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Computational Analysis of the Caenorhabditis elegans Germline to Study the Distribution of Nuclei, Proteins, and the Cytoskeleton
Published on: April 19, 2018
C. elegans FOG-3/Tob can either promote or inhibit germline proliferation, depending on gene dosage and genetic
J J Snow1, M-H Lee, J Verheyden
1Program in Cellular and Molecular Biology, University of Wisconsin-Madison, Madison, WI, USA.
Abstract:
Vertebrate Tob/BTG proteins inhibit cell proliferation when overexpressed in tissue-culture cells, and they can function as tumor suppressors in mice. The single Caenorhabditis elegans Tob/BTG ortholog, FOG-3, by contrast, was identified from its loss-of-function phenotype as a regulator of sperm fate specification. Here we report that FOG-3 also regulates proliferation in the germline tissue. We first demonstrate that FOG-3 is a positive regulator of germline proliferation. Thus, fog-3 null mutants possess fewer germ cells than normal, a modest but reproducible decrease observed for each of two distinct fog-3 null alleles. A similar decrease also occurred in fog-3/+ heterozygotes, again for both fog-3 alleles, revealing a haplo-insufficient effect on proliferation. Therefore, FOG-3 normally promotes proliferation, and two copies of the fog-3 gene are required for this function. We next overexpressed FOG-3 by removal of FBF, the collective term for FBF-1 and FBF-2, two nearly identical PUF RNA-binding proteins. We find that overexpressed FOG-3 blocks proliferation in fbf-1 fbf-2 mutants; whereas germ cells stop dividing and instead differentiate in fbf-1 fbf-2 double mutants, they continue to proliferate in fog-3; fbf-1 fbf-2 triple mutants. Therefore, like its vertebrate Tob/BTG cousins, overexpressed FOG-3 is 'antiproliferative'. Indeed, some fog-3; fbf-1 fbf-2 mutants possess small tumors, suggesting that FOG-3 can act as a tumor suppressor. Finally, we show that FOG-3 and FBF work together to promote tumor formation in animals carrying oncogenic Notch mutations. A similar effect was not observed when germline tumors were induced by manipulation of other regulators; therefore, this FOG-3 tumor-promoting effect is context dependent. We conclude that FOG-3 can either promote or inhibit proliferation in a manner that is sensitive to both genetic context and gene dosage. The discovery of these FOG-3 effects on proliferation has implications for our understanding of vertebrate Tob/BTG proteins and their influence on normal development and tumorigenesis.
Insights
The C. elegans FOG-3 protein regulates germline proliferation, acting as a tumor suppressor when overexpressed. Its function is context-dependent, influencing both cell proliferation and tumor formation.
Area of Science:
- Developmental Biology
- Genetics
- Cancer Research
Background:
- Vertebrate Tob/BTG proteins are known inhibitors of cell proliferation and potential tumor suppressors.
- The C. elegans ortholog, FOG-3, was initially identified as a regulator of sperm fate specification.
Purpose of the Study:
- To investigate the role of FOG-3 in germline proliferation and its potential tumor suppressor function in C. elegans.
- To determine how FOG-3 interacts with other regulators, such as FBF proteins, in controlling cell proliferation and tumorigenesis.
Main Methods:
- Analysis of fog-3 null mutants and heterozygotes to assess germ cell proliferation.
- Overexpression of FOG-3 in fbf-1 fbf-2 double mutants to observe effects on proliferation.
- Investigation of FOG-3 and FBF interaction in promoting tumor formation in animals with oncogenic Notch mutations.
Main Results:
- FOG-3 is a positive regulator of germline proliferation, with null mutants and heterozygotes showing reduced germ cell numbers.
- Overexpressed FOG-3 inhibits germline proliferation, similar to vertebrate Tob/BTG proteins, and can lead to tumor formation.
- FOG-3 and FBF proteins cooperate to promote tumor formation in a context-dependent manner, particularly with oncogenic Notch mutations.
Conclusions:
- FOG-3 exhibits dual roles in proliferation, promoting it in a dosage-dependent manner and inhibiting it when overexpressed.
- FOG-3's function is sensitive to genetic context and gene dosage, impacting both normal development and tumorigenesis.
- These findings provide insights into the conserved functions of Tob/BTG proteins in proliferation control and cancer development.
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