Itoh Bunsho, Hirose Takashi, Takata Nozomu, Nishiwaki Kiyoji, Koga Makoto, Ohshima Yasumi, Okada Masato
Department of Oncogene Research, Research Institute for Microbial Diseases, Osaka University, 3-1 Yamadaoka, Suita, Osaka 565-0871, Japan.
Development. 2005 Dec;132(23):5161-72. doi: 10.1242/dev.02103. Epub 2005 Oct 26.
Src family tyrosine kinase (SFK) has been implicated in the regulation of cell adhesion and migration during animal development. We show that SRC-1, an ortholog of SFK, plays an essential role in directing cell migration in Caenorhabditis elegans. The mutation in the src-1 gene results in defective distal tip cell (DTC)-directed gonad morphogenesis in an activity-dependent and DTC cell-autonomous manners. In the src-1 mutants, DTCs fail to turn and continue their centrifugal migration along the ventral muscles. The effect of the src-1 mutation is suppressed by mutations in genes that function in the CED/Rac pathway, suggesting that SRC-1 in DTCs is an upstream regulator of a Rac pathway that controls cytoskeletal remodeling. In the src-1 mutant, the expression of unc-5/netrin receptor is normally regulated, and neither the precocious expression of UNC-5 nor the mutation in the unc-5 gene significantly affects the DTC migration defect. These data suggest that SRC-1 acts in the netrin signaling in DTCs. The src-1 mutant also exhibits cell-autonomous defects in the migration and growth cone path-finding of Q neuroblast descendants AVM and PVM. However, these roles of SRC-1 do not appear to involve the CED/Rac pathway. These findings show that SRC-1 functions in responding to various extracellular guidance cues that direct the cell migration via disparate signaling pathways in different cell types.
Src家族酪氨酸激酶(SFK)已被证明在动物发育过程中参与细胞黏附和迁移的调控。我们发现,SFK的直系同源基因SRC-1在秀丽隐杆线虫的细胞迁移导向中起着至关重要的作用。src-1基因突变会以活性依赖和远端末梢细胞(DTC)自主的方式导致DTC导向的性腺形态发生缺陷。在src-1突变体中,DTC无法转向,而是继续沿着腹侧肌肉进行离心迁移。src-1突变的影响被在CED/Rac途径中起作用的基因突变所抑制,这表明DTC中的SRC-1是控制细胞骨架重塑的Rac途径的上游调节因子。在src-1突变体中,unc-5/netrin受体的表达正常调节,UNC-5的过早表达或unc-5基因突变均未显著影响DTC迁移缺陷。这些数据表明SRC-1在DTC的netrin信号传导中起作用。src-1突变体在Q神经母细胞后代AVM和PVM的迁移和生长锥路径寻找中也表现出细胞自主缺陷。然而,SRC-1的这些作用似乎不涉及CED/Rac途径。这些发现表明,SRC-1在响应各种细胞外导向线索时发挥作用,这些线索通过不同细胞类型中的不同信号通路指导细胞迁移。