SEM-2/SoxC regulates multiple aspects of C. elegans postembryonic mesoderm development
Baccas, M.; Ganesan, V.; Leung, A.; Pineiro, L. R.; McKillop, A. N.; Liu, J.
Show abstract
Development of multicellular organisms requires well-orchestrated interplay between cell-intrinsic transcription factors and cell-cell signaling. One set of highly conserved transcription factors that plays diverse roles in development is the SoxC group. C. elegans contains a sole SoxC protein, SEM-2. SEM-2 is essential for embryonic development, and for specifying the sex myoblast (SM) fate in the postembryonic mesoderm, the M lineage. We have identified a novel partial loss-of-function sem-2 allele that has a proline to serine change in the C-terminal tail of the highly conserved DNA-binding domain. Detailed analyses of mutant animals harboring this point mutation uncovered new functions of SEM-2 in the M lineage. First, SEM-2 functions antagonistically with LET-381, the sole C. elegans FoxF/C forkhead transcription factor, to regulate dorsoventral patterning of the M lineage. Second, in addition to specifying the SM fate, SEM-2 is essential for the proliferation and diversification of the SM lineage. Finally, SEM-2 appears to directly regulate the expression of hlh-8, which encodes a basic helix-loop-helix Twist transcription factor and plays critical roles in proper patterning of the M lineage. Our data, along with previous studies, suggest an evolutionarily conserved relationship between SoxC and Twist proteins. Furthermore, our work identified new interactions in the gene regulatory network (GRN) underlying C. elegans postembryonic development and adds to the general understanding of the structure-function relationship of SoxC proteins. AUTHOR SUMMARYSoxC transcription factors play important roles in metazoan development. Abnormal expression or function of SoxC factors has been linked to a variety of developmental disorders and cancers. It is therefore critical to understand the functions of SoxC proteins in vivo. C. elegans has a single SoxC transcription factor, SEM-2, that is known to regulate a fate decision between a proliferative progenitor cell vs. a terminally differentiated cell during postembryonic mesoderm development. In this study, we report new functions of SEM-2 in postembryonic mesoderm development via our studies of a partial loss-of-function allele of sem-2. Our work uncovers new regulatory relationships between SEM-2/SoxC and the FoxF/C transcription factor LET-381, and between SEM-2/SoxC and the C. elegans Twist ortholog HLH-8. Our findings suggest that the SoxC-Twist axis, including the downstream targets of Twist, represents an evolutionarily conserved regulatory cassette important in metazoan development.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- The CATP-8/P5A-type ATPase functions in multiple pathways during neuronal patterning 96%
- An unexpected role for the conserved ADAM-family metalloprotease ADM-2 in Caenorhabditis elegans molting 95%
- MBL-1/Muscleblind regulates neuronal differentiation and controls the splicing of a terminal selector in Caenorhabditis elegans 95%
Similar papers in this journal
- Genetic interactions among ADAMTS metalloproteases and basement membrane molecules in cell migration in Caenorhabditis elegans 96%
- Linking Expression and Function of Drosophila Type-I TGF-b Receptor Baboon Isoforms: Multiple Roles of BaboA Isoform in Shaping of the Adult Central Nervous System 96%
- The MITF paralog tfec is required in neural crest development for fate specification of the iridophore lineage from a multipotent pigment cell progenitor 95%
Similar papers in this journal
- The 3UTR of the orb2 gene encoding the Drosophila CPEB translation factor plays a critical role in spermatogenesis 94%
- The neuroblast timer gene nubbin exhibits functional redundancy with gap genes to regulate segment identity in Tribolium 94%
- Loss of dmrt1 restores female fates in the absence of cyp19a1a but not rbpms2 93%
Similar papers in this journal
- Drosophila grainyhead gene and its neural stem cell-specific enhancers show epigenetic synchrony in the cells of the central nervous system. 95%
- SWI/SNF ATPase Brahma and Notch signaling collaborate with CBP/p300 to regulate neural stem cell apoptosis in Drosophila larval central nervous system. 94%
- Lamprey Lecticans Link New Vertebrate Genes to the Origin and Elaboration of Vertebrate Tissues 93%
Similar papers in this journal
- The role of Imp and Syp RBPs in precise neuronal elimination by apoptosis through the regulation of TFs 94%
- Differences in size and number of embryonic type-II neuroblast lineages correlate with divergent timing of central complex development between beetle and fly 94%
- Essential Function of Transmembrane Transcription Factor MYRF in Promoting Transcription of miRNA lin-4 during C. elegans Development 94%
"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.