Rocheleau C E, Yasuda J, Shin T H, Lin R, Sawa H, Okano H, Priess J R, Davis R J, Mello C C
University of Massachusetts Medical School, Program in Molecular Medicine, Worcester 01605, USA.
Cell. 1999 Jun 11;97(6):717-26. doi: 10.1016/s0092-8674(00)80784-9.
During C. elegans development, Wnt/WG signaling is required for differences in cell fate between sister cells born from anterior/posterior divisions. A beta-catenin-related gene, wrm-1, and the lit-1 gene are effectors of this signaling pathway and appear to downregulate the activity of POP-1, a TCF/LEF-related protein, in posterior daughter cells. We show here that lit-1 encodes a serine/threonine protein kinase homolog related to the Drosophila tissue polarity protein Nemo. We demonstrate that the WRM-1 protein binds to LIT-1 in vivo and that WRM-1 can activate the LIT-1 protein kinase when coexpressed in vertebrate tissue culture cells. This activation leads to phosphorylation of POP-1 and to apparent changes in its subcellular localization. Our findings provide evidence for novel regulatory avenues for an evolutionarily conserved Wnt/WG signaling pathway.
在秀丽隐杆线虫的发育过程中,Wnt/WG信号传导对于前后分裂产生的姐妹细胞之间的细胞命运差异是必需的。一个与β-连环蛋白相关的基因wrm-1和lit-1基因是该信号通路的效应器,并且似乎在后代细胞中下调了与TCF/LEF相关的蛋白质POP-1的活性。我们在此表明,lit-1编码一种与果蝇组织极性蛋白Nemo相关的丝氨酸/苏氨酸蛋白激酶同源物。我们证明WRM-1蛋白在体内与LIT-1结合,并且当在脊椎动物组织培养细胞中共表达时,WRM-1可以激活LIT-1蛋白激酶。这种激活导致POP-1的磷酸化及其亚细胞定位的明显变化。我们的研究结果为进化上保守的Wnt/WG信号通路提供了新的调控途径的证据。