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前列腺癌细胞中人ZIP9(SLC39A)锌转运蛋白的膜雄激素受体特征:雄激素特异性激活及抑制性G蛋白在锌和丝裂原活化蛋白激酶信号传导中的作用

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.

作者信息

Thomas Peter, Pang Yefei, Dong Jing

机构信息

University of Texas Marine Science Institute, 750 Channel View Drive, Port Aransas, TX, 78373, USA.

University of Texas Marine Science Institute, 750 Channel View Drive, Port Aransas, TX, 78373, USA.

出版信息

Mol Cell Endocrinol. 2017 May 15;447:23-34. doi: 10.1016/j.mce.2017.02.025. Epub 2017 Feb 20.

Abstract

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]-T binding corresponds to the position of ZIP9 on Western blots which suggests ZIP9 can bind [H]-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. Pre-treatment with GTPγS and pertussis toxin decreased plasma membrane [H]-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.

摘要

在转染ZIP9的PC-3细胞(PC3-ZIP9)中研究了新型人类膜雄激素受体(mAR)ZIP9(SLC39A9)的特性。配体印迹分析表明,质膜[H]-T结合与免疫印迹上ZIP9的位置相对应,这表明ZIP9可以单独结合[H]-T,无需蛋白质伴侣。孕酮拮抗睾酮作用,阻止锌增加、Erk磷酸化和细胞凋亡,进一步证明ZIP9被雄激素特异性激活。用GTPγS和百日咳毒素预处理可降低质膜[H]-T结合,并阻断睾酮诱导的Erk磷酸化和细胞内锌增加,表明ZIP9与抑制性G蛋白(Gi)偶联,该蛋白介导MAP激酶和锌信号传导。对表达ZIP9的细胞核和线粒体进行睾酮处理可降低其锌含量,表明ZIP9还通过从这些细胞内细胞器释放锌来调节游离锌。结果表明,ZIP9是一种特异性Gi偶联的mAR,在PC3-ZIP9细胞中介导睾酮诱导的MAP激酶和锌信号传导。

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