Kochańczyk Tomasz, Drozd Agnieszka, Krężel Artur
Laboratory of Chemical Biology, Faculty of Biotechnology, University of Wrocław, ul. Joliot-Curie 14a, 50-383 Wrocław, Poland.
Metallomics. 2015 Feb;7(2):244-57. doi: 10.1039/c4mt00094c.
Zinc proteins are an integral component of the proteome of all domains of life. Zn(II), one of the most widespread transition elements, serves multiple functions in proteins, such as a catalytic co-factor, a structural center and a signaling component. The mechanism by which proteins associate with and dissociate from Zn(II) and the factors that modulate their affinity and stability remain incompletely understood. In this article, we aim to address how zinc binding sites present in proteins differ in their architecture and how their structural arrangement is associated with protein function, thermodynamic and kinetic stability, reactivity, as well as zinc-dependent regulation. Here, we emphasize that the concentration-dependent functionality of the interprotein zinc binding site may serve as another factor regulating the relationship between cellular Zn(II) availability and protein function.
锌蛋白是所有生命域蛋白质组的一个组成部分。锌(II)是分布最广泛的过渡元素之一,在蛋白质中发挥多种功能,如催化辅因子、结构中心和信号成分。蛋白质与锌(II)结合和解离的机制以及调节其亲和力和稳定性的因素仍未完全了解。在本文中,我们旨在探讨蛋白质中存在的锌结合位点在结构上有何不同,以及它们的结构排列如何与蛋白质功能、热力学和动力学稳定性、反应性以及锌依赖性调节相关联。在此,我们强调蛋白质间锌结合位点的浓度依赖性功能可能是调节细胞锌(II)可用性与蛋白质功能之间关系的另一个因素。