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MYSM1 维持造血干细胞中核糖体蛋白基因的表达,以防止造血功能障碍。

MYSM1 maintains ribosomal protein gene expression in hematopoietic stem cells to prevent hematopoietic dysfunction.

机构信息

Department of Physiology.

McGill University Research Centre on Complex Traits, and.

出版信息

JCI Insight. 2020 Jul 9;5(13):125690. doi: 10.1172/jci.insight.125690.

Abstract

Ribosomopathies are congenital disorders caused by mutations in the genes encoding ribosomal and other functionally related proteins. They are characterized by anemia, other hematopoietic and developmental abnormalities, and p53 activation. Ribosome assembly requires coordinated expression of many ribosomal protein (RP) genes; however, the regulation of RP gene expression, especially in hematopoietic stem cells (HSCs), remains poorly understood. MYSM1 is a transcriptional regulator essential for HSC function and hematopoiesis. We established that HSC dysfunction in Mysm1 deficiency is driven by p53; however, the mechanisms of p53 activation remained unclear. Here, we describe the transcriptome of Mysm1-deficient mouse HSCs and identify MYSM1 genome-wide DNA binding sites. We establish a direct role for MYSM1 in RP gene expression and show a reduction in protein synthesis in Mysm1-/- HSCs. Loss of p53 in mice fully rescues Mysm1-/- anemia phenotype but not RP gene expression, indicating that RP gene dysregulation is a direct outcome of Mysm1 deficiency and an upstream mediator of Mysm1-/- phenotypes through p53 activation. We characterize a patient with a homozygous nonsense MYSM1 gene variant, and we demonstrate reduced protein synthesis and increased p53 levels in patient hematopoietic cells. Our work provides insights into the specialized mechanisms regulating RP gene expression in HSCs and establishes a common etiology of MYSM1 deficiency and ribosomopathy syndromes.

摘要

核糖体病是由编码核糖体和其他功能相关蛋白的基因突变引起的先天性疾病。它们的特征是贫血、其他造血和发育异常以及 p53 激活。核糖体组装需要许多核糖体蛋白 (RP) 基因的协调表达;然而,RP 基因表达的调控,特别是在造血干细胞 (HSCs) 中,仍然知之甚少。MYSM1 是 HSC 功能和造血所必需的转录调节剂。我们确定了 Mysm1 缺陷导致 HSC 功能障碍是由 p53 驱动的;然而,p53 激活的机制仍不清楚。在这里,我们描述了 Mysm1 缺陷型小鼠 HSCs 的转录组,并确定了 MYSM1 的全基因组 DNA 结合位点。我们确立了 MYSM1 在 RP 基因表达中的直接作用,并显示 Mysm1-/- HSCs 中的蛋白质合成减少。p53 在小鼠中的缺失完全挽救了 Mysm1-/-贫血表型,但不能挽救 RP 基因表达,表明 RP 基因失调是 Mysm1 缺乏的直接结果,并且通过 p53 激活是 Mysm1-/-表型的上游介导物。我们对一名具有纯合无义 MYSM1 基因突变的患者进行了特征描述,并证明了患者造血细胞中的蛋白质合成减少和 p53 水平升高。我们的工作深入了解了调节 HSCs 中 RP 基因表达的特殊机制,并确定了 MYSM1 缺乏和核糖体病综合征的共同病因。

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