unc-37/Groucho and lsy-22/AES repress Wnt target genes in C. elegans asymmetric cell divisions
Bekas, K. N.; Phillips, B. T.
Show abstract
Asymmetric cell division (ACD) is a fundamental mechanism of cell fate specification and adult tissue homeostasis. In C. elegans, the Wnt/{beta}-catenin asymmetry (W{beta}A) pathway regulates ACDs throughout embryonic and larval development. Under control of Wnt ligand-induced polarity, the transcription factor POP-1/TCF functions with the coactivator SYS-1/{beta}-catenin to activate gene expression in the signaled cell or, in absence of the coactivator, to repress Wnt target genes in the unsignaled daughter cell. To date, investigation of Groucho function in W{beta}A is lacking, and the function of LSY-22/AES has only been evaluated in C. elegans neurons. Further, conflicting evidence shows TCF utilizing Groucho-mediated repression may be either aided or repressed by AES addition. Here we demonstrate a genetic interaction between Groucho corepressors and POP-1/TCF in the distal tip cells (DTCs), seam cells (SCs) and embryonic endoderm development. In the DTCs, signaled cell fate increases after individual and double Groucho loss of function, representing the first demonstration of Groucho function in wildtype W{beta}A ACDs. Further, W{beta}A target gene misexpression occurs more frequently than DTC fate changes, suggesting derepression generates an intermediate cell fate. In the SCs, loss of UNC-37/Groucho or LSY-22/AES in a POP-1/TCF hypomorphic background enhances SC expansion and target gene misregulation. Moreover, while POP-1/TCF depletion in lsy-22/AES nulls yielded an expected increase in SCs we observed a surprising SC decrease in unc-37/Groucho nulls subjected to POP-1/TCF depletion. This phenotype correlates with UNC-37/Groucho regulation of pop-1/tcf expression since POP-1/TCF levels are increased in unc-37/Groucho null SCs. Lastly, Groucho functions in embryonic endoderm development since we observe ectopic endoderm transgene expression in unc-37/Groucho and lsy-22/AES knockdown in a HDA-1 background. Together, these data indicate Groucho-mediated modulation of cell fate via regulation of POP-1/TCF repression is widespread in W{beta}A ACDs and suggests a novel role of LSY-22/AES as a bona fide TCF repressor.
Matching journals
The top 3 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Piecemeal regulation of convergent neuronal lineages by bHLH transcription factors in C. elegans 96%
- Restricted effects of the sole C. elegans Daughterless/E homolog, HLH-2, on nervous system development 96%
- Visualizing the organization and differentiation of the male-specific nervous system of C. elegans 96%
Similar papers in this journal
- daf-16/FOXO blocks adult cell fate in Caenorhabditis elegans dauer larvae via lin-41/TRIM71 97%
- Caenorhabditis elegans LET-413 Scribble is essential in the epidermis for growth, viability, and directional outgrowth of epithelial seam cells 97%
- The anterior Hox gene ceh-13 and elt-1/GATA activate the posterior Hox genes nob-1 and php-3 to specify posterior lineages in the C. elegans embryo 96%
Similar papers in this journal
- Differential functions of multiple Wnts and receptors in cell polarity regulation in C. elegans 96%
- A cell fate switch in the C. elegans seam cell lineage occurs through modulation of the Wnt asymmetry pathway in response to temperature increase 96%
- Insights into the involvement of spliceosomal mutations in myelodysplastic disorders from an analysis of SACY-1/DDX41 in Caenorhabditis elegans 96%
Similar papers in this journal
- Transcription factors regulating the fate and developmental potential of a multipotent progenitor in C. elegans 98%
- The conserved ASCL1/MASH-1 ortholog HLH-3 specifies sex-specific ventral cord motor neuron fate in C. elegans 97%
- Detecting new allies: Modifier screen identifies a genetic interaction between Imaginal disc growth factor 3 and a Rho-kinase substrate during dorsal appendage tube formation in Drosophila 96%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.