Suppr超能文献

通过伴侣蛋白介导的配体交换促进 IscU-[2Fe2S] 簇的转移。

Facilitated transfer of IscU-[2Fe2S] clusters by chaperone-mediated ligand exchange.

机构信息

Section of Biochemistry, DISMA, University of Milan, Celoria 2, 20133 Milan, Italy.

出版信息

Biochemistry. 2011 Nov 8;50(44):9641-50. doi: 10.1021/bi201123z. Epub 2011 Oct 13.

Abstract

The scaffold protein IscU and molecular chaperones HscA and HscB play central roles in biological assembly of iron-sulfur clusters and maturation of iron-sulfur proteins. However, the structure of IscU-FeS complexes and the molecular mechanism whereby the chaperones facilitate cluster transfer to acceptor proteins are not well understood. We have prepared amino acid substitution mutants of Escherichia coli IscU in which potential ligands to the FeS cluster (Cys-37, Cys-63, His-105, and Cys-106) were individually replaced with alanine. The properties of the IscU-FeS complexes formed were investigated by measuring both their ability to transfer preformed FeS clusters to apo-ferredoxin and the activity of the IscU proteins in catalyzing cluster assembly on apo-ferredoxin using inorganic iron with inorganic sulfide or with IscS and cysteine as a sulfur source. The ability of the HscA/HscB chaperone system to accelerate ATP-dependent cluster transfer from each IscU substitution mutant to apo-ferredoxin was also determined. All of the mutants formed FeS complexes with a stoichiometry similar to the wild-type holo-protein, i.e., IscU(2)[2Fe2S], raising the possibility that different cluster ligation states may occur during iron-sulfur protein maturation. Spectroscopic properties of the mutants and the kinetics of transfer of performed IscU-FeS clusters to apo-ferredoxin indicate that the most stable form of holo-IscU involves iron coordination by Cys-63 and Cys-106. Results of studies on the ability of mutants to catalyze formation of holo-ferredoxin using iron and different sulfur sources were consistent with proposed roles for Cys-63 and Cys-106 in FeS cluster binding and also indicated an essential role for Cys-106 in sulfide transfer to IscU from IscS. Measurements of the ability of the chaperones HscA and HscB to facilitate cluster transfer from holo-IscU to apo-ferredoxin showed that only IscU(H105A) behaved similarly to wild-type IscU in exhibiting ATP-dependent stimulation of cluster transfer. IscU(C63A) and IscU(C106A) displayed elevated rates of cluster transfer in the ±ATP whereas IscU(C37A) exhibited low rates of cluster transfer ±ATP. In interpreting these findings, we propose that IscU(2)[2Fe2S] is able undergo structural isomerization to yield conformers having different cysteine residues bound to the cluster. On the basis of the crystal structure of HscA complexed with an IscU-derived peptide, we propose that the chaperone binds and stabilizes an isomer of IscU(2)[2Fe2S] in which the cluster is bound by cysteine residues 37 and 63 and that the [2Fe2S] cluster, being held less tightly than that coordinated by Cys-63 and Cys-106 in free IscU(2)[2Fe2S], is more readily transferred to acceptor proteins such as apo-ferredoxin.

摘要

支架蛋白 IscU 以及分子伴侣 HscA 和 HscB 在生物体内铁硫簇的组装和铁硫蛋白的成熟中起着核心作用。然而,IscU-FeS 复合物的结构以及伴侣蛋白促进簇向受体蛋白转移的分子机制尚不清楚。我们已经制备了大肠杆菌 IscU 的氨基酸取代突变体,其中潜在的 FeS 簇配体(Cys-37、Cys-63、His-105 和 Cys-106)分别被替换为丙氨酸。通过测量 IscU 蛋白在无机铁和无机硫化物或 IscS 和半胱氨酸作为硫源的情况下在 apo-ferredoxin 上催化簇组装的活性,以及测定 IscU-FeS 复合物形成的能力,来研究 IscU-FeS 复合物的性质。还确定了 HscA/HscB 伴侣系统加速每个 IscU 取代突变体向 apo-ferredoxin 的 ATP 依赖性簇转移的能力。所有突变体都形成了与野生型全蛋白类似的 FeS 复合物,即 IscU(2)[2Fe2S],这表明在铁硫蛋白成熟过程中可能会出现不同的簇键合状态。突变体的光谱特性和已形成的 IscU-FeS 簇向 apo-ferredoxin 的转移动力学表明,全同型 IscU 最稳定的形式涉及 Cys-63 和 Cys-106 的铁配位。关于突变体催化使用铁和不同硫源形成全同型 ferredoxin 的能力的研究结果与 Cys-63 和 Cys-106 在 FeS 簇结合中的作用一致,并且还表明 Cys-106 在将硫化物从 IscS 转移到 IscU 中起重要作用。测量伴侣蛋白 HscA 和 HscB 促进全同型 IscU 向 apo-ferredoxin 转移簇的能力表明,只有 IscU(H105A)在表现出对簇转移的 ATP 依赖性刺激方面与野生型 IscU 行为相似。IscU(C63A)和 IscU(C106A)在±ATP 中表现出升高的簇转移率,而 IscU(C37A)在±ATP 中表现出低的簇转移率。在解释这些发现时,我们提出 IscU(2)[2Fe2S]能够经历结构异构化,从而产生具有不同半胱氨酸残基结合到簇上的构象。基于与 IscU 衍生肽复合的 HscA 的晶体结构,我们提出伴侣蛋白结合并稳定 IscU(2)[2Fe2S]的一种异构体,其中簇由半胱氨酸残基 37 和 63 结合,并且 [2Fe2S]簇被结合比自由 IscU(2)[2Fe2S]中的 Cys-63 和 Cys-106 结合更不紧密,更容易转移到 apo-ferredoxin 等受体蛋白。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验