4.5 Article

Membrane androgen receptor characteristics of human ZIP9 (SLC39A) zinc transporter in prostate cancer cells: Androgen-specific activation and involvement of an inhibitory G protein in zinc and MAP kinase signaling

Journal

MOLECULAR AND CELLULAR ENDOCRINOLOGY
Volume 447, Issue C, Pages 23-34

Publisher

ELSEVIER IRELAND LTD
DOI: 10.1016/j.mce.2017.02.025

Keywords

Membrane androgen receptor; ZIP9; Zinc transporter; Inhibitory G protein; Apoptosis; Zinc signaling; MAP kinase; PC-3 prostate cancer cells

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Characteristics of novel human membrane androgen receptor (mAR), ZIP9 (SLC39A9), were investigated in ZIP9-transfected PC-3 cells (PC3-ZIP9). Ligand blot analysis showed plasma membrane [H-3]-T binding corresponds to the position of ZIP9 on Western blots which suggests ZIP9 can bind [H-3]-T alone, without a protein partner. Progesterone antagonized testosterone actions, blocking increases in zinc, Erk phosphorylation and apoptosis, further evidence that ZIP9 is specifically activated by androgens. Pretreatment with GTP gamma S and pertussis toxin decreased plasma membrane [H-3]-T binding and blocked testosterone-induced increases in Erk phosphorylation and intracellular zinc, indicating ZIP9 is coupled to an inhibitory G protein (Gi) that mediates both MAP kinase and zinc signaling. Testosterone treatment of nuclei and mitochondria which express ZIP9 decreased their zinc contents, suggesting ZIP9 also regulates free zinc through releasing it from these intracellular organelles. The results show ZIP9 is a specific Gi coupled-mAR mediating testosterone-induced MAP kinase and zinc signaling in PC3-ZIP9 cells. (C) 2017 Elsevier B.V. All rights reserved.

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