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癌症中的核糖体特化:聚焦核糖体蛋白

Ribosome specialization in cancer: a spotlight on ribosomal proteins.

作者信息

Ramalho Sofia, Dopler Anna, Faller William James

机构信息

Division of Oncogenomics, The Netherlands Cancer Institute, Amsterdam, Netherlands.

出版信息

NAR Cancer. 2024 Jul 9;6(3):zcae029. doi: 10.1093/narcan/zcae029. eCollection 2024 Sep.

Abstract

In the past few decades, our view of ribosomes has changed substantially. Rather than passive machines without significant variability, it is now acknowledged that they are heterogeneous, and have direct regulatory capacity. This 'ribosome heterogeneity' comes in many flavors, including in both the RNA and protein components of ribosomes, so there are many paths through which ribosome specialization could arise. It is easy to imagine that specialized ribosomes could have wide physiological roles, through the translation of specific mRNA populations, and there is now evidence for this in several contexts. Translation is highly dysregulated in cancer, needed to support oncogenic phenotypes and to overcome cellular stress. However, the role of ribosome specialization in this is not clear. In this review we focus on specialized ribosomes in cancer. Specifically, we assess the impact that post-translational modifications and differential ribosome incorporation of ribosomal proteins (RPs) have in this disease. We focus on studies that have shown a ribosome-mediated change in translation of specific mRNA populations, and hypothesize how such a process could be driving other phenotypes. We review the impact of RP-mediated heterogeneity in both intrinsic and extrinsic oncogenic processes, and consider how this knowledge could be leveraged to benefit patients.

摘要

在过去几十年里,我们对核糖体的看法发生了重大变化。核糖体不再被视为没有显著变异性的被动机器,现在人们认识到它们是异质性的,并且具有直接的调控能力。这种“核糖体异质性”有多种形式,包括核糖体的RNA和蛋白质成分,因此核糖体专业化可能通过多种途径产生。不难想象,通过翻译特定的mRNA群体,专业化的核糖体可能具有广泛的生理作用,目前在几种情况下都有相关证据。在癌症中,翻译过程高度失调,这是支持致癌表型和克服细胞应激所必需的。然而,核糖体专业化在其中的作用尚不清楚。在这篇综述中,我们聚焦于癌症中的专业化核糖体。具体而言,我们评估翻译后修饰和核糖体蛋白(RP)的差异核糖体掺入对这种疾病的影响。我们关注那些显示核糖体介导特定mRNA群体翻译发生变化的研究,并推测这样一个过程如何驱动其他表型。我们综述了RP介导的异质性在内在和外在致癌过程中的影响,并考虑如何利用这些知识造福患者。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5890/11231584/e0c7470a31b5/zcae029fig1.jpg

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