The change of intracellular zinc distribution after strong acid challenge.

International journal of physiology, pathophysiology and pharmacology Pub Date : 2021-06-15 eCollection Date: 2021-01-01
Yuli Hu, Yang V Li
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Abstract

Zinc (Zn2+) is stored in the nucleus, endoplasmic reticulum (ER), Golgi apparatus, mitochondria, lysosomes, and zinc-binding proteins. The acidity of the microenvironment affects the binding between zinc and proteins in which zinc become free or loosely bound. In this study, when cells were treated with an acidic medium, we started seeing free zinc 'hot spots' or zincosomes where we found bright zinc fluorescence. The rising free zinc quickly across whole cells with both intensity and distribution were pH-dependent. Interestingly, the nucleus was more sensitive to acidic treatment as the increase of nuclear zinc was faster and higher than the increase of cytosolic zinc. In addition, we re-cultured strong acid-challenged cells in a normal medium. Comparing to the control, these cells exhibited multiple zinc 'hot spots' beside the nucleus, suggesting that free zinc became more extensively distributed. To investigate further the function of zinc in cell shaping and morphological changes, we categorized strong acid-challenged cells into different shapes and found that the proportion of each cell shape had changed after the acid challenge. These acid-induced changes of the cell shape percentage were partially reversed by the reduction of zinc, suggesting that zinc participated in directing the cell shapes and morphologies during cell growth. Our findings reveal that acidic pH affects the dynamics of cellular zinc by making zinc more accessible to cellular compartments and zinc-binding proteins, which provided new insights into understanding the cellular behavior and the function of zinc in it.

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强酸挑战后细胞内锌分布的变化
锌(Zn2+)储存在细胞核、内质网(ER)、高尔基体、线粒体、溶酶体和锌结合蛋白中。微环境的酸度会影响锌与蛋白质之间的结合,锌会在其中游离或松散地结合。在这项研究中,当细胞用酸性培养基处理时,我们开始看到游离锌 "热点 "或锌小体,在这些地方我们发现了明亮的锌荧光。游离锌在整个细胞中迅速上升,其强度和分布都与酸碱度有关。有趣的是,细胞核对酸性处理更敏感,因为细胞核锌的增加比细胞膜锌的增加更快、更高。此外,我们在正常培养基中重新培养了强酸挑战细胞。与对照组相比,这些细胞在核旁出现了多个锌 "热点",表明游离锌的分布更加广泛。为了进一步研究锌在细胞塑形和形态变化中的作用,我们将强酸挑战细胞分为不同形状,发现酸挑战后每种形状细胞的比例都发生了变化。这些酸诱导的细胞形状比例变化在锌的减少下被部分逆转,这表明锌在细胞生长过程中参与了细胞形状和形态的指导。我们的研究结果表明,酸性pH值会影响细胞锌的动态变化,使锌更容易进入细胞区室和锌结合蛋白,这为了解细胞行为和锌在其中的功能提供了新的视角。
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