Department of Medical Genetics, School of Medicine, Shahid Beheshti University of Medical Sciences, Tehran, Iran.
Faculty of Medicine, Birjand University of Medical Sciences, Birjand, Iran.
Pathol Res Pract. 2023 Mar;243:154339. doi: 10.1016/j.prp.2023.154339. Epub 2023 Jan 23.
Hippo pathway has been initially recognized as a regulatory mechanism for modulation of organ size in fruitfly. Subsequently, its involvement in the regulation of homeostasis and tumorigenesis has been identified. This pathway contains some tumor suppressor genes such as hippo (hpo) and warts (wts), as well as a number of oncogenic ones such as yorkie (yki). Recent studies have shown participation of Hippo pathway in the lung carcinogenesis. This pathway can affect lung cancer via different mechanisms. The interaction between some miRNAs and Hippo pathway is a possible mechanism for carcinogenic processes. Moreover, some other types of non-coding RNAs including PVT1, SFTA1P, NSCLCAT1 and circ_0067741 are implicated in this process. Besides, anti-cancer effects of gallic acid, icotinib hydrochloride, curcumin, ginsenoside Rg3, cryptotanshinone, nitidine chloride, cucurbitacin E, erlotinib, verteporfin, sophoridine, cisplatin and verteporfin in lung cancer are mediated through modulation of Hippo pathway. Here, we summarize the results of recent studies that investigated the role of Hippo signaling in the progression of lung cancer, the impact of non-coding RNAs on this pathway and the effects of anti-cancer agents on Hippo signaling in the context of lung cancer.
Hippo 通路最初被认为是调节果蝇器官大小的调控机制。随后,人们发现它参与了体内平衡和肿瘤发生的调节。该通路包含一些肿瘤抑制基因,如 hippo(hpo)和warts(wts),以及一些致癌基因,如 yorkie(yki)。最近的研究表明 Hippo 通路参与了肺癌的发生。该通路可以通过不同的机制影响肺癌。一些 miRNAs 与 Hippo 通路的相互作用是致癌过程的一种可能机制。此外,其他一些类型的非编码 RNA,包括 PVT1、SFTA1P、NSCLCAT1 和 circ_0067741,也与该过程有关。此外,没食子酸、盐酸伊立替康、姜黄素、人参皂苷 Rg3、 cryptotanshinone、氯化两面针碱、苦瓜素 E、厄洛替尼、维替泊芬、槐定碱、顺铂和维替泊芬在肺癌中的抗癌作用是通过调节 Hippo 通路来介导的。在这里,我们总结了最近的研究结果,这些研究调查了 Hippo 信号在肺癌进展中的作用、非编码 RNA 对该通路的影响以及抗癌药物在肺癌中对 Hippo 信号的影响。