R1901 mutation resulted in the complete loss of antimycin- and myxothiazol-=sensitive cytochrome c reductase activity due to loss of more than 60% of the iron-sulfur protein in the complex. Mitochondria isolated from the D186A mutant had a 50% decrease in cytochrome c reductase activity but no loss of the iron-sulfur protein or the [2Fe-2S] cluster. The midpoint potential of the [2Fe-2S] cluster of the D186A mutant was decreased from 281 to 178 mV. The D186E and D186N mutations did not result in a loss of cytochrome c reductase activity or content of iron-sulfur protein; however, the redox potential of the [2Fe-2S] cluster of D186N was decreased from 281 to 241 mV. Molecular modeling/dynamics studies predicted that substituting an alanine for Asp-186 causes global structural changes in the head group of the iron-sulfur protein resulting in changes in the orientation of the [2Fe-2S] cluster and consequently a lowered redox potential. The rate of electrogenic proton pumping in the bc_1 complex isolated from mutant D186A reconstituted into proteoliposomes decreased 64%; however, the H~+/2e~- ratio of 1.9 was identical in the mutant and the wild-type complexes. The carboxyl binding reagent, N-(ethyoxycarbonyl)-2-ethoxyl-1,2-dihydroquinoline (EEDQ) blocked electrogenic proton pumping in the bc_1 complex reconstituted into proteoliposomes without affecting electron transfer resulting in a decrease in the H~+/2e~- ratio to 1.2 and 1.1, respectively. EEDQ was bound to the iron-sulfur protein and core protein II in both the wild type and the D186A mutant, indicating that Asp-186 of the iron-sulfur protein is not required for proton translocation in the bc_1 complex.
机译:位于酵母线粒体细胞色素bc_1复合物的铁硫蛋白的水头部区域的两个保守的带电荷氨基酸天冬氨酸186和精氨酸190分别突变为丙氨酸,谷氨酸或天冬酰胺和异亮氨酸。由于复合物中铁硫蛋白的损失超过60%,R1901突变导致抗霉素和粘噻唑醇敏感的细胞色素C还原酶活性完全丧失。从D186A突变体分离的线粒体的细胞色素C还原酶活性降低了50%,但铁硫蛋白或[2Fe-2S]簇没有损失。 D186A突变体的[2Fe-2S]簇的中点电位从281降低到178 mV。 D186E和D186N突变不会导致细胞色素C还原酶活性或铁硫蛋白含量的损失。但是,D186N的[2Fe-2S]簇的氧化还原电势从281 mV降低到241 mV。分子建模/动力学研究预测,用丙氨酸代替Asp-186会导致铁硫蛋白的头部基团整体结构发生变化,从而导致[2Fe-2S]簇的方向发生变化,从而导致氧化还原电位降低。从重组为蛋白脂质体的突变体D186A分离的bc_1复合物中的电质子泵送率降低了64%;然而,突变体和野生型复合物中的H〜+ / 2e〜-比率为1.9。羧基结合剂N-(乙氧羰基)-2-乙氧基-1,2-二氢喹啉(EEDQ)阻止了电原质子泵入重组为蛋白脂质体的bc_1复合物中,而没有影响电子转移,导致H〜+ / 2e〜降低。 -比率分别为1.2和1.1。 EEDQ在野生型和D186A突变体中均与铁硫蛋白和核心蛋白II结合,表明铁硫蛋白的Asp-186对于bc_1复合物中的质子转运不是必需的。

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