4.8 Article

Zn-regulated GTPase metalloprotein activator 1 modulates vertebrate zinc homeostasis

期刊

CELL
卷 185, 期 12, 页码 2148-+

出版社

CELL PRESS
DOI: 10.1016/j.cell.2022.04.011

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资金

  1. NIH [R01AI150701, R01AI101171, R35GM118157, T32ES007028, F32AI157215, F32GM142246, F32HL144081, R01AI145992, CA68485, DK20593, DK58404, DK59637, EY08126]
  2. Ernest W. Goodpasture Chair in Pathology
  3. National Cancer Institute (NCI) Vanderbilt-Ingram Cancer Center Support Grant [P30CA068485]
  4. American Heart Association [18POST33990262, 18POST34030426]
  5. Cancer Center Support Grant [CA68485]
  6. Vanderbilt Diabetes Research and Training Center [DK020593]
  7. Center for Stem Cell Biology
  8. Vanderbilt Ingram Cancer Center [P30 CA68485]
  9. Vanderbilt Digestive Disease Research Center [DK058404]

向作者/读者索取更多资源

This study reveals the existence of a conserved COG0523 protein family in vertebrates and assigns them an important role in regulating cellular zinc homeostasis.
Zinc (Zn) is an essential micronutrient and cofactor for up to 10% of proteins in living organisms. During Zn limitation, specialized enzymes called metallochaperones are predicted to allocate Zn to specific metalloproteins. This function has been putatively assigned to G3E GTPase COG0523 proteins, yet no Zn metallochaperone has been experimentally identified in any organism. Here, we functionally characterize a family of COG0523 proteins that is conserved across vertebrates. We identify Zn metalloprotease methionine amino peptidase 1 (METAP1) as a COG0523 client, leading to the redesignation of this group of COG0523 proteins as the Zn-regulated GTPase metalloprotein activator (ZNG1) family. Using biochemical, structural, genetic, and pharmacological approaches across evolutionarily divergent models, including zebrafish and mice, we demonstrate a critical role for ZNG1 proteins in regulating cellular Zn homeostasis. Collectively, these data reveal the existence of a family of Zn metallochaperones and assign ZNG1 an important role for intracellular Zn trafficking.

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