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有毒二价阳离子对收缩蛋白的直接影响及其对心脏的影响:揭示功能障碍的机制。

Direct Effects of Toxic Divalent Cations on Contractile Proteins with Implications for the Heart: Unraveling Mechanisms of Dysfunction.

机构信息

Institute of Immunology and Physiology of the Ural Branch of the Russian Academy of Sciences, 620049 Ekaterinburg, Russia.

出版信息

Int J Mol Sci. 2023 Jun 24;24(13):10579. doi: 10.3390/ijms241310579.

Abstract

The binding of calcium and magnesium ions to proteins is crucial for regulating heart contraction. However, other divalent cations, including xenobiotics, can accumulate in the myocardium and enter cardiomyocytes, where they can bind to proteins. In this article, we summarized the impact of these cations on myosin ATPase activity and EF-hand proteins, with special attention given to toxic cations. Optimal binding to EF-hand proteins occurs at an ionic radius close to that of Mg and Ca. In skeletal Troponin C, Cd, Sr, Pb, Mn, Co, Ni, Ba, Mg, Zn, and trivalent lanthanides can substitute for Ca. As myosin ATPase is not a specific MgATPase, Ca, Fe, Mn, Ni, and Sr could support myosin ATPase activity. On the other hand, Zn and Cu significantly inhibit ATPase activity. The affinity to various divalent cations depends on certain proteins or their isoforms and can alter with amino acid substitution and post-translational modification. Cardiac EF-hand proteins and the myosin ATP-binding pocket are potential molecular targets for toxic cations, which could significantly alter the mechanical characteristics of the heart muscle at the molecular level.

摘要

钙和镁离子与蛋白质的结合对于调节心脏收缩至关重要。然而,其他二价阳离子,包括外源性物质,可在心肌中蓄积并进入心肌细胞,与蛋白质结合。本文总结了这些阳离子对肌球蛋白 ATP 酶活性和 EF 手蛋白的影响,特别关注了毒性阳离子。EF 手蛋白的最佳结合发生在离子半径接近 Mg 和 Ca 的位置。在骨骼肌肌钙蛋白 C 中,Cd、Sr、Pb、Mn、Co、Ni、Ba、Mg、Zn 和三价镧系元素可以替代 Ca。由于肌球蛋白 ATP 酶不是特异性的 MgATP 酶,因此 Ca、Fe、Mn、Ni 和 Sr 可以支持肌球蛋白 ATP 酶的活性。另一方面,Zn 和 Cu 显著抑制 ATP 酶的活性。对各种二价阳离子的亲和力取决于某些蛋白质或其同工型,并且可以随着氨基酸取代和翻译后修饰而改变。心脏 EF 手蛋白和肌球蛋白 ATP 结合口袋是毒性阳离子的潜在分子靶标,可在分子水平上显著改变心肌的力学特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e78d/10341779/f53eb9ffaa76/ijms-24-10579-g001.jpg

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