4.6 Article

Zinc transporter 1 (ZNT1) expression on the cell surface is elaborately controlled by cellular zinc levels

期刊

JOURNAL OF BIOLOGICAL CHEMISTRY
卷 294, 期 43, 页码 15686-15697

出版社

AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
DOI: 10.1074/jbc.RA119.010227

关键词

zinc; transporter; plasma membrane; endocytosis; glycosylation; metal homeostasis; degradation; metallothionein; ZNT

资金

  1. Ministry of Education, Culture, Sports, Science, and Technology, Japan [19H05768]
  2. Japan Society for the Promotion of Science [15H04501, 19H02883]
  3. Fuji Foundation for Protein Research
  4. Ito Foundation
  5. Sugiyama Chemical & Industrial Laboratory
  6. Kao Melanin Workshop
  7. Cosmetology Research Foundation
  8. [17J09455]
  9. Grants-in-Aid for Scientific Research [19H02883, 19H05768, 15H04501] Funding Source: KAKEN

向作者/读者索取更多资源

Zinc transporter 1 (ZNT1) is the only zinc transporter predominantly located on the plasma membrane, where it plays a pivotal role exporting cytosolic zinc to the extracellular space. Numerous studies have focused on the physiological and pathological functions of ZNT1. However, its biochemical features remain poorly understood. Here, we investigated the regulation of ZNT1 expression in human and vertebrate cells, and found that ZNT1 expression is posttranslationally regulated by cellular zinc status. We observed that under zinc-sufficient conditions, ZNT1 accumulates on the plasma membrane, consistent with its zinc efflux function. In contrast, under zinc-deficient conditions, ZNT1 molecules on the plasma membrane were endocytosed and degraded through both the proteasomal and lysosomal pathways. Zinc-responsive ZNT1 expression corresponded with that of metallothionein, supporting the idea that ZNT1 and metallothionein cooperatively regulate cellular zinc homeostasis. ZNT1 is N-glycosylated on Asn(299) in the extracellular loop between transmembrane domains V and VI, and this appears to be involved in the regulation of ZNT1 stability, as nonglycosylated ZNT1 is more stable. However, this posttranslational modification had no effect on ZNT1's ability to confer cellular resistance against high zinc levels or its subcellular localization. Our results provide molecular insights into ZNT1-mediated regulation of cellular zinc homeostasis, and indicate that the control of cellular and systemic zinc homeostasis via dynamic regulation of ZNT1 expression is more sophisticated than previously thought.

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