Geffers Insa, Serth Katrin, Chapman Gavin, Jaekel Robert, Schuster-Gossler Karin, Cordes Ralf, Sparrow Duncan B, Kremmer Elisabeth, Dunwoodie Sally L, Klein Thomas, Gossler Achim
Institut für Molekularbiologie, Medizinische Hochschule Hannover, Hannover, Germany.
J Cell Biol. 2007 Jul 30;178(3):465-76. doi: 10.1083/jcb.200702009.
The Notch ligands Dll1 and Dll3 are coexpressed in the presomitic mesoderm of mouse embryos. Despite their coexpression, mutations in Dll1 and Dll3 cause strikingly different defects. To determine if there is any functional equivalence, we replaced Dll1 with Dll3 in mice. Dll3 does not compensate for Dll1; DLL1 activates Notch in Drosophila wing discs, but DLL3 does not. We do not observe evidence for antagonism between DLL1 and DLL3, or repression of Notch activity in mice or Drosophila. In vitro analyses show that differences in various domains of DLL1 and DLL3 individually contribute to their biochemical nonequivalence. In contrast to endogenous DLL1 located on the surface of presomitic mesoderm cells, we find endogenous DLL3 predominantly in the Golgi apparatus. Our data demonstrate distinct in vivo functions for DLL1 and DLL3. They suggest that DLL3 does not antagonize DLL1 in the presomitic mesoderm and warrant further analyses of potential physiological functions of DLL3 in the Golgi network.
Notch配体Dll1和Dll3在小鼠胚胎的体节中胚层中共表达。尽管它们共同表达,但Dll1和Dll3的突变会导致截然不同的缺陷。为了确定它们是否存在功能等效性,我们在小鼠中用Dll3替代Dll1。Dll3不能补偿Dll1;DLL1在果蝇翅盘中激活Notch,但DLL3不能。我们没有观察到DLL1和DLL3之间存在拮抗作用的证据,也没有观察到在小鼠或果蝇中Notch活性受到抑制的情况。体外分析表明,DLL1和DLL3各个结构域的差异单独导致了它们的生化不等效性。与位于体节中胚层细胞表面的内源性DLL1不同,我们发现内源性DLL3主要存在于高尔基体中。我们的数据证明了DLL1和DLL3在体内具有不同的功能。它们表明DLL3在体节中胚层中不会拮抗DLL1,并且有必要进一步分析DLL3在高尔基体网络中的潜在生理功能。