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重金属与肽和蛋白质结合的选择性。

Selectivity in heavy metal- binding to peptides and proteins.

作者信息

DeSilva Tara M, Veglia Gianluigi, Porcelli Fernando, Prantner Andrew M, Opella Stanley J

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, CA 92093, USA.

出版信息

Biopolymers. 2002 Aug 5;64(4):189-97. doi: 10.1002/bip.10149.

Abstract

The metal-binding affinities and three-dimensional structures of three synthetic 18-residue peptides with sequences derived from that of the highly conserved metal-binding motif MXCXXC found in many heavy metal-binding proteins were determined. A change in register of the cysteines and alanines of the sequence from the periplasmic mercury-binding protein, MerP, i.e., CAAC, CACA, and CCAA, affects the specificity of metal binding, in particular, the peptide with vicinal cysteines binds only mercury. The three-dimensional structures of the mercury-bound forms of the three peptides determined in solution by NMR spectroscopy peptides differ considerably, even though they are all linear bicoordinate complexes. The three-dimensional structure of the peptide with CAAC bound to Cd(II) demonstrates that the metal-binding loop is malleable enough to accommodate modes of coordination other than linear bicoordinate.

摘要

测定了三种合成的18个残基肽的金属结合亲和力和三维结构,这些肽的序列源自许多重金属结合蛋白中高度保守的金属结合基序MXCXXC。来自周质汞结合蛋白MerP的序列中半胱氨酸和丙氨酸的排列变化,即CAAC、CACA和CCAA,会影响金属结合的特异性,特别是,具有相邻半胱氨酸的肽只结合汞。通过核磁共振光谱法在溶液中测定的三种肽的汞结合形式的三维结构有很大差异,尽管它们都是线性双配位络合物。与Cd(II)结合的CAAC肽的三维结构表明,金属结合环具有足够的可塑性,能够容纳除线性双配位以外的配位模式。

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