Department of Neurosciences, Beckman Research Institute of City of Hope, Duarte, California 91010, USA.
Stem Cells. 2010 Sep;28(9):1602-10. doi: 10.1002/stem.478.
Ephrin-B plays an important role in neural progenitor cells to regulate self-renewal and differentiation. Cellular and embryological evidence suggest this function of ephrin-B is mediated through a PDZ-dependent reverse signaling mechanism. Here, we have genetically investigated the function of PDZ-RGS3, a proposed downstream signaling mediator of ephrin-B function, and found that knockout of PDZ-RGS3 caused early cell cycle exit and precocious differentiation in neural progenitor cells of the developing cerebral cortex, reminiscent of the phenotype observed in ephrin-B1 knockout mice. This resulted in a loss of cortical neural progenitor cells during cortical neurogenesis and led to impairment in the production of late born cortical neurons. These results reveal an essential role of PDZ-RGS3 in maintaining the balance between self-renewal and differentiation of neural progenitor cells and provide genetic evidence linking PDZ-RGS3 to ephrin-B reverse signaling. As ephrin-B molecules are often differentially expressed in different types of neural progenitor/stem cells during development or in adult life, deletion of PDZ-RGS3 can achieve a uniform loss of function of the ephrin-B/regulator of G protein-signaling (RGS) pathway, thereby providing a genetic tool useful for dissecting the mechanisms and functions of the ephrin-B/RGS reverse signaling pathway in neural progenitor/stem cell regulation.
Ephrin-B 在神经祖细胞中发挥重要作用,调节自我更新和分化。细胞和胚胎学证据表明,ephrin-B 的这种功能是通过 PDZ 依赖性反向信号机制介导的。在这里,我们通过遗传方法研究了 PDZ-RGS3 的功能,PDZ-RGS3 是 ephrin-B 功能的一个假定下游信号转导介质,我们发现 PDZ-RGS3 的敲除导致发育中的大脑皮质神经祖细胞的早期细胞周期退出和早熟分化,类似于 ephrin-B1 敲除小鼠中观察到的表型。这导致皮质神经发生过程中皮质神经祖细胞的丢失,并导致晚期出生的皮质神经元产生受损。这些结果揭示了 PDZ-RGS3 在维持神经祖细胞自我更新和分化之间平衡中的重要作用,并提供了遗传证据,将 PDZ-RGS3 与 ephrin-B 反向信号联系起来。由于 ephrin-B 分子在发育过程中或成年生活中不同类型的神经祖细胞/干细胞中经常差异表达,因此 PDZ-RGS3 的缺失可以实现 ephrin-B/调节 G 蛋白信号转导 (RGS) 途径的功能丧失的均匀性,从而提供了一种有用的遗传工具,可用于剖析 ephrin-B/RGS 反向信号通路在神经祖细胞/干细胞调节中的机制和功能。