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铁硫簇结合态的固氮菌(Nif)IscA 的光谱和功能特征。

Spectroscopic and functional characterization of iron-sulfur cluster-bound forms of Azotobacter vinelandii (Nif)IscA.

机构信息

Department of Chemistry and Center for Metalloenzyme Studies, University of Georgia, Athens, GA 30602, USA.

出版信息

Biochemistry. 2012 Oct 16;51(41):8071-84. doi: 10.1021/bi3006658. Epub 2012 Oct 4.

Abstract

The mechanism of [4Fe-4S] cluster assembly on A-type Fe-S cluster assembly proteins, in general, and the specific role of (Nif)IscA in the maturation of nitrogen fixation proteins are currently unknown. To address these questions, in vitro spectroscopic studies (UV-visible absorption/CD, resonance Raman and Mössbauer) have been used to investigate the mechanism of [4Fe-4S] cluster assembly on Azotobacter vinelandii(Nif)IscA, and the ability of (Nif)IscA to accept clusters from NifU and to donate clusters to the apo form of the nitrogenase Fe-protein. The results show that (Nif)IscA can rapidly and reversibly cycle between forms containing one 2Fe-2S and one 4Fe-4S cluster per homodimer via DTT-induced two-electron reductive coupling of two 2Fe-2S clusters and O(2)-induced 4Fe-4S oxidative cleavage. This unique type of cluster interconversion in response to cellular redox status and oxygen levels is likely to be important for the specific role of A-type proteins in the maturation of [4Fe-4S] cluster-containing proteins under aerobic growth or oxidative stress conditions. Only the 4Fe-4S-(Nif)IscA was competent for rapid activation of apo-nitrogenase Fe protein under anaerobic conditions. Apo-(Nif)IscA was shown to accept clusters from [4Fe-4S] cluster-bound NifU via rapid intact cluster transfer, indicating a potential role as a cluster carrier for delivery of clusters assembled on NifU. Overall the results support the proposal that A-type proteins can function as carrier proteins for clusters assembled on U-type proteins and suggest that they are likely to supply [2Fe-2S] clusters rather than [4Fe-4S] for the maturation of [4Fe-4S] cluster-containing proteins under aerobic or oxidative stress growth conditions.

摘要

[4Fe-4S]簇在 A 型 Fe-S 簇组装蛋白上的组装机制,一般来说,以及(Nif)IscA 在固氮蛋白成熟中的具体作用目前尚不清楚。为了解决这些问题,已使用体外光谱研究(紫外-可见吸收/CD、共振拉曼和穆斯堡尔谱)来研究 Azotobacter vinelandii(Nif)IscA 上[4Fe-4S]簇的组装机制,以及(Nif)IscA 从 NifU 接受簇并将簇捐赠给氮酶 Fe 蛋白的脱辅基形式的能力。结果表明,(Nif)IscA 可以通过 DTT 诱导的两个[2Fe-2S](2+)簇的两个电子还原偶联和 O2 诱导的[4Fe-4S](2+)氧化裂解,快速且可逆地在每个同源二聚体中循环形成一种形式,该形式含有一个[2Fe-2S](2+)和一个[4Fe-4S](2+)簇。这种对细胞氧化还原状态和氧水平的独特类型的簇互变可能对于 A 型蛋白在有氧生长或氧化应激条件下成熟含[4Fe-4S]簇蛋白的特定作用很重要。只有[4Fe-4S](2+)-(Nif)IscA 在厌氧条件下才能快速激活脱辅基氮酶 Fe 蛋白。证明脱辅基(Nif)IscA能够通过快速完整的簇转移从[4Fe-4S]簇结合的 NifU 接受簇,表明其作为簇载体在递送至 NifU 上组装的簇方面具有潜在作用。总体而言,结果支持 A 型蛋白可以作为 U 型蛋白组装的簇载体蛋白的观点,并表明它们在有氧或氧化应激生长条件下成熟含[4Fe-4S]簇蛋白时,可能提供[2Fe-2S]簇而不是[4Fe-4S]簇。

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