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金属结合对球形红细菌菌绿体中与次级电子受体(QB)还原相关的生电质子转移的影响。

Effect of metal binding on electrogenic proton transfer associated with reduction of the secondary electron acceptor (QB) in Rhodobacter sphaeroides chromatophores.

作者信息

Keller S, Beatty J T, Paddock M, Breton J, Leibl W

机构信息

CEA Saclay, Section de Bioénergétique, 91191 Gif-sur-Yvette, France.

出版信息

Biochemistry. 2001 Jan 16;40(2):429-39. doi: 10.1021/bi001286n.

Abstract

The influence of metal ion (Cd(2+), Zn(2+), Ni(2+)) binding on the electrogenic phases of proton transfer connected with reduction of quinone Q(B) in chromatophores from Rhodobacter sphaeroides was studied by time-resolved electric potential changes. In the presence of metals, the electrogenic transients associated with proton transfer on first and second flash at pH 8 were found to be slower by factors of 3-6. This is essentially the same effect of metal binding that was observed on optical transients in isolated reaction centers (RC), where the metal ion was shown to inhibit proton transfer [Paddock, M. L., Graige, M. S., Feher, G., and Okamura, M. Y. (1999) Proc. Natl. Acad. Sci. U.S.A. 96, 6183-6188]. The effect of metal binding on the kinetics in chromatophores is, therefore, similarly attributed to inhibition of proton uptake, which becomes rate-limiting. A striking observation was an increase in the amplitude of the electrogenic proton-uptake phase after the first flash with bound metal ion. We attribute this to a loss of internal proton rearrangement, requiring that the protons that stabilize Q(B)(-) come from solution. In mutant RCs, in which His-H126 and His-H128 are replaced with Ala, the apparent binding of Cd(2+) and Ni(2+) was decreased, showing that the binding site of these metal ions is the same as found in RC crystals [Axelrod, H. L., Abresch, E. C., Paddock, M. L., Okamura, M. Y., and Feher, G. (2000) Proc. Natl. Acad. Sci. U.S.A. 97, 1542-1547]. Therefore, the unique proton entry point near His-H126, His-H128, and Asp-M17 that was identified in isolated RCs is also the entry point in chromatophores.

摘要

通过时间分辨电势变化研究了金属离子(Cd(2+)、Zn(2+)、Ni(2+))结合对球形红杆菌中与醌Q(B)还原相关的质子转移电生相的影响。在存在金属的情况下,发现在pH 8时与第一次和第二次闪光时质子转移相关的电生瞬变慢了3至6倍。这与在分离的反应中心(RC)中光学瞬变上观察到的金属结合效应基本相同,在那里金属离子被证明抑制质子转移[帕多克,M. L.,格雷格,M. S.,费赫尔,G.,和冈村,M. Y.(1999年)美国国家科学院院刊96,6183 - 6188]。因此,金属结合对色谱菌动力学的影响同样归因于质子摄取的抑制,这成为限速因素。一个引人注目的观察结果是,在结合金属离子的第一次闪光后,电生质子摄取相的幅度增加。我们将此归因于内部质子重排的丧失,这要求稳定Q(B)(-)的质子来自溶液。在His-H126和His-H128被丙氨酸取代的突变反应中心中,Cd(2+)和Ni(2+)的表观结合减少,表明这些金属离子的结合位点与在RC晶体中发现的相同[阿克塞尔罗德,H. L.,阿布雷施,E. C.,帕多克,M. L.,冈村,M. Y.,和费赫尔,G.(2000年)美国国家科学院院刊97,1542 - 1547]。因此,在分离的反应中心中确定的靠近His-H126、His-H128和Asp-M17的独特质子进入点也是色谱菌中的进入点。

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