Zinc induces mitochondria apoptogenesis in prostate cells.

Molecular urology Pub Date : 2000-01-01
P Feng, J Y Liang, T L Li, Z X Guan, J Zou, R Franklin, L C Costello
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Abstract

Background and purpose: Prostate secretory epithelial cells have the unique function and capability of accumulating extremely high intracellular levels of zinc. One of the effects of this accumulation is inhibition of cell growth due, in part, to an increase in apoptosis. The present studies were conducted to determine if this zinc-induced apoptosis involves stimulation of mitochondrial apoptogenesis.

Materials and methods: The PC-3 a human malignant prostate cell line, which is zinc accumulating, was exposed to medium supplemented with physiologic levels of zinc.

Results: By 24 h, zinc treatment resulted in the translocation of cytochrome c from the mitochondria to the cytosol, the activation of caspase-9 and caspase-3, and eventually, the cleavage of nuclear poly(ADP)-ribose polymerase (PARP). Under similar conditions, exposure of freshly prepared rat ventral prostate cells (which are also zinc accumulating) resulted in increased apoptosis following translocation of cyochrome c and activation of caspases-9 and 3. The human prostate PZ-HPV-7 cells, which do not accumulate zinc, did not exhibit any apoptotic effect from zinc treatment.

Conclusion: The accumulation of high intracellular levels of zinc by prostate cells induces mitochondrial apoptogenesis. This represents a newly identified physiological effect of zinc in the regulation of prostate cell growth.

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锌诱导前列腺细胞线粒体凋亡。
背景与目的:前列腺分泌上皮细胞具有独特的功能和能力,可在细胞内积累极高水平的锌。这种积累的影响之一是抑制细胞生长,部分原因是细胞凋亡的增加。目前的研究是为了确定这种锌诱导的细胞凋亡是否涉及线粒体凋亡的刺激。材料与方法:将具有锌积累性的人恶性前列腺细胞株PC-3置于补充生理水平锌的培养基中。结果:24 h时,锌处理导致细胞色素c从线粒体转移到细胞质,激活caspase-9和caspase-3,最终导致核多聚(ADP)-核糖聚合酶(PARP)裂解。在类似的条件下,暴露于新鲜制备的大鼠腹侧前列腺细胞(也有锌积累)导致细胞色素c易位和caspase -9和3激活后细胞凋亡增加。人前列腺PZ-HPV-7细胞不积累锌,锌处理后未表现出任何凋亡效应。结论:前列腺细胞积累高水平锌可诱导线粒体凋亡。这代表了锌在前列腺细胞生长调节中的一种新发现的生理作用。
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Farewell and Thank You Neural computation in urology: an orientation. Genetic adaptive neural network to predict biochemical failure after radical prostatectomy: a multi-institutional study. Predictive modeling techniques in prostate cancer. Application of Cre-loxP system to the urinary tract and cancer gene therapy.
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