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Published on: January 24, 2016
Activation and repression of cellular immediate early genes by serum response factor cofactors
Seung-Min Lee1, Mansi Vasishtha, Ron Prywes
1Department of Biological Sciences, Columbia University, New York, New York 10027, USA.
Abstract:
The induction of expression of many cellular immediate early genes (IEG) involves the transcription factor serum response factor (SRF). Two families of SRF coactivators have also been implicated in IEG induction, the ternary complex factors (TCFs), ELK1, Sap1, and Net, and the myocardin-related factors, MKL1 and MKL2. We found that serum induction of some SRF target genes is preferentially regulated by MKL1/2, whereas others are redundantly activated by both TCFs and MKL1/2. Yet ELK1 can also repress transcription. Binding of ELK1 and MKL1 to SRF has been found to be mutually exclusive in vitro, suggesting that ELK1 could repress expression of IEGs by blocking MKL1 binding. We characterized the in vivo binding of MKL1 and ELK1 to target genes and found an inverse relationship of serum-induced MKL1 binding and serum-decreased ELK1 binding. However, experiments with short hairpin RNA-mediated MKL1/2 depletion and expression of a nuclear MKL1 (N100) variant in stably transfected cells failed to alter ELK1 binding, suggesting that ELK1 binding to target genes is regulated independently of MKL1/2. Nevertheless, we found that short interfering RNA-mediated depletion of TCFs increased target gene expression in cells containing the N100 MKL1 activator, most notably in cells under continuous growth conditions. These results indicate that the TCFs can function both as activators and repressors of target gene expression depending upon the cellular growth conditions.
Insights
Serum response factor (SRF) coactivators, ternary complex factors (TCFs) and myocardin-related factors (MKLs), differentially regulate immediate early gene (IEG) expression. TCFs act as both activators and repressors depending on cellular conditions.
Area of Science:
- Molecular Biology
- Gene Regulation
- Cellular Signaling
Background:
- Immediate early genes (IEGs) are crucial for cellular responses.
- Serum response factor (SRF) and its coactivators, ternary complex factors (TCFs) and myocardin-related factors (MKLs), regulate IEG induction.
- TCFs (ELK1, Sap1, Net) and MKLs (MKL1, MKL2) exhibit distinct roles in gene activation.
Purpose of the Study:
- To investigate the in vivo binding dynamics of MKL1 and ELK1 to SRF target genes.
- To elucidate the regulatory mechanisms by which TCFs and MKLs control IEG expression.
- To determine the functional roles of TCFs as activators or repressors under different cellular conditions.
Main Methods:
- In vivo characterization of MKL1 and ELK1 binding to target genes.
- Short hairpin RNA (shRNA)-mediated depletion of MKL1/2.
- Expression of a nuclear MKL1 (N100) variant.
- Short interfering RNA (siRNA)-mediated depletion of TCFs.
Main Results:
- Serum induction showed an inverse relationship between MKL1 binding and ELK1 binding.
- MKL1/2 depletion or N100 variant expression did not affect ELK1 binding, indicating independent regulation.
- TCF depletion enhanced target gene expression, particularly under continuous growth conditions, when MKL1 was present.
Conclusions:
- TCFs can function as both transcriptional activators and repressors.
- The dual role of TCFs is dependent on cellular growth conditions.
- Differential regulation of IEGs by SRF coactivators provides insights into cellular responses.
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