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[ASXL1突变在血液系统疾病中的作用]

[Role of ASXL1 mutations in hematological disorders].

作者信息

Uni Masahiro

机构信息

Department of Hematology and Oncology, Graduate School of Medicine, The University of Tokyo.

Department of Transfusion Medicine, The University of Tokyo Hospital.

出版信息

Rinsho Ketsueki. 2019;60(6):680-690. doi: 10.11406/rinketsu.60.680.

Abstract

Recent progress in whole genome sequencing has identified recurrent somatic mutations in the additional sex combs like 1 (ASXL1) gene in a variety of hematological disorders and even in premalignant conditions. However, the molecular mechanisms regarding the contribution of ASXL1 mutation to the pathogenesis of premalignant conditions remain largely unelucidated. Thus, we investigated the biological effects of mutant Asxl1 using newly-generated knock-in (KI) mice. Heterozygous mutant KI mice developed phenotypes resembling human low-risk myelodysplastic syndromes (MDS), and some of them developed an MDS/myeloproliferative neoplasm-like disease after a long latency. The H2AK119ub1 level around the promoter region of p16 was significantly decreased in KI hematopoietic stem cells (HSCs), suggesting perturbation of Bmi1-driven H2AK119ub1 histone modification by mutant Asxl1. The mutant Asxl1 failed to interact with Bmi1, although wild type ASXL1 protein did not. When p16 expression was depleted in Asxl1 KI mice, the HSC pool was restored, and apoptosis was ameliorated in HSCs. These findings demonstrate that the loss of protein interaction between mutant Asxl1 and Bmi1 affected the activity of Prc1. The subsequent derepression of p16 by aberrant histone ubiquitination could induce cellular senescence, resulting in low-risk MDS-like phenotypes in heterozygous Asxl1 KI mice.

摘要

全基因组测序的最新进展已在多种血液系统疾病甚至癌前病变中发现了额外性梳状蛋白1(ASXL1)基因的反复体细胞突变。然而,ASXL1突变对癌前病变发病机制的作用的分子机制仍 largely未阐明。因此,我们使用新生成的敲入(KI)小鼠研究了突变型Asxl1的生物学效应。杂合突变型KI小鼠表现出类似于人类低风险骨髓增生异常综合征(MDS)的表型,其中一些在长时间潜伏期后发展为MDS/骨髓增殖性肿瘤样疾病。在KI造血干细胞(HSC)中,p16启动子区域周围的H2AK119ub1水平显著降低,表明突变型Asxl1扰乱了Bmi1驱动的H2AK119ub1组蛋白修饰。突变型Asxl1未能与Bmi1相互作用,而野生型ASXL1蛋白则可以。当在Asxl1 KI小鼠中耗尽p16表达时,HSC池得以恢复,HSC中的细胞凋亡得到改善。这些发现表明,突变型Asxl1与Bmi1之间蛋白质相互作用的丧失影响了Prc1的活性。随后,异常组蛋白泛素化导致p16去抑制,可诱导细胞衰老,从而在杂合Asxl1 KI小鼠中产生低风险MDS样表型。

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