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ZNT1 和 MT 对 ZIPs 表达变化的复杂表达反应。

Sophisticated expression responses of ZNT1 and MT in response to changes in the expression of ZIPs.

机构信息

Division of Integrated Life Science, Graduate School of Biostudies, Kyoto University, Kyoto, 606-8502, Japan.

Department of Analytical & Bioinorganic Chemistry, Division of Analytical and Physical Sciences, Kyoto Pharmaceutical University, Kyoto, 607-8414, Japan.

出版信息

Sci Rep. 2022 May 5;12(1):7334. doi: 10.1038/s41598-022-10925-2.

Abstract

The zinc homeostatic proteins Zn transporter 1 (ZNT1) and metallothionein (MT) function in dampening increases in cytosolic zinc concentrations. Conversely, the expression of ZNT1 and MT is expected to be suppressed during decreases in cytosolic zinc concentrations. Thus, ZNT1/MT homeostatic responses are considered to be essential for maintaining cellular zinc homeostasis because cellular zinc concentrations are readily altered by changes in the expression of several Zrt-/Irt-like proteins (ZIPs) under both physiological and pathological conditions. However, this notion remains to be tested experimentally. Here, we investigated the aforementioned homeostatic process by analyzing ZNT1 and MT protein expression in response to ZIP expression. Overexpression of cell-surface-localized ZIPs, such as ZIP4 and ZIP5, increased the cellular zinc content, which caused an increase in the expression of cell-surface ZNT1 and cytosolic MT in the absence of zinc supplementation in the culture medium. By contrast, elimination of the overexpressed ZIP4 and ZIP5 resulted in decreased expression of ZNT1 but not MT, which suggests that differential regulation of ZNT1 and MT expression at the protein level underlies the homeostatic responses necessary for zinc metabolism under certain conditions. Moreover, increased expression of apically localized ZIP4 facilitated basolateral ZNT1 expression in polarized cells, which indicates that such a coordinated expression mechanism is crucial for vectorial transcellular transport. Our results provide novel insights into the physiological maintenance of cellular zinc homeostasis in response to alterations in cytosolic zinc concentrations caused by changes in the expression of ZIPs.

摘要

锌稳态蛋白 Zn 转运体 1(ZNT1)和金属硫蛋白(MT)的功能是抑制细胞质锌浓度的增加。相反,当细胞质锌浓度降低时,ZNT1 和 MT 的表达预计会受到抑制。因此,ZNT1/MT 稳态反应被认为对于维持细胞内锌稳态至关重要,因为在生理和病理条件下,几种 Zrt-/Irt 样蛋白(ZIPs)的表达变化很容易改变细胞内锌浓度。然而,这一概念仍有待实验验证。在这里,我们通过分析 ZIP 表达对 ZNT1 和 MT 蛋白表达的响应来研究上述稳态过程。细胞表面定位的 ZIPs(如 ZIP4 和 ZIP5)的过表达会增加细胞内的锌含量,从而导致在培养基中不补充锌的情况下,细胞表面 ZNT1 和细胞质 MT 的表达增加。相比之下,消除过表达的 ZIP4 和 ZIP5 会导致 ZNT1 表达减少,但 MT 表达不受影响,这表明在某些条件下,ZNT1 和 MT 表达的蛋白水平的差异调节是锌代谢稳态反应所必需的。此外,顶端定位的 ZIP4 表达增加促进了极化细胞中基底外侧的 ZNT1 表达,这表明这种协调的表达机制对于载体跨细胞转运至关重要。我们的研究结果为 ZIPs 表达变化引起的细胞质锌浓度改变时细胞内锌稳态的生理维持提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8c56/9072671/e97a05ec6ca4/41598_2022_10925_Fig1_HTML.jpg

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