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锌转运蛋白A(ZntA)跨膜区域的金属结合亲和力:对金属选择性的影响

Metal-binding affinity of the transmembrane site in ZntA: implications for metal selectivity.

作者信息

Liu Junbo, Dutta Sabari J, Stemmler Ann J, Mitra Bharati

机构信息

Department of Biochemistry and Molecular Biology, School of Medicine, Wayne State University, Detroit, Michigan 48201, USA.

出版信息

Biochemistry. 2006 Jan 24;45(3):763-72. doi: 10.1021/bi051836n.

Abstract

ZntA, a P1B-type ATPase, confers resistance specifically to Pb2+, Zn2+, and Cd2 in Escherichia coli. Inductively coupled plasma mass spectrometry measurements show that ZntA binds two metal ions with high affinity, one in the N-terminal domain and another in the transmembrane domain. Both sites can bind monovalent and divalent metal ions. Two proteins, deltaN-ZntA, in which the N-terminal domain is deleted, and C59A/C62A-ZntA, in which the N-terminal metal-binding site is disabled by site-specific mutagenesis, can only bind one metal ion. Because C59A/C62A-ZntA can bind a metal ion at the transmembrane site, the N-terminal domain does not block direct access of metal ions to it from the cytosol. A third mutant protein, C392A/C394A-ZntA, in which cysteines from the conserved CPC motif in transmembrane helix 6 are altered, binds metal ions only at the N-terminal site, indicating that both these cysteines form part of the transmembrane site. The metal affinity of the transmembrane site was determined in deltaN-ZntA and C59A/C62A-ZntA by competition titration using a metal ion indicator and by tryptophan fluorescence quenching. The binding affinity for the physiological substrates, Zn2+, Pb2+, and Cd2+, as well as for the extremely poor substrates, Cu2+, Ni2+, and Co2+, range from 10(6)-10(10) M(-1), and does not correlate with the metal selectivity shown by ZntA. Selectivity in ZntA possibly results from differences in metal-binding geometry that produce different structural responses. The affinity of the transmembrane site for metal ions is of similar magnitude to that of the N-terminal site [Liu J. et al. (2005) Biochemistry 44, 5159-5167]; thus, metal transfer between them would be facile.

摘要

ZntA是一种P1B型ATP酶,它能使大肠杆菌对Pb2+、Zn2+和Cd2+产生特异性抗性。电感耦合等离子体质谱测量表明,ZntA能以高亲和力结合两个金属离子,一个在N端结构域,另一个在跨膜结构域。两个位点都能结合单价和二价金属离子。两种蛋白质,即缺失N端结构域的deltaN-ZntA和通过位点特异性诱变使N端金属结合位点失活的C59A/C62A-ZntA,只能结合一个金属离子。由于C59A/C62A-ZntA能在跨膜位点结合一个金属离子,因此N端结构域不会阻止金属离子从细胞质直接进入该位点。第三个突变蛋白C392A/C394A-ZntA,其跨膜螺旋6中保守的CPC基序中的半胱氨酸发生了改变,只在N端位点结合金属离子,这表明这两个半胱氨酸都是跨膜位点的一部分。通过使用金属离子指示剂的竞争滴定和色氨酸荧光猝灭法,在deltaN-ZntA和C59A/C62A-ZntA中测定了跨膜位点的金属亲和力。对生理底物Zn2+、Pb2+和Cd2+以及对极难结合的底物Cu2+、Ni2+和Co2+的结合亲和力范围为10(6)-10(10) M(-1),且与ZntA表现出的金属选择性无关。ZntA中的选择性可能是由于金属结合几何结构的差异导致不同的结构反应。跨膜位点对金属离子的亲和力与N端位点的亲和力大小相似[Liu J.等人(2005年)《生物化学》44, 5159-5167];因此,它们之间的金属转移会很容易。

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