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核仁磷酸蛋白在白血病中的作用:锚定丢失的后果。

Nucleophosmin in leukemia: Consequences of anchor loss.

机构信息

Institute of Hematology and Blood Transfusion, U Nemocnice 1, 128 20 Prague 2, Czech Republic.

Institute of Hematology and Blood Transfusion, U Nemocnice 1, 128 20 Prague 2, Czech Republic.

出版信息

Int J Biochem Cell Biol. 2019 Jun;111:52-62. doi: 10.1016/j.biocel.2019.04.007. Epub 2019 Apr 19.

Abstract

Nucleophosmin (NPM), one of the most abundant nucleolar proteins, has crucial functions in ribosome biogenesis, cell cycle control, and DNA-damage repair. In human cells, NPM occurs mainly in oligomers. It functions as a chaperone, undergoes numerous interactions and forms part of many protein complexes. Although NPM role in carcinogenesis is not fully elucidated, a variety of tumor suppressor as well as oncogenic activities were described. NPM is overexpressed, fused with other proteins, or mutated in various tumor types. In the acute myeloid leukemia (AML), characteristic mutations in NPM1 gene, leading to modification of NPM C-terminus, are the most frequent genetic aberration. Although multiple mutation types of NPM are found in AML, they are all characterized by aberrant cytoplasmic localization of the mutated protein. In this review, current knowledge of the structure and function of NPM is presented in relation to its interaction network, in particular to the interaction with other nucleolar proteins and with proteins active in apoptosis. Possible molecular mechanisms of NPM mutation-driven leukemogenesis and NPM therapeutic targeting are discussed. Finally, recent findings concerning the immunogenicity of the mutated NPM and specific immunological features of AML patients with NPM mutation are summarized.

摘要

核仁磷酸蛋白(Nucleophosmin,NPM)是一种丰富的核仁蛋白,在核糖体生物发生、细胞周期调控和 DNA 损伤修复中具有关键作用。在人类细胞中,NPM 主要以寡聚体形式存在。它作为伴侣蛋白发挥作用,经历了许多相互作用,并形成了许多蛋白质复合物的一部分。尽管 NPM 在致癌作用中的作用尚未完全阐明,但已经描述了多种肿瘤抑制因子和致癌活性。NPM 在各种肿瘤类型中过度表达、与其他蛋白质融合或发生突变。在急性髓系白血病(AML)中,NPM1 基因的特征性突变导致 NPM C 末端的修饰,是最常见的遗传异常。尽管在 AML 中发现了多种 NPM 突变类型,但它们都表现为突变蛋白的异常细胞质定位。在这篇综述中,介绍了 NPM 的结构和功能的最新知识,特别是与它的相互作用网络的关系,特别是与其他核仁蛋白和与凋亡相关蛋白的相互作用。讨论了 NPM 突变驱动白血病发生的可能分子机制以及 NPM 的治疗靶向。最后,总结了最近关于突变的 NPM 的免疫原性以及具有 NPM 突变的 AML 患者的特异性免疫特征的发现。

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