Prakash Nilima, Hansson Emil, Betsholtz Christer, Mitsiadis Thimios, Lendahl Urban
Department of Cell and Molecular Biology, Medical Nobel Institute, Karolinska Institute, SE-171 77, Stockholm, Sweden.
Exp Cell Res. 2002 Aug 1;278(1):31-44. doi: 10.1006/excr.2002.5544.
Mutations in the human Notch 3 gene cause the vascular stroke and dementia syndrome CADASIL (Cerebral Autosomal Dominant Arteriopathy with Subcortical Infarcts and Leukoencephalopathy) characterized by degeneration of vascular smooth muscle cells and multiple small infarcts in the white and deep gray matter of the brain. Here we have analyzed the expression pattern of the Notch 3 gene in the pre- and postnatal mouse brain. Prenatal Notch 3 expression is restricted to a scattered population of cells within the vessel wall of all major blood vessels in the developing embryo, including those that form the perineural vascular plexus. Expression in the postnatal brain is confined to a scattered cell population within the vessel wall of small to medium-sized penetrating arteries, which are the vessel type primarily affected in CADASIL patients. In contrast, no expression was observed in capillaries and veins. Notch 3 is most likely expressed in a subset of vascular smooth muscle cells, and the expression pattern of one of the Notch ligands, Serrate 1, was very similar to that observed for Notch 3. The Notch 3 expressing pattern was not significantly altered in platelet-derived growth factor B- (PDGF-B) deficient mouse embryos, demonstrating that Notch 3 expression is not under direct control of PDGF-B. These data show that Notch 3 expression is conserved between mouse and human and suggest that the mouse is a valid system for analysis of CADASIL.
人类Notch 3基因的突变会导致血管性卒中和痴呆综合征CADASIL(伴有皮质下梗死和白质脑病的脑常染色体显性动脉病),其特征是血管平滑肌细胞退化以及脑白质和深部灰质出现多处小梗死灶。在此,我们分析了Notch 3基因在小鼠产前和产后大脑中的表达模式。产前Notch 3表达局限于发育中胚胎所有主要血管血管壁内的散在细胞群体,包括形成神经周围血管丛的那些血管。产后大脑中的表达局限于中小口径穿通动脉血管壁内的散在细胞群体,而这些血管类型正是CADASIL患者中主要受影响的血管。相比之下,在毛细血管和静脉中未观察到表达。Notch 3很可能在一部分血管平滑肌细胞中表达,并且Notch配体之一Serrate 1的表达模式与Notch 3的表达模式非常相似。在血小板衍生生长因子B(PDGF - B)缺陷的小鼠胚胎中,Notch 3的表达模式没有明显改变,这表明Notch 3的表达不受PDGF - B的直接控制。这些数据表明Notch 3的表达在小鼠和人类之间是保守的,并提示小鼠是分析CADASIL的有效系统。