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锌结合位点的结构适应性:部分负载、完全负载和重金属负载状态下的不同结构

Structural adaptability of zinc binding sites: different structures in partially, fully, and heavy-metal loaded states.

作者信息

Heinz Uwe, Hemmingsen Lars, Kiefer Martin, Adolph Hans-Werner

机构信息

Department of Basic Sciences and Environment, Faculty of Life Sciences University of Copenhagen, Thorvaldsensvej 40, 1871 Frederiksberg C, Denmark.

出版信息

Chemistry. 2009 Jul 27;15(30):7350-8. doi: 10.1002/chem.200900870.

Abstract

The present study demonstrates that both the nature (Zn(II), Cd(II) or Hg(II)) and supply of metal ions determine whether zinc fingers fold into the well-known, fully loaded structures or alternatively populate a variety of structural states under substoichiometric conditions. Metal-bridged species are observed by perturbed angular correlation (PAC), EXAFS, UV spectroscopy, and stopped-flow kinetics. Transitions between structural states as adaptive reactions to changed metal-ion supply might represent intelligent system changes in zinc homeostasis, trafficking and signalling, and reflect features of heavy-metal toxicity at the molecular level. Because the zinc fingers exist in structural states that are different from the metal-free and fully loaded species, the prevailing view on metal-mediated molecular regulation in terms of "on and off control" might be oversimplified.

摘要

本研究表明,金属离子的性质(锌(II)、镉(II)或汞(II))及其供应情况决定了锌指结构是折叠成众所周知的、完全负载的结构,还是在亚化学计量条件下形成各种结构状态。通过扰动角关联(PAC)、扩展X射线吸收精细结构(EXAFS)、紫外光谱和停流动力学观察到金属桥连物种。作为对金属离子供应变化的适应性反应,结构状态之间的转变可能代表锌稳态、运输和信号传导中的智能系统变化,并反映分子水平上重金属毒性的特征。由于锌指结构所处的结构状态不同于无金属和完全负载的物种,因此关于金属介导的分子调控的“开和关控制”的主流观点可能过于简单化。

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