Jones Christopher A, Li Dean Y
Department of Oncological Sciences, University of Utah, Salt Lake City, UT 84112, United States.
Curr Opin Genet Dev. 2007 Aug;17(4):332-6. doi: 10.1016/j.gde.2007.07.004. Epub 2007 Aug 9.
Nerves and blood vessels often follow parallel trajectories as they course through the body to their distal targets. Proteins that regulate the process of axon guidance have likewise been shown to play a crucial role in blood vessel migration. With the recent description of the endothelial tip cell as an analog of the axonal growth cone, the nerve-vessel analogy seems complete. Notwithstanding these considerable similarities, one crucial difference remains between neural and vascular guidance. While a navigating axon is but a single cell, a sprouting vessel is composed of multiple cells that must be co-ordinately regulated. Recent studies of the Dll4-Notch1 signaling pathway have provided valuable insight into how the vasculature accomplishes this crucial task.
神经和血管在贯穿身体到达其远端靶点的过程中,通常沿着平行的轨迹走行。同样,已证实调节轴突导向过程的蛋白质在血管迁移中也起着关键作用。随着内皮尖端细胞作为轴突生长锥类似物的最新描述,神经与血管的相似性似乎已完备。尽管存在这些显著的相似之处,但神经导向和血管导向之间仍存在一个关键差异。当一条导航轴突只是单个细胞时,一条新生血管则由多个必须协同调节的细胞组成。对Dll4-Notch1信号通路的最新研究为脉管系统如何完成这一关键任务提供了有价值的见解。