Wang Wenli, Campos Alexandre H, Prince Chengyu Z, Mou Yongshan, Pollman Matthew J
Cardiovascular Research Institute, Morehouse School of Medicine, Research Wing, Atlanta, Georgia 30310, USA.
J Biol Chem. 2002 Jun 28;277(26):23165-71. doi: 10.1074/jbc.M201409200. Epub 2002 Apr 23.
The Notch family of receptors and downstream effectors plays a critical role in cell fate determination during vascular ontogeny. Moreover, the human cerebral autosomal dominant artriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) syndrome of premature stroke and dementia is a heritable arteriopathy with alterations in vascular smooth muscle cells (VSMCs) resulting from mutations within Notch3. However, the expression and regulation of the Notch and hairy-related transcription factor (HRT) pathway in adult VSMCs in vitro and in vivo remain poorly characterized. The present study documents that the well-described modulation of VSMC fate in response to vascular injury and growth factor activation involves a coordinate regulation of the Notch and HRT pathways. Furthermore, platelet-derived growth factor promotes a similar coordinate down-regulation of the Notch receptors and HRT genes in cultured VSMCs via an ERK-dependent signaling pathway. Moreover, we established that HRT1 and HRT2 are direct downstream target genes of Notch3 signaling in VSMCs and determined that the activity of the nuclear protein RBP-Jk is essential for their regulation. These findings provide initial insight into the context- and cell type-dependent coordinate regulation of Notch3 and downstream HRT transcriptional pathway effector genes in VSMCs in vitro and in vivo that may have important implications for understanding the role of Notch signaling in human health and vascular disease.
Notch受体家族及其下游效应分子在血管发育过程中的细胞命运决定中起着关键作用。此外,伴有皮质下梗死和白质脑病的成人常染色体显性遗传性脑动脉病(CADASIL)综合征,其特征为早发性卒中和痴呆,是一种遗传性动脉病,由Notch3基因突变导致血管平滑肌细胞(VSMC)发生改变。然而,Notch与毛相关转录因子(HRT)信号通路在体外和体内成年VSMC中的表达和调控仍未得到充分描述。本研究表明,VSMC命运对血管损伤和生长因子激活的反应中所熟知的调节作用涉及Notch和HRT信号通路的协同调控。此外,血小板衍生生长因子通过ERK依赖的信号通路,促进培养的VSMC中Notch受体和HRT基因的类似协同下调。而且,我们证实HRT1和HRT2是VSMC中Notch3信号的直接下游靶基因,并确定核蛋白RBP-Jk的活性对其调控至关重要。这些发现初步揭示了体外和体内VSMC中Notch3及下游HRT转录信号通路效应基因的背景及细胞类型依赖性协同调控机制,这对于理解Notch信号在人类健康和血管疾病中的作用可能具有重要意义。