首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Mastermind-1 is required for Notch signal-dependent steps in lymphocyte development in vivo
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Mastermind-1 is required for Notch signal-dependent steps in lymphocyte development in vivo

机译:Mastermind-1是体内淋巴细胞发育中Notch信号依赖性步骤所必需的

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Mastermind (Mam) is one of the elements of Notch signaling, an ancient system that plays a pivotal role in metazoan development. Genetic analyses in Drosophila and Caenorhabditis elegans have shown Mam to be an essential positive regulator of this signaling pathway in these species. Mam proteins bind to and stabilize the DNA-binding complex of the intracellular domains of Notch and CBF-1, Su(H), Lag-1 (CSL) DNA-binding proteins in the nucleus. Mammals have three Mam proteins, which show remarkable similarities in their functions while having an unusual structural diversity. There have also been recent indications that Mam-1 functionally interacts with other transcription factors including p53 tumor suppressor. We herein describe that Mam-1 deficiency in mice abolishes the development of splenic marginal zone B cells, a subset strictly dependent on Notch2, a CSL protein and Delta1 ligand. Mam-1 deficiency also causes a partially impaired development of early thymocytes, while not affecting the generation of definitive hematopoiesis, processes that are dependent on Notch1. We also demonstrate the transcriptional activation of a target promoter by constitutively active forms of Notch to decrease severalfold in cultured Mam-1 -deficient cells. These results indicate that Mam-1 is thus required to some extent for Notch-dependent stages in lymphopoiesis, thus supporting the notion that Mam is an essential component of the canonical Notch pathway in mammals.
机译:Mastermind(Mam)是Notch信号的要素之一,Notch是一个古老的系统,在后生动物的发育中起着举足轻重的作用。果蝇和秀丽隐杆线虫的遗传分析表明,Mam是这些物种中该信号通路必不可少的正调控因子。 Mam蛋白与Notch和CBF-1,Su(H),Lag-1(CSL)DNA结合蛋白在细胞核内的胞内域的DNA结合复合物结合并使其稳定。哺乳动物具有三种Mam蛋白,它们在功能上显示出惊人的相似性,同时具有不同寻常的结构多样性。最近也有迹象表明,Mam-1在功能上与包括p53肿瘤抑制因子在内的其他转录因子相互作用。我们在此描述,Mam-1缺乏症消除了脾脏边缘区B细胞的发展,脾脏边缘区B细胞是严格依赖Notch2,CSL蛋白和Delta1配体的子集。 Mam-1缺乏症还会导致早期胸腺细胞发育的部分受损,同时不影响确定性造血作用的产生,而造血作用取决于Notch1。我们还证明了Notch的组成型活性形式对靶启动子的转录激活,使其在培养的Mam-1缺陷型细胞中降低了几倍。这些结果表明,Mam-1在某种程度上依赖于Notch依赖的淋巴细胞生成阶段,从而支持了Mam是哺乳动物典型Notch途径必不可少的组成部分的观点。

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