Related Experiment Video
Updated: Aug 1, 2026

Large-scale Gene Knockdown in C. elegans Using dsRNA Feeding Libraries to Generate Robust Loss-of-function Phenotypes
Published on: September 25, 2013
The DAF-3 Smad binds DNA and represses gene expression in the Caenorhabditis elegans pharynx
J D Thatcher1, C Haun, P G Okkema
1Department of Biological Sciences (M/C567), University of Illinois at Chicago, Chicago, IL 60607, USA.
Abstract:
Gene expression in the pharyngeal muscles of Caenorhabditis elegans is controlled in part by organ-specific signals, which in the myo-2 gene target a short DNA sequence termed the C subelement. To identify genes contributing to these signals, we performed a yeast one-hybrid screen for cDNAs encoding factors that bind the C subelement. One clone recovered was from daf-3, which encodes a Smad most closely related to vertebrate Smad4. We demonstrated that DAF-3 binds C subelement DNA directly and specifically using gel mobility shift and DNase1 protection assays. Mutation of any base in the sequence GTCTG interfered with binding in the gel mobility shift assay, demonstrating that this pentanucleotide is a core recognition sequence for DAF-3 binding. daf-3 is known to promote formation of dauer larvae and this activity is negatively regulated by TGFbeta-like signaling. To determine how daf-3 affects C subelement enhancer activity in vivo, we examined expression a gfp reporter controlled by a concatenated C subelement oligonucleotide in daf-3 mutants and other mutants affecting the TGFbeta-like signaling pathway controlling dauer formation. Our results demonstrate that wild-type daf-3 can repress C subelement enhancer activity during larval development and, like its dauer-promoting activity, daf-3's repressor activity is negatively regulated by TGFbeta-like signaling. We have examined expression of this gfp reporter in dauer larvae and have observed no daf-3-dependent repression of C activity. These results suggest daf-3 directly regulates pharyngeal gene expression during non-dauer development.
Insights
The Smad protein DAF-3 directly binds DNA to regulate pharyngeal gene expression in Caenorhabditis elegans. This regulation is negatively controlled by TGF-beta signaling during development.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- Gene expression in Caenorhabditis elegans pharyngeal muscles involves organ-specific signals.
- The myo-2 gene utilizes a C subelement DNA sequence for targeting these signals.
Purpose of the Study:
- To identify genes encoding factors that bind the C subelement DNA sequence.
- To investigate the role of daf-3 in regulating pharyngeal gene expression.
Main Methods:
- Yeast one-hybrid screen to identify DNA-binding proteins.
- Gel mobility shift and DNase1 protection assays to confirm DNA binding.
- GFP reporter assays in C. elegans mutants to study gene regulation in vivo.
Main Results:
- DAF-3, a Smad protein, was identified as a direct binder of the C subelement DNA sequence.
- The pentanucleotide sequence GTCTG is critical for DAF-3 binding.
- DAF-3 represses C subelement enhancer activity during larval development, a process negatively regulated by TGF-beta signaling.
- This repression is absent in dauer larvae.
Conclusions:
- DAF-3 directly regulates pharyngeal gene expression during non-dauer development in C. elegans.
- TGF-beta signaling negatively regulates DAF-3's repressor activity.
- DAF-3 plays a crucial role in developmental gene regulation beyond its known role in dauer formation.
Related Concept Videos
Eukaryotic Transcription Inhibitors
Eukaryotic transcription inhibitors usually contain two distinct domains, a DNA...
The Ratio of X Chromosome to Autosomes
Normal male Drosophila has a ratio of one X chromosome to two sets of autosomes. In contrast, normal female Drosophila...
Dosage Compensation
In addition to sexual development, the X chromosome has genes involved in autosomal functions such as brain development and the immune system. Therefore, males and females with distinct numbers of X chromosomes will have...

