Mol. Cells 2013; 35(3): 249-254
Published online March 11, 2013
https://doi.org/10.1007/s10059-013-2333-6
© The Korean Society for Molecular and Cellular Biology
During Caenorhabditis elegans gonadal development, a stochastic interaction between the LIN-12/Notch receptor and the LAG-2/Delta ligand initiates cell fate specification of two equivalent pre-anchor cell (AC)/pre-ventral uterine (VU) precursor cells. Both cells express lin-12 and lag-2 before specification, and a small difference in LIN-12 activity leads to the exclusive expression of lin-12 in VUs and lag-2 in the AC through an unknown feedback mechanism. In this Notch signaling process, the cleaved LIN-12/Notch intracellular domain (NICD) binds to the LAG-1/CSL transcriptional repressor, forming a transcriptional activator complex containing LAG-1 and NICD. Here we show that clustered LAG-1 binding sites in lin-12 and lag-1 are involved in regulating lin-12 and lag-1 expression during AC/VU cell fate specification. Both genes are expressed in VU cells, but not the AC, after specification. We also show that lin-12 is necessary for lag-1 expression in VU cells. Interestingly, lin-12 (null) animals express lag-1 in the AC, suggesting that LIN-12 signaling is necessary for the suppression of lag-1 ex-pression in the AC. Ectopic expression of lag-1 cDNA in the AC causes a defect in the vulval-uterine (V-U) connection; therefore, LAG-1 should be elimi-nated in the AC to form a normal V-U connection at a later developmental stage in wild-type animals.
Keywords animal development, cell fate specification, lag-1/CSL, lin-12/Notch, Notch signaling
Mol. Cells 2013; 35(3): 249-254
Published online March 31, 2013 https://doi.org/10.1007/s10059-013-2333-6
Copyright © The Korean Society for Molecular and Cellular Biology.
Seong Kyun Park, Vit Na Choi, and Byung Joon Hwang
Department of Molecular Bioscience, College of Biomedical Science, Kangwon National University, Chuncheon 200-701, Korea
During Caenorhabditis elegans gonadal development, a stochastic interaction between the LIN-12/Notch receptor and the LAG-2/Delta ligand initiates cell fate specification of two equivalent pre-anchor cell (AC)/pre-ventral uterine (VU) precursor cells. Both cells express lin-12 and lag-2 before specification, and a small difference in LIN-12 activity leads to the exclusive expression of lin-12 in VUs and lag-2 in the AC through an unknown feedback mechanism. In this Notch signaling process, the cleaved LIN-12/Notch intracellular domain (NICD) binds to the LAG-1/CSL transcriptional repressor, forming a transcriptional activator complex containing LAG-1 and NICD. Here we show that clustered LAG-1 binding sites in lin-12 and lag-1 are involved in regulating lin-12 and lag-1 expression during AC/VU cell fate specification. Both genes are expressed in VU cells, but not the AC, after specification. We also show that lin-12 is necessary for lag-1 expression in VU cells. Interestingly, lin-12 (null) animals express lag-1 in the AC, suggesting that LIN-12 signaling is necessary for the suppression of lag-1 ex-pression in the AC. Ectopic expression of lag-1 cDNA in the AC causes a defect in the vulval-uterine (V-U) connection; therefore, LAG-1 should be elimi-nated in the AC to form a normal V-U connection at a later developmental stage in wild-type animals.
Keywords: animal development, cell fate specification, lag-1/CSL, lin-12/Notch, Notch signaling