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CDK5:原癌基因还是抑癌基因:位置位置位置。

CDK5: an oncogene or an anti-oncogene: location location location.

机构信息

Department of Chemistry, Purdue University Center for Cancer Research, 560 Oval Drive, West Lafayette, IN, 47907, USA.

School of Biotechnology, Kalinga Institute of Industrial Technology, Bhubaneswar, 751024, India.

出版信息

Mol Cancer. 2023 Nov 23;22(1):186. doi: 10.1186/s12943-023-01895-8.

Abstract

Recent studies have uncovered various physiological functions of CDK5 in many nonneuronal tissues. Upregulation of CDK5 and/or its activator p35 in neurons promotes healthy neuronal functions, but their overexpression in nonneuronal tissues is causally linked to cancer of many origins. This review focuses on the molecular mechanisms by which CDK5 recruits diverse tissue-specific substrates to elicit distinct phenotypes in sixteen different human cancers. The emerging theme suggests that CDK5's role as an oncogene or anti-oncogene depends upon its subcellular localization. CDK5 mostly acts as an oncogene, but in gastric cancer, it is a tumor suppressor due to its unique nuclear localization. This indicates that CDK5's access to certain nuclear substrates converts it into an anti-oncogenic kinase. While acting as a bonafide oncogene, CDK5 also activates a few cancer-suppressive pathways in some cancers, presumably due to the mislocalization of nuclear substrates in the cytoplasm. Therefore, directing CDK5 to the nucleus or exporting tumor-suppressive nuclear substrates to the cytoplasm may be promising approaches to combat CDK5-induced oncogenicity, analogous to neurotoxicity triggered by nuclear CDK5. Furthermore, while p35 overexpression is oncogenic, hyperactivation of CDK5 by inducing p25 formation results in apoptosis, which could be exploited to selectively kill cancer cells by dialing up CDK5 activity, instead of inhibiting it. CDK5 thus acts as a molecular rheostat, with different activity levels eliciting distinct functional outcomes. Finally, as CDK5's role is defined by its substrates, targeting them individually or in conjunction with CDK5 should create potentially valuable new clinical opportunities.

摘要

最近的研究揭示了 CDK5 在许多非神经元组织中的多种生理功能。神经元中 CDK5 和/或其激活剂 p35 的上调促进了健康的神经元功能,但它们在非神经元组织中的过度表达与许多起源的癌症有关。本综述重点介绍了 CDK5 招募不同组织特异性底物的分子机制,以在十六种不同的人类癌症中引发不同的表型。新兴主题表明,CDK5 作为癌基因或抑癌基因的作用取决于其亚细胞定位。CDK5 主要作为癌基因起作用,但在胃癌中,由于其独特的核定位,它是一种肿瘤抑制因子。这表明 CDK5 对某些核底物的访问将其转化为一种抗癌激酶。CDK5 作为真正的癌基因起作用的同时,在一些癌症中也激活了一些肿瘤抑制途径,可能是由于核底物在细胞质中的错误定位。因此,将 CDK5 导向核内或将肿瘤抑制性核内底物输出到细胞质中可能是对抗 CDK5 诱导的致癌性的有前途的方法,类似于核 CDK5 触发的神经毒性。此外,虽然 p35 过表达是致癌的,但通过诱导 p25 形成使 CDK5 过度激活会导致细胞凋亡,这可以通过上调 CDK5 活性来选择性杀死癌细胞,而不是抑制它来实现。因此,CDK5 作为分子变阻器起作用,不同的活性水平引发不同的功能结果。最后,由于 CDK5 的作用取决于其底物,针对它们个体或与 CDK5 一起靶向应该为潜在有价值的新临床机会创造条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/325a/10666462/7843734c0077/12943_2023_1895_Fig1_HTML.jpg

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