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罕见的核糖体病:对癌症机制的深入了解。

Rare ribosomopathies: insights into mechanisms of cancer.

机构信息

Department of Health Sciences, University of Piemonte Orientale, Novara, Italy.

Department of Biochemistry and Molecular Genetics, University of Louisville, Louisville, KY, USA.

出版信息

Nat Rev Cancer. 2019 Apr;19(4):228-238. doi: 10.1038/s41568-019-0105-0.

Abstract

Long thought to be too big and too ubiquitous to fail, we now know that human cells can fail to make sufficient amounts of ribosomes, causing a number of diseases collectively known as ribosomopathies. The best characterized ribosomopathies, with the exception of Treacher Collins syndrome, are inherited bone marrow failure syndromes, each of which has a marked increase in cancer predisposition relative to the general population. Although rare, emerging data reveal that the inherited bone marrow failure syndromes may be underdiagnosed on the basis of classical symptomology, leaving undiagnosed patients with these syndromes at an elevated risk of cancer without adequate counselling and surveillance. The link between the inherited ribosomopathies and cancer has led to greater awareness that somatic mutations in factors involved in ribosome biogenesis may also be drivers in sporadic cancers. Our goal here is to compare and contrast the pathophysiological mechanisms underpinning ribosomopathies to gain a better understanding of the mechanisms that predispose these disorders to cancer.

摘要

长期以来,人们一直认为核糖体太大且无处不在,不可能出现故障,但我们现在知道,人类细胞可能无法产生足够数量的核糖体,从而导致一系列被称为核糖体病的疾病。除了特雷彻·柯林斯综合征外,特征最明显的核糖体病是遗传性骨髓衰竭综合征,每种综合征相对于普通人群都有明显增加的癌症易感性。尽管罕见,但新出现的数据表明,基于经典症状学,遗传性骨髓衰竭综合征可能被漏诊,使这些综合征的未确诊患者罹患癌症的风险升高,但缺乏适当的咨询和监测。遗传性核糖体病与癌症之间的联系,使人们更加意识到参与核糖体生物发生的因子中的体细胞突变也可能是散发性癌症的驱动因素。我们的目标是比较和对比核糖体病的病理生理机制,以更好地了解使这些疾病易患癌症的机制。

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