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转录共激活因子Maml1是Notch2介导的边缘区B细胞发育所必需的。

The transcriptional coactivator Maml1 is required for Notch2-mediated marginal zone B-cell development.

作者信息

Wu Lizi, Maillard Ivan, Nakamura Makoto, Pear Warren S, Griffin James D

机构信息

Department of Medical Oncology, Dana-Farber Cancer Institute, Brigham and Women's Hospital and Harvard Medical School, Boston, MA, USA.

出版信息

Blood. 2007 Nov 15;110(10):3618-23. doi: 10.1182/blood-2007-06-097030. Epub 2007 Aug 15.

Abstract

Signaling mediated by various Notch receptors and their ligands regulates diverse biological processes, including lymphoid cell fate decisions. Notch1 is required during T-cell development, while Notch2 and the Notch ligand Delta-like1 control marginal zone B (MZB) cell development. We previously determined that Mastermind-like (MAML) transcriptional coactivators are required for Notchinduced transcription by forming ternary nuclear complexes with Notch and the transcription factor CSL. The 3 MAML family members (MAML1-MAML3) are collectively essential for Notch activity in vivo, but whether individual MAMLs contribute to the specificity of Notch functions is unknown. Here, we addressed this question by studying lymphopoiesis in the absence of the Maml1 gene. Since Maml1(-/-) mice suffered perinatal lethality, hematopoietic chimeras were generated with Maml1(-/-), Maml1(+/-), or wild-type fetal liver progenitors. Maml1 deficiency minimally affected T-cell development, but was required for the development of MZB cells, similar to the phenotype of Notch2 deficiency. Moreover, the number of MZB cells correlated with Maml1 gene dosage. Since all 3 Maml genes were expressed in MZB cells and their precursors, these results suggest that Maml1 is specifically required for Notch2 signaling in MZB cells.

摘要

由各种Notch受体及其配体介导的信号传导调节多种生物学过程,包括淋巴细胞命运决定。Notch1在T细胞发育过程中是必需的,而Notch2和Notch配体Delta样1控制边缘区B(MZB)细胞的发育。我们之前确定,类主调控分子(MAML)转录共激活因子通过与Notch和转录因子CSL形成三元核复合物来实现Notch诱导的转录。3个MAML家族成员(MAML1 - MAML3)共同对体内Notch活性至关重要,但单个MAML是否对Notch功能的特异性有贡献尚不清楚。在这里,我们通过研究缺乏Maml1基因时的淋巴细胞生成来解决这个问题。由于Maml1(-/-)小鼠在围产期致死,因此用Maml1(-/-)、Maml1(+/-)或野生型胎肝祖细胞生成造血嵌合体。Maml1缺陷对T细胞发育影响最小,但对MZB细胞的发育是必需的,这与Notch2缺陷的表型相似。此外,MZB细胞的数量与Maml1基因剂量相关。由于所有3个Maml基因都在MZB细胞及其前体细胞中表达,这些结果表明Maml1是MZB细胞中Notch2信号传导所特需的。

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