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ABC7型转运蛋白Atm1可溶性结构域的特性分析

Characterization of the soluble domain of the ABC7 type transporter Atm1.

作者信息

Chen Chun-An, Cowan J A

机构信息

Evans Laboratory of Chemistry, Ohio State University, Columbus, Ohio 43210, USA.

出版信息

J Biol Chem. 2003 Dec 26;278(52):52681-8. doi: 10.1074/jbc.M306472200. Epub 2003 Sep 26.

Abstract

Atm1 is an ABC transporter that is located in yeast mitochondria and has previously been implicated in the maturation of cytosolic iron-sulfur cluster proteins. The soluble nucleotide binding domain of Atm1 (Atm1-C) has been overexpressed in Escherichia coli, purified, and characterized. Dissociation constants (KD) for Atm1-C binding of ATP (KD approximately 97 microm, pH 7.3, and approximately 102 microm, pH 10.0) and ADP (KD approximately 43 microm, pH 7.3, and 92 microm, pH 10.0) were measured by fluorimetry. The higher binding affinity for ADP suggests that the transmembrane-spanning domain may be required to promote a structural change in the nucleotide binding domain to facilitate substrate export and ADP release. ADP also had an inhibitory effect on Atm1-C with an IC50 of 10 mm. The Michaelis-Menten constants Vmax, KM, and kcat of Atm1-C were measured as 1.822 microm min(-1), 513 microm, and 0.055 min(-1), respectively. The metal dependence of Atm1-C ATPase demonstrated a reactivity order of Mn2+ > Mg2+ > Co2+, while Mg2+ and Co2+ were both found to be inhibitory at higher concentrations. The pH profile and structural comparison with HisP are consistent with a role for His and Lys in promoting the ATPase activity. Structural analysis of Atm1-C by CD spectroscopy suggested a similarity of secondary structure to that found for a prokaryotic homologue (HisP), whereas modeling of the Atm1-C tertiary structure using HisP as a template is also consistent with a similarity in tertiary structure. Atm1-C tends to form a dimer or higher aggregation state at higher concentration; however, the concentration dependence of Atm1-C on ATPase activity and the results of a Hill analysis (napp = 1.1) demonstrated that there was essentially no cooperativity in ATP hydrolysis, in contrast to observations for the prokaryotic HisP transporter, which demonstrated full cooperativity for both full-length and the soluble domains. Accordingly, any cooperative response must be mediated through the transmembrane domain in the case of the eukaryotic Atm1 transporter.

摘要

Atm1是一种ABC转运蛋白,位于酵母线粒体中,此前已被证明与胞质铁硫簇蛋白的成熟有关。Atm1的可溶性核苷酸结合结构域(Atm1-C)已在大肠杆菌中过表达、纯化并进行了表征。通过荧光法测量了Atm1-C与ATP(pH 7.3时KD约为97微摩尔,pH 10.0时约为102微摩尔)和ADP(pH 7.3时KD约为43微摩尔,pH 10.0时为92微摩尔)结合的解离常数(KD)。对ADP的较高结合亲和力表明,可能需要跨膜结构域来促进核苷酸结合结构域的结构变化,以利于底物输出和ADP释放。ADP对Atm1-C也有抑制作用,IC50为10毫摩尔。Atm1-C的米氏常数Vmax、KM和kcat分别测得为1.822微摩尔·分钟-1、513微摩尔和0.055分钟-1。Atm1-C ATP酶的金属依赖性表明反应活性顺序为Mn2+>Mg2+>Co2+,而在较高浓度下发现Mg2+和Co2+均具有抑制作用。pH曲线以及与HisP的结构比较表明,His和Lys在促进ATP酶活性中起作用。通过圆二色光谱对Atm1-C进行的结构分析表明,其二级结构与原核同源物(HisP)的二级结构相似,而以HisP为模板对Atm1-C三级结构进行的建模也与三级结构的相似性一致。Atm1-C在较高浓度下倾向于形成二聚体或更高的聚集状态;然而,Atm1-C对ATP酶活性的浓度依赖性以及希尔分析结果(napp = 1.1)表明,与原核HisP转运蛋白的观察结果相反,ATP水解基本上不存在协同性,原核HisP转运蛋白的全长和可溶性结构域均表现出完全协同性。因此,对于真核Atm1转运蛋白而言,任何协同反应都必须通过跨膜结构域介导。

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