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癌症相关核糖体蛋白突变导致的核糖体特化:取得的进展与待解决的问题

Ribosome specialization by cancer-associated ribosomal protein mutations: progress made and open questions.

作者信息

Caruso Marino, De Keersmaecker Kim

机构信息

Laboratory for Disease Mechanisms in Cancer, Department of Oncology, KU Leuven, Leuven 3000, Belgium.

Laboratory for Disease Mechanisms in Cancer, Leuven Cancer Institute (LKI), Leuven 3000, Belgium.

出版信息

Philos Trans R Soc Lond B Biol Sci. 2025 Mar 6;380(1921):20230380. doi: 10.1098/rstb.2023.0380.

DOI:10.1098/rstb.2023.0380
PMID:40045783
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11883432/
Abstract

Congenital mutations in ribosomal proteins (RPs) cause Diamond-Blackfan anaemia (DBA) syndrome. Whereas DBA patients suffer from anaemia and disease symptoms owing to a lack of cell proliferation (hypo-proliferation) early in life, they have a significantly elevated risk of developing cancer (a disease of hyper-proliferation) at a later age. The association between ribosome defects and cancer is further underscored by animal models in which heterozygous RP loss promotes tumourigenesis, as well as by a variety of somatic RP mutations that have been described in haematological and solid malignancies. As discussed in this article, we have gained deeper insight into molecular mechanisms by which RP mutations can be associated with hypo- followed by hyper-proliferation phenotypes. Factors such as oxidative stress and DNA damage, onco-ribosome specialization with hyper-translation of oncogenes and altered extra-ribosomal functions seem essential. However, many questions still remain and more research is needed to explore to what extent different cancer-associated RP mutations can structurally and functionally specialize ribosomes into onco-ribosomes, and what opportunities this can provide to develop innovative cancer therapies.This article is part of the discussion meeting issue 'Ribosome diversity and its impact on protein synthesis, development and disease'.

摘要

核糖体蛋白(RP)的先天性突变会导致钻石-黑范贫血(DBA)综合征。DBA患者由于生命早期细胞增殖不足(增殖低下)而患有贫血和疾病症状,但他们在晚年患癌症(一种增殖过度的疾病)的风险显著升高。核糖体缺陷与癌症之间的关联在动物模型中得到进一步强调,在这些模型中,杂合性RP缺失会促进肿瘤发生,同时在血液系统恶性肿瘤和实体恶性肿瘤中也发现了多种体细胞RP突变。如本文所讨论的,我们对RP突变与增殖低下随后增殖过度表型相关的分子机制有了更深入的了解。氧化应激和DNA损伤、癌基因超翻译导致的癌核糖体特化以及核糖体以外功能的改变等因素似乎至关重要。然而,许多问题仍然存在,需要更多的研究来探索不同的癌症相关RP突变在多大程度上能够在结构和功能上使核糖体特化为癌核糖体,以及这能为开发创新的癌症治疗方法提供哪些机会。本文是讨论会议议题“核糖体多样性及其对蛋白质合成、发育和疾病的影响”的一部分。