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固氮酶[8Fe-7S]簇中电子与质子耦合转移的证据。

Evidence for coupled electron and proton transfer in the [8Fe-7S] cluster of nitrogenase.

作者信息

Lanzilotta W N, Christiansen J, Dean D R, Seefeldt L C

机构信息

Department of Chemistry and Biochemistry, Utah State University, Logan 84322, USA.

出版信息

Biochemistry. 1998 Aug 11;37(32):11376-84. doi: 10.1021/bi980048d.

Abstract

Substrate reduction by nitrogenase requires electron transfer from a [4Fe-4S] cluster in the iron (Fe) protein component to an FeMo cofactor in the molybdenum-iron (MoFe) protein component in a reaction that is coupled to MgATP hydrolysis and component protein association and dissociation. An [8Fe-7S] (or P-) cluster in the MoFe protein has been proposed as an intermediate electron-transfer site, although how this cluster functions in electron-transfer remains unclear. In the present work, it is demonstrated that one redox couple of the P-cluster (P2+/1+) undergoes coupled electron and proton transfer, whereas a more reduced couple (P1+/N) does not involve a coupled proton transfer. Redox titrations of the MoFe protein P-cluster were performed, and the midpoint potential of the P2+/1+ couple (Em2) was found to be pH dependent, ranging from -224 mV at pH 6.0 to -348 mV at pH 8.5. A plot of Em2 versus the pH for this redox couple was linear and revealed a change of -53 mV/pH unit, indicating a single protonation event associated with reduction. From this plot, it was concluded that p is <6.0 and p is >8.5 in a proton-modified Nernst equation. In contrast, the midpoint potential for the P1+/N couple (Em1) was found to be -290 mV and was invariant over the pH range 6.0-8.5. These results indicate that the protonated species does not influence either the P1+ or the PN oxidation states. In addition, at physiological pH values, electron transfer is coupled to proton transfer for the P2+/1+ couple. The P-clusters are unique among [Fe-S] clusters in that they appear to be ligated to the protein through a serinate-gammaO ligand (betaSer188) and a peptide bond amide-N ligand (alphaCys88), in addition to cysteinate-S ligands. Elimination of the serinate ligand by replacement with a glycine was found to shift the Em values for both P-cluster couples by greater than +60 mV, however the pH dependence of Em2 was unchanged. These results rule out Ser188 as the protonated ligand responsible for the pH dependence of Em2. The implications of these results in understanding the nitrogenase electron-transfer mechanism are discussed.

摘要

固氮酶对底物的还原需要电子从铁(Fe)蛋白组分中的一个[4Fe-4S]簇转移到钼铁(MoFe)蛋白组分中的一个铁钼辅因子上,该反应与MgATP水解以及组分蛋白的缔合和解离相偶联。尽管目前尚不清楚该簇如何在电子转移中发挥作用,但MoFe蛋白中的一个[8Fe-7S](或P-)簇已被提出作为中间电子转移位点。在本研究中,已证明P-簇的一对氧化还原对(P2+/1+)发生电子和质子的偶联转移,而更还原的一对(P1+/N)则不涉及质子的偶联转移。对MoFe蛋白P-簇进行了氧化还原滴定,发现P2+/1+对的中点电位(Em2)与pH有关,在pH 6.0时为-224 mV,在pH 8.5时为-348 mV。该氧化还原对的Em2与pH的关系图呈线性,显示出-53 mV/pH单位的变化,表明与还原相关的单一质子化事件。根据该图得出结论,在质子修饰的能斯特方程中,p<6.0且p>8.5。相比之下,发现P1+/N对的中点电位(Em1)为-290 mV,在pH 6.0 - 8.5范围内不变。这些结果表明质子化物种不影响P1+或PN的氧化态。此外,在生理pH值下,P2+/1+对的电子转移与质子转移相偶联。P-簇在[Fe-S]簇中是独特的,因为除了半胱氨酸盐-S配体之外,它们似乎还通过丝氨酸盐-γO配体(βSer188)和肽键酰胺-N配体(αCys88)与蛋白质相连。通过用甘氨酸取代消除丝氨酸盐配体,发现两个P-簇对的Em值都偏移了大于+60 mV,然而Em2的pH依赖性未改变。这些结果排除了Ser188作为负责Em2的pH依赖性的质子化配体。讨论了这些结果对理解固氮酶电子转移机制的意义。

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