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首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Model peptides based on the binding loop of the copper metallochaperone Atx1: Selectivity of the consensus sequence MxCxxC for metal ions Hg(II), Cu(I), Cd(II), Pb(II), and Zn(II)
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Model peptides based on the binding loop of the copper metallochaperone Atx1: Selectivity of the consensus sequence MxCxxC for metal ions Hg(II), Cu(I), Cd(II), Pb(II), and Zn(II)

机译:基于铜金属伴侣蛋白Atx1结合环的模型肽:共有序列MxCxxC对金属离子Hg(II),Cu(I),Cd(II),Pb(II)和Zn(II)的选择性

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摘要

The amino acid sequence MxCxxC is conserved in many soft-metal transporters that are involved in the control of the intracellular concentration of ions such as Cu(I), Hg(II), Zn(II), Cd(II), and Pb(II). A relevant task is thus the selectivity of the motif MxCxxC for these different metal ions. To analyze the coordination properties and the selectivity of this consensus sequence, we have designed two model peptides that mimic the binding loop of the copper chaperone Atx1: the cyclic peptide P-C c(GMTCSGCSRP) and its linear analogue P-L(Ac-MTCSGCSRPG-NH2). By using complementary analytical and spectroscopic methods, we have demonstrated that 1: 1 complexes are obtained with Cu(I) and Hg(II), whereas 1:1 and 1:2 (M:P) species are successively formed with Zn(II), Cd(II), and Pb(II). The complexation properties of the cyclic and linear peptides are very close, but the cyclic compound provides systematically higher affinity constants than its unstructured analogue. The introduction of a xPGx motif that forms a type II beta turn in P-C induces a preorganization of the binding loop of the peptide that enhances the stabilities of the complexes (up to 2 orders of magnitude difference for the Hg complexes). The affinity constants were measured in the absence of any reducing agent that would compete with the peptides and range in the order Hg(II) > Cu(I) Cd(II) > Pb(II) > Zn(II). This sequence is thus highly selective for Cu( I) compared to the essential ion Zn(II) that could compete in vivo or compared to the toxic ions Cd(II) and Pb( II). Only Hg( II) may be an efficient competitor of Cu(I) for binding to the MxCxxC motif in metalloproteins.
机译:氨基酸序列MxCxxC在许多软金属转运蛋白中都是保守的,这些转运蛋白与细胞内离子浓度的控制有关,例如Cu(I),Hg(II),Zn(II),Cd(II)和Pb( II)。因此,相关任务是基序MxCxxC对这些不同金属离子的选择性。为了分析该共有序列的协调特性和选择性,我们设计了两种模拟铜伴侣蛋白Atx1结合环的模型肽:环肽PC c(GMTCSGCSRP)及其线性类似物PL(Ac-MTCSGCSRPG-NH2) 。通过使用互补的分析和光谱方法,我们证明了与Cu(I)和Hg(II)形成1:1配合物,而与Zn(II)依次形成1:1和1:2(M:P)物种),Cd(II)和Pb(II)。环状和线性肽的络合性质非常接近,但是环状化合物比其非结构化类似物系统地提供更高的亲和常数。在PG中形成II型β转角的xPGx基序的引入诱导了肽结合环的预组织,该结合环增强了复合物的稳定性(Hg复合物的差异高达2个数量级)。在不存在任何会与肽竞争的还原剂的情况下测量亲和常数,其顺序为Hg(II)> Cu(I) Cd(II)> Pb(II)> Zn(II)。因此,与可在体内竞争的必需离子Zn(II)或与毒性离子Cd(II)和Pb(II)相比,此序列对Cu(I)的选择性高。只有Hg(II)可能是Cu(I)与金属蛋白中MxCxxC基序结合的有效竞争者。

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