Kolluru Venkatesh, Pal Deeksha, Papu John A M Sashi, Ankem Murali K, Freedman Jonathan H, Damodaran Chendil
Department of Urology, University of Louisville, KY, USA.
Department of Pharmacology and Toxicology, University of Louisville, KY, USA.
Cancer Lett. 2017 Nov 1;408:121-129. doi: 10.1016/j.canlet.2017.08.023. Epub 2017 Aug 24.
Chronic exposure to cadmium is known to be a risk factor for human prostate cancer. Despite over-whelming evidence of cadmium causing carcinogenicity in humans, the specific underlying molecular mechanisms that govern metal-induced cellular transformation remain unclear. Acute exposure (up to 72 h) to cadmium induces apoptosis in normal prostate epithelial cells (RWPE-1), while chronic exposure (>1 year) transforms these cells to a malignant phenotype (cadmium-transformed prostate epithelial cells; CTPE). Increased expression of autophagy-regulated genes; Plac8, LC3B and Lamp-1; in CTPE cells was associated with cadmium-induced transformation. Increased expression of Plac8, a regulator of autophagosome/autolysosome fusion, facilitates the pro-survival function of autophagy and upregulation of pAKT and NF-κβ, to allow CTPE to proliferate. Likewise, inhibition of Plac8 suppresses CTPE cell growth. Additionally, overexpression of Plac8 in RWPE-1 cells induces resistance to cadmium toxicity. Pharmacological inhibitors and an inducer of autophagy failed to affect Plac8 expression and CTPE cell viability, suggesting a unique role for Plac8 in cadmium-induced prostate epithelial cell transformation. These results support a role for Plac8 as an essential component in the cadmium-induced transformation of normal prostate epithelial cells to a cancerous state.
已知长期接触镉是人类前列腺癌的一个风险因素。尽管有大量证据表明镉会导致人类致癌,但控制金属诱导细胞转化的具体潜在分子机制仍不清楚。正常前列腺上皮细胞(RWPE-1)急性暴露(长达72小时)于镉会诱导细胞凋亡,而长期暴露(超过1年)则会将这些细胞转化为恶性表型(镉转化前列腺上皮细胞;CTPE)。自噬调节基因Plac8、LC3B和Lamp-1在CTPE细胞中的表达增加与镉诱导的转化有关。自噬体/自溶酶体融合调节因子Plac8的表达增加,促进了自噬的促生存功能以及pAKT和NF-κβ的上调,从而使CTPE得以增殖。同样,抑制Plac8可抑制CTPE细胞生长。此外,RWPE-1细胞中Plac8的过表达可诱导对镉毒性的抗性。自噬的药理学抑制剂和诱导剂未能影响Plac8的表达及CTPE细胞活力,这表明Plac8在镉诱导的前列腺上皮细胞转化中具有独特作用。这些结果支持了Plac8作为正常前列腺上皮细胞镉诱导转化为癌状态的关键成分所起的作用。