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核糖体病:核糖体功能障碍的人类疾病。

Ribosomopathies: human disorders of ribosome dysfunction.

机构信息

Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA, USA.

出版信息

Blood. 2010 Apr 22;115(16):3196-205. doi: 10.1182/blood-2009-10-178129. Epub 2010 Mar 1.

Abstract

Ribosomopathies compose a collection of disorders in which genetic abnormalities cause impaired ribosome biogenesis and function, resulting in specific clinical phenotypes. Congenital mutations in RPS19 and other genes encoding ribosomal proteins cause Diamond-Blackfan anemia, a disorder characterized by hypoplastic, macrocytic anemia. Mutations in other genes required for normal ribosome biogenesis have been implicated in other rare congenital syndromes, Schwachman-Diamond syndrome, dyskeratosis congenita, cartilage hair hypoplasia, and Treacher Collins syndrome. In addition, the 5q- syndrome, a subtype of myelodysplastic syndrome, is caused by a somatically acquired deletion of chromosome 5q, which leads to haploinsufficiency of the ribosomal protein RPS14 and an erythroid phenotype highly similar to Diamond-Blackfan anemia. Acquired abnormalities in ribosome function have been implicated more broadly in human malignancies. The p53 pathway provides a surveillance mechanism for protein translation as well as genome integrity and is activated by defects in ribosome biogenesis; this pathway appears to be a critical mediator of many of the clinical features of ribosomopathies. Elucidation of the mechanisms whereby selective abnormalities in ribosome biogenesis cause specific clinical syndromes will hopefully lead to novel therapeutic strategies for these diseases.

摘要

核糖体病是一组遗传异常导致核糖体生物发生和功能受损的疾病,导致特定的临床表型。RPS19 及其他核糖体蛋白编码基因的先天性突变导致 Diamond-Blackfan 贫血,这是一种以发育不全、巨红细胞性贫血为特征的疾病。其他正常核糖体生物发生所需基因的突变与其他罕见的先天性综合征(如 Schwachman-Diamond 综合征、先天性角化不良、软骨毛发发育不良和 Treacher Collins 综合征)有关。此外,5q-综合征是骨髓增生异常综合征的一种亚型,是由染色体 5q 的获得性缺失引起的,导致核糖体蛋白 RPS14 的单倍体不足和与 Diamond-Blackfan 贫血高度相似的红细胞表型。核糖体功能的获得性异常与人类恶性肿瘤的关系更为广泛。p53 通路为蛋白质翻译以及基因组完整性提供了一个监测机制,并且通过核糖体生物发生的缺陷而被激活;该通路似乎是核糖体病许多临床特征的关键介质。阐明核糖体生物发生的选择性异常导致特定临床综合征的机制,有望为这些疾病带来新的治疗策略。

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