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Published on: May 28, 2021
Dominant negative mutations of Caenorhabditis elegans daf-7 confer a novel developmental phenotype
1Department of Biochemistry and Molecular Biology, The Pennsylvania State University, University Park, Pennsylvania, USA. mxc83@psu.edu
Background:
TGF-β signaling pathways are involved in the control of development in every member of the animal kingdom. As such, TGF-β ligands are widely divergent yet retain a set of core conserved features, specifically, a pre-protein cleavage site and several conserved ligand domain residues, the disruption of which produces a dominant negative phenotype.
Results:
We have extended these observations into an invertebrate system by creating a series of loss-of-function Caenorhabditis elegans daf-7 transgenes. When we tested these mutant transgenes in a daf-7/+ background, we saw a molting and excretory canal phenotype. Members of both pathways downstream of daf-4 were required for this phenotype.
Conclusions:
Our results show that the basic mechanisms of TGF-β function are conserved across the animal kingdom. A subset of our daf-7 mutations also produced an unexpected and novel phenotype. Epistasis experiments demonstrated that both daf-3/-5 and sma-4/-9 were downstream of our mutant daf-7 transgenes, which suggests not only a role for DAF-7 in the control of molting and the development of the excretory system but also that daf-7 and dbl-1 signaling may converge downstream of their shared Type II receptor, daf-4. Our approach may unveil new roles in development for other invertebrate TGF-β ligands.
Insights
Transforming growth factor-beta (TGF-β) signaling is crucial for animal development and conserved across species. This study reveals novel roles for TGF-β ligand DAF-7 in nematode molting and excretory system development.
Area of Science:
- Developmental Biology
- Molecular Biology
- Genetics
Background:
- Transforming growth factor-beta (TGF-β) signaling pathways regulate animal development.
- TGF-β ligands possess conserved features, including a pre-protein cleavage site and critical domain residues.
Purpose of the Study:
- To investigate the conserved mechanisms of TGF-β signaling in an invertebrate model.
- To explore the function of the Caenorhabditis elegans daf-7 gene in development.
Main Methods:
- Generated loss-of-function Caenorhabditis elegans daf-7 transgenes.
- Tested mutant transgenes in a daf-7/+ background.
- Conducted epistasis experiments to determine pathway interactions.
Main Results:
- Mutant daf-7 transgenes caused molting and excretory canal defects.
- Downstream components of daf-4 signaling were essential for these phenotypes.
- Novel phenotypes were observed with a subset of daf-7 mutations.
Conclusions:
- Basic mechanisms of TGF-β function are conserved throughout the animal kingdom.
- DAF-7 plays a role in nematode molting and excretory system development.
- daf-7 and dbl-1 signaling pathways may converge downstream of the daf-4 receptor.

