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与门克斯病相关的ATP7A第一个金属结合序列的还原形式和铜(I)结合形式的溶液结构。

Solution structures of the reduced and Cu(I) bound forms of the first metal binding sequence of ATP7A associated with Menkes disease.

作者信息

DeSilva Tara M, Veglia Gianluigi, Opella Stanley J

机构信息

Department of Neurology, Children's Hospital, Harvard Medical School, Boston, Massachusetts, USA.

出版信息

Proteins. 2005 Dec 1;61(4):1038-49. doi: 10.1002/prot.20639.

DOI:10.1002/prot.20639
PMID:16211579
Abstract

The coding sequence for the first N-terminal copper binding motif of the human Menkes disease protein (MNK1; residues 2-79) was synthesized, cloned, and expressed in bacteria for biochemical and structural studies. MNK1 adopts the betaalphabetabetaalphabeta fold common to all the metal binding sequences (MBS) found in other metal transport systems (e.g., the yeast copper chaperone for superoxide dismutase CCS, the yeast copper chaperone ATX1 bound to Hg(II), and most recently Cu(I), the bacterial copper binding protein, CopZ, and the bacterial Hg(II) binding protein MerP), although substantial differences were found in the metal binding loop. Similar to ATX1, MNK1 binds Cu(I) in a distorted linear bicoordinate geometry. As with MerP, MNK1 has a high affinity for both Hg(II) and Cu(I), although it displays a marked preference for Cu(I). In addition, we found that F71 is a key residue in the compact folding of MNK1, and its mutation to alanine results in an unfolded structure. The homologous residue in MerP has also been mutated with similar results. Finally, to understand the relationship between protein folding and metal affinity and specificity, we expressed a chimeric MBS with the MNK1 protein carrying the binding motif of MerP (CAAC-MNK1); this chimeric protein showed differences in structure and the dynamics of the binding site that may account for metal specificity.

摘要

合成、克隆了人类门克斯病蛋白(MNK1;第2至79位氨基酸残基)首个N端铜结合基序的编码序列,并在细菌中进行表达,用于生化和结构研究。MNK1采用了在其他金属转运系统中发现的所有金属结合序列(MBS)共有的β-α-β-α-β折叠结构(例如,酵母超氧化物歧化酶铜伴侣CCS、与Hg(II)结合的酵母铜伴侣ATX1,以及最近发现的与Cu(I)结合的情况、细菌铜结合蛋白CopZ和细菌Hg(II)结合蛋白MerP),尽管在金属结合环中发现了显著差异。与ATX1类似,MNK1以扭曲的线性双配位几何结构结合Cu(I)。与MerP一样,MNK1对Hg(II)和Cu(I)都有高亲和力,尽管它对Cu(I)表现出明显的偏好。此外,我们发现F71是MNK1紧密折叠中的关键残基,将其突变为丙氨酸会导致结构展开。MerP中的同源残基也发生了类似突变,结果相同。最后,为了理解蛋白质折叠与金属亲和力和特异性之间的关系,我们表达了一种嵌合MBS,其中MNK1蛋白携带MerP的结合基序(CAAC-MNK1);这种嵌合蛋白在结构和结合位点动力学方面表现出差异,这可能解释了金属特异性。

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