Department of Pharmacology, The University of Illinois College of Medicine, Chicago, IL.
Division of Experimental Hematology and Cancer Biology, Cincinnati Children's Medical Center, Cincinnati, OH.
Haematologica. 2019 Nov;104(11):2164-2177. doi: 10.3324/haematol.2018.208660. Epub 2019 Mar 28.
Loss-of-function studies have determined that Notch signaling is essential for hematopoietic and endothelial development. By deleting a single allele of the Notch1 transcriptional activation domain we generated viable, post-natal mice exhibiting hypomorphic Notch signaling. These heterozygous mice, which lack only one copy of the transcriptional activation domain, appear normal and have no endothelial or hematopoietic phenotype, apart from an inherent, cell-autonomous defect in T-cell lineage development. Following chemotherapy, these hypomorphs exhibited severe pancytopenia, weight loss and morbidity. This phenotype was confirmed in an endothelial-specific, loss-of-function Notch1 model system. Ang1, secreted by hematopoietic progenitors after damage, activated endothelial Tie2 signaling, which in turn enhanced expression of Notch ligands and potentiated Notch1 receptor activation. In our heterozygous, hypomorphic model system, the mutant protein that lacks the Notch1 transcriptional activation domain accumulated in endothelial cells and interfered with optimal activity of the wildtype Notch1 transcriptional complex. Failure of the hypomorphic mutant to efficiently drive transcription of key gene targets such as and prolonged apoptosis and limited regeneration of the bone marrow niche. Thus, basal Notch1 signaling is sufficient for niche development, but robust Notch activity is required for regeneration of the bone marrow endothelial niche and hematopoietic recovery.
失活功能研究已经确定 Notch 信号通路对于造血和内皮细胞的发育是必不可少的。通过删除 Notch1 转录激活域的单个等位基因,我们生成了具有生存能力的、出生后的小鼠,其 Notch 信号通路表现为低功能。这些杂合子小鼠,仅缺失一个转录激活域的拷贝,除了 T 细胞谱系发育的固有、细胞自主缺陷外,它们看起来正常,没有内皮细胞或造血表型。在化疗后,这些低功能小鼠表现出严重的全血细胞减少、体重减轻和发病。这种表型在一个内皮细胞特异性的、 Notch1 失活功能模型系统中得到了证实。Ang1 在造血祖细胞受到损伤后分泌,激活内皮 Tie2 信号通路,从而增强 Notch 配体的表达并增强 Notch1 受体的激活。在我们的杂合子、低功能模型系统中,缺乏 Notch1 转录激活域的突变蛋白在血管内皮细胞中积累,并干扰了野生型 Notch1 转录复合物的最佳活性。低功能突变体不能有效地驱动关键基因靶点(如 和 )的转录,导致骨髓龛细胞凋亡延长和再生受限。因此,基础 Notch1 信号足以促进龛的发育,但强烈的 Notch 活性对于骨髓内皮龛和造血恢复的再生是必需的。