首页> 外文期刊>Cell death and differentiation >Interplay of H2A deubiquitinase 2A-DUB/Mysm1 and the p19(ARF)/p53 axis in hematopoiesis, early T-cell development and tissue differentiation
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Interplay of H2A deubiquitinase 2A-DUB/Mysm1 and the p19(ARF)/p53 axis in hematopoiesis, early T-cell development and tissue differentiation

机译:H2A去泛素酶2A-DUB / Mysm1与p19(ARF)/ p53轴在造血,早期T细胞发育和组织分化中的相互作用

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Monoubiquitination of core histone 2A (H2A-K119u) has a critical role in gene regulation in hematopoietic differentiation and other developmental processes. To explore the interplay of histone H2A deubiquitinase Myb-like SWIRM and MPN domain containing1 (2A-DUB/Mysm1) with the p53 axis in the sequential differentiation of mature lymphocytes from progenitors, we systematically analyzed hematopoiesis and early T-cell development using Mysm1(-/-) and p53(-/-)Mysm1(-/-) mice. Mysm1(-/-) thymi were severely hypoplastic with <10% of wild-type cell numbers as a result of a reduction of early thymocyte progenitors in context with defective hematopoietic stem cells, a partial block at the double-negative (DN) 1-DN2 transition and increased apoptosis of double-positive thymocytes. Increased rates of apoptosis were also detected in other tissues affected by Mysm1 deficiency, including the developing brain and the skin. By quantitative PCR and chromatin immunoprecipitation analyses, we identified p19(ARF), an important regulator of p53 tumor suppressor protein levels, as a potential Mysm1 target gene. In newly generated p53(-/-) Mysm1(-/-) double-deficient mice, anomalies of Mysm1(-/-) mice including reduction of lymphoid-primed multipotent progenitors, reduced thymocyte numbers and viability, and interestingly defective B-cell development, growth retardation, neurological defects, skin atrophy, and tail malformation were almost completely restored as well, substantiating the involvement of the p53 pathway in the alterations caused by Mysm1 deficiency. In conclusion, this investigation uncovers a novel link between H2A deubiquitinase 2A-DUB/Mysm1 and suppression of p53-mediated apoptotic programs during early lymphoid development and other developmental processes.
机译:核心组蛋白2A(H2A-K119u)的单泛素化在造血分化和其他发育过程的基因调控中起关键作用。为了探索组蛋白H2A去泛素酶Myb样SWIRM和包含1(2A-DUB / Mysm1)的MPN域与祖细胞成熟淋巴细胞的顺序分化之间的相互作用,我们使用Mysm1系统分析了造血和早期T细胞发育-/-)和p53(-/-)Mysm1(-/-)小鼠。 Mysm1(-/-)胸腺严重发育不良,野生型细胞数量少于10%,这是由于造血干细胞缺陷(双阴性(DN)1的部分阻滞)导致早期胸腺细胞祖细胞减少所致-DN2过渡和双阳性胸腺细胞凋亡增加。在受Mysm1缺乏症影响的其他组织(包括发育中的大脑和皮肤)中也检测到凋亡率增加。通过定量PCR和染色质免疫沉淀分析,我们确定p19(ARF),潜在的Mysm1目标基因,p53肿瘤抑制蛋白水平的重要调节器。在新产生的p53(-/-)Mysm1(-/-)双缺陷小鼠中,Mysm1(-/-)小鼠异常,包括淋巴样多能祖细胞减少,胸腺细胞数量和生存力降低,以及有趣的B细胞缺陷发育,生长迟缓,神经系统缺损,皮肤萎缩和尾巴畸形也几乎完全得以恢复,从而证实了p53途径参与了Mysm1缺乏症引起的改变。总之,这项研究揭示了H2A去泛素酶2A-DUB / Mysm1与早期淋巴发育和其他发育过程中p53介导的凋亡程序的抑制之间的新型联系。

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