Chronophin coordinates cell leading edge dynamics by controlling active cofilin levels.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 26324884.
- Also identified by DOI 10.1073/pnas.1510945112 and PMC identifier 4577135.
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Abstract
Cofilin, a critical player of actin dynamics, is spatially and temporally regulated to control the direction and force of membrane extension required for cell locomotion. In carcinoma cells, although the signaling pathways regulating cofilin activity to control cell direction have been established, the molecular machinery required to generate the force of the protrusion remains unclear. We show that the cofilin phosphatase chronophin (CIN) spatiotemporally regulates cofilin activity at the cell edge to generate persistent membrane extension. We show that CIN translocates to the leading edge in a PI3-kinase-, Rac1-, and cofilin-dependent manner after EGF stimulation to activate cofilin, promotes actin free barbed end formation, accelerates actin turnover, and enhances membrane protrusion. In addition, we establish that CIN is crucial for the balance of protrusion/retraction events during cell migration. Thus, CIN coordinates the leading edge dynamics by controlling active cofilin levels to promote MTLn3 cell protrusion.
Medical subject headings
- Cofilin 1
- Gene Expression Regulation
- Phosphoprotein Phosphatases