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首页> 外文期刊>Journal of biological inorganic chemistry: JBIC: a publication of the Society of Biological Inorganic Chemistry >The reduction rates of DEPC-modified mutant Thermus thermophilus Rieske proteins differ when there is a negative charge proximal to the cluster
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The reduction rates of DEPC-modified mutant Thermus thermophilus Rieske proteins differ when there is a negative charge proximal to the cluster

机译:当簇附近有负电荷时,DEPC修饰的突变体嗜热栖热菌Rieske蛋白的还原率会有所不同

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摘要

Rieske and Rieske-type proteins are electron transport proteins involved in key biological processes such as respiration, photosynthesis, and detoxification. They have a [2Fe–2S] cluster ligated by two cysteines and two histidines. A series of mutations, L135E, L135R, L135A, and Y158F, of the Rieske protein from Thermus thermophilus has been produced which probe the effects of the neighboring residues, in the second sphere, on the dynamics of cluster reduction and the reactivity of the ligating histidines. These properties were probed using titrations and modifications with diethyl pyrocarbonate (DEPC) at various pH values monitored using UV–Visible and circular dichroism spectrophotometry. These results, along with results from EPR studies, provide information on ligating histidine modification and rate of reduction of each of the mutant proteins. L135R, L135A, and Y158F react with DEPC similarly to wild type, resulting in modified protein with a reduced [2Fe–2S] cluster in <90 min, whereas L135E requires >15 h under the same conditions. Thus, the negative charge slows down the rate of reduction and provides an explanation as to why negatively charged residues are rarely, if ever, found in the equivalent position of other Rieske and Rieske-type proteins.
机译:Rieske和Rieske型蛋白是电子传递蛋白,参与呼吸,光合作用和排毒等关键生物学过程。它们具有由两个半胱氨酸和两个组氨酸连接的[2Fe-2S]簇。已经产生了嗜热栖热菌的Rieske蛋白的一系列突变,L135E,L135R,L135A和Y158F,它们探测了第二个球体中相邻残基对簇还原动力学和连接反应性的影响。组氨酸。使用滴定法和焦碳酸二乙酯(DEPC)修饰在各种pH值下使用紫外可见和圆二色性分光光度法监测这些性质。这些结果以及EPR研究的结果提供了有关连接组氨酸修饰和每种突变蛋白还原率的信息。 L135R,L135A和Y158F与DEPC的反应与野生型相似,导致修饰的蛋白质在少于90分钟的时间内[2Fe-2S]簇减少,而L135E在相同条件下需要超过15小时。因此,负电荷减慢了还原速度,并提供了一个解释,说明为什么很少在其他Rieske和Rieske型蛋白质的等效位置上发现带负电荷的残基。

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