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调节构象电子传递门的速率和pH可及性。

Tuning the rate and pH accessibility of a conformational electron transfer gate.

作者信息

Baddam Saritha, Bowler Bruce E

机构信息

Department of Chemistry and Biochemistry, University of Denver, 2190 East Iliff Avenue, Denver, CO 80208-2436, USA.

出版信息

Inorg Chem. 2006 Aug 7;45(16):6338-46. doi: 10.1021/ic0603712.

Abstract

Methods to fine-tune the rate of a fast conformational electron transfer (ET) gate involving a His-heme alkaline conformer of iso-1-cytochrome c (iso-1-Cytc) and to adjust the pH accessibility of a slow ET gate involving a Lys-heme alkaline conformer are described. Fine-tuning the fast ET gate employs a strategy of making surface mutations in a substructure unfolded in the alkaline conformer. To make the slow ET gate accessible at neutral pH, the strategy involves mutations at buried sequence positions which are expected to more strongly perturb the stability of native versus alkaline iso-1-Cytc. To fine-tune the rate of the fast His 73-heme ET gate, we mutate the surface-exposed Lys 79 to Ala (A79H73 variant). This mutation also simplifies ET gating by removing Lys 79, which can serve as a ligand in the alkaline conformer of iso-1-Cytc. To adjust the pH accessibility of the slow Lys 73-heme ET gate, we convert the buried side chain Asn 52 to Gly and also mutate Lys 79 to Ala to simplify ET gating (A79G52 variant). ET kinetics is studied as a function of pH using hexaammineruthenium(II) chloride (a6Ru2+) to reduce the variants. Both variants show fast direct ET reactions dependent on [a6Ru2+] and slower gated ET reactions that are independent of [a6Ru2+]. The observed gated ET rates correlate well with rates for the alkaline-to-native state conformational change measured independently. Together with the previously reported H73 variant (Baddam, S.; Bowler, B. E. J. Am. Chem. Soc. 2005, 127, 9702-9703), the A79H73 variant allows His 73-heme-mediated ET gating to be fine-tuned from 75 to 200 ms. The slower Lys 73-heme (15-20 s time scale) ET gate for the A79G52 variant is now accessible over the pH range 6-8.

摘要

本文描述了微调涉及异-1-细胞色素c(iso-1-Cytc)的组氨酸-血红素碱性构象体的快速构象电子转移(ET)门控速率以及调节涉及赖氨酸-血红素碱性构象体的慢速ET门控的pH可及性的方法。微调快速ET门控采用在碱性构象体中展开的亚结构中进行表面突变的策略。为了使慢速ET门控在中性pH下可及,该策略涉及在埋藏的序列位置进行突变,预计这些位置会更强烈地扰动天然态与碱性iso-1-Cytc的稳定性。为了微调快速的组氨酸73-血红素ET门控速率,我们将表面暴露的赖氨酸79突变为丙氨酸(A79H73变体)。该突变还通过去除赖氨酸79简化了ET门控,赖氨酸79可在iso-1-Cytc的碱性构象体中作为配体。为了调节慢速的赖氨酸73-血红素ET门控的pH可及性,我们将埋藏的侧链天冬酰胺52转化为甘氨酸,并将赖氨酸79突变为丙氨酸以简化ET门控(A79G52变体)。使用氯化六氨合钌(II)(a6Ru2+)还原变体,研究ET动力学作为pH的函数。两种变体均显示出依赖于[a6Ru2+]的快速直接ET反应以及与[a6Ru2+]无关的较慢的门控ET反应。观察到的门控ET速率与独立测量的从碱性到天然态构象变化的速率密切相关。与先前报道的H73变体(Baddam, S.; Bowler, B. E. J. Am. Chem. Soc. 2005, 127, 9702-9703)一起,A79H73变体使组氨酸73-血红素介导的ET门控能够从75毫秒微调至200毫秒。A79G52变体较慢的赖氨酸73-血红素(15-20秒时间尺度)ET门控现在在pH范围6-8内可及。

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