Neuroscience Discovery, Janssen Research and Development, San Diego, California (G.W., T.L., P.B., A.W.H.); and Department of Psychiatry, Erasmus MC, Rotterdam, The Netherlands (C.G.B., F.M.V., S.A.K.).
Neuroscience Discovery, Janssen Research and Development, San Diego, California (G.W., T.L., P.B., A.W.H.); and Department of Psychiatry, Erasmus MC, Rotterdam, The Netherlands (C.G.B., F.M.V., S.A.K.)
Mol Pharmacol. 2018 Sep;94(3):1092-1100. doi: 10.1124/mol.118.112557. Epub 2018 Jul 6.
Zinc homeostasis is a highly regulated process in mammalian cells that is critical for normal growth and development. Movement of zinc across cell compartments is controlled by two classes of transporters: Slc39a family members transport zinc into the cytosol from either the extracellular space or intracellular stores such as the endoplasmic reticulum (ER), whereas the SLC30A family mediates zinc efflux from the cytosol. In this study, we report that genetic ablation of SLC39A7 (ZIP7) results in decreased cytosolic zinc levels, increased ER zinc levels, impaired cell proliferation, and induction of ER stress. Confirmatory of impaired zinc transport as the causal mechanism, both the increased ER stress and impaired cell proliferation were rescued by increasing cytosolic zinc. Furthermore, using these robust cellular phenotypes, we implemented a small-molecule library screen with 2800 compounds and identified one small molecule capable of rescuing ER stress and cell proliferation in ZIP7-deficient cells in the low micromolar range.
锌稳态是哺乳动物细胞中高度调控的过程,对于正常的生长和发育至关重要。锌在细胞区室之间的移动由两类转运蛋白控制:Slc39a 家族成员将锌从细胞外空间或细胞内储存器(如内质网 [ER])转运到细胞质中,而 SLC30A 家族介导锌从细胞质中流出。在这项研究中,我们报告 SLC39A7(ZIP7)的基因缺失导致细胞质锌水平降低、ER 锌水平升高、细胞增殖受损和 ER 应激诱导。证实锌转运受损是因果机制,增加细胞质锌水平可挽救 ER 应激和细胞增殖受损。此外,利用这些强大的细胞表型,我们对 2800 种化合物进行了小分子文库筛选,并在低微摩尔范围内鉴定出一种能够挽救 ZIP7 缺陷细胞 ER 应激和细胞增殖的小分子。