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荜茇宁及其类似物下调肾细胞癌中c-Met的表达。

Piperlongumine and its analogs down-regulate expression of c-Met in renal cell carcinoma.

作者信息

Golovine Konstantin, Makhov Peter, Naito Sei, Raiyani Henish, Tomaszewski Jeffrey, Mehrazin Reza, Tulin Alexei, Kutikov Alexander, Uzzo Robert G, Kolenko Vladimir M

机构信息

a Cancer Biology Program; Fox Chase Cancer Center ; Philadelphia , PA , USA.

出版信息

Cancer Biol Ther. 2015;16(5):743-9. doi: 10.1080/15384047.2015.1026511.

Abstract

The c-Met protein, a transmembrane receptor tyrosine kinase, is the product of a proto-oncogene. Its only known ligand, hepatocyte growth factor (HGF), regulates cell growth, motility, migration, invasion, proliferation, and angiogenesis. The aberrant expression of c-Met is often associated with poor prognosis in multiple cancers, including renal cell carcinoma (RCC). Silencing or inactivation of c-Met leads to decreased viability of cancer cells, thereby making ablation of c-Met signaling an attractive concept for developing novel strategies for the treatment of renal tumors. Naturally-occurring products or substances are the most consistent source of drug development. As such, we investigated the functional impact of piperlongumine (PL), a naturally occurring alkaloid present in the Long pepper (Piper longum) on c-Met expression in RCC cells and demonstrated that PL and its analogs rapidly reduce c-Met protein and RNA levels in RCC cells via ROS-dependent mechanism. PL-mediated c-Met depletion coincided with the inhibition of downstream c-Met signaling; namely Erk/MAPK, STAT3, NF-κB and Akt/mTOR. As such, PL and PL analogs hold promise as potential therapeutic agents for the treatment of metastatic RCC and the prevention of postoperative RCC recurrence.

摘要

c-Met蛋白是一种跨膜受体酪氨酸激酶,是原癌基因的产物。其唯一已知的配体肝细胞生长因子(HGF)可调节细胞生长、运动、迁移、侵袭、增殖和血管生成。c-Met的异常表达通常与包括肾细胞癌(RCC)在内的多种癌症的不良预后相关。c-Met的沉默或失活会导致癌细胞活力下降,因此消除c-Met信号传导成为开发肾肿瘤治疗新策略的一个有吸引力的概念。天然存在的产物或物质是药物开发最稳定的来源。因此,我们研究了长胡椒(Piper longum)中存在的天然生物碱胡椒碱(PL)对RCC细胞中c-Met表达的功能影响,并证明PL及其类似物通过依赖ROS的机制迅速降低RCC细胞中c-Met蛋白和RNA水平。PL介导的c-Met耗竭与下游c-Met信号传导的抑制同时发生;即Erk/MAPK、STAT3、NF-κB和Akt/mTOR。因此,PL和PL类似物有望成为治疗转移性RCC和预防RCC术后复发的潜在治疗药物。

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