Lindsell C E, Boulter J, diSibio G, Gossler A, Weinmaster G
Department of Biological Chemistry, UCLA School of Medicine 90095-1737, USA.
Mol Cell Neurosci. 1996;8(1):14-27. doi: 10.1006/mcne.1996.0040.
Notch genes encode receptors for a signaling pathway that regulates neurogenesis. The DSL (Delta/Serrate/lag-2) genes encode ligands that bind and activate Notch. In situ hybridization was used to determine the spatiotemporal expression of Notch1, Notch2, and Notch3, and the DSL ligands, Jagged and Delta 1, in an effort to identify potential ligand-receptor pairs that function during development of the rat nervous system. Here we describe both distinct and overlapping expression patterns for these genes in neural progenitors that form both the central and the peripheral nervous systems. The punctate expression patterns we detected for Jagged and Delta 1 are consistent with their role in mediating lateral inhibition, a process proposed to regulate neural determination. Furthermore, within the ventricular zone of the neural tube and retina, Jagged and Delta 1 were expressed in complementary regions, suggesting that different DSL-Notch combinations may direct the development of distinct neural subtypes.
Notch基因编码一种调节神经发生的信号通路的受体。DSL(Delta/Serrate/lag-2)基因编码与Notch结合并激活它的配体。采用原位杂交技术来确定Notch1、Notch2和Notch3以及DSL配体锯齿蛋白和Delta 1的时空表达,以识别在大鼠神经系统发育过程中起作用的潜在配体-受体对。在此,我们描述了这些基因在形成中枢和外周神经系统的神经祖细胞中的不同和重叠表达模式。我们检测到的锯齿蛋白和Delta 1的点状表达模式与它们在介导侧向抑制中的作用一致,侧向抑制是一个被认为调节神经决定的过程。此外,在神经管和视网膜的脑室区,锯齿蛋白和Delta 1在互补区域表达,这表明不同的DSL-Notch组合可能指导不同神经亚型的发育。