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Updated: Apr 26, 2026

Characterization at the Molecular Level using Robust Biochemical Approaches of a New Kinase Protein
Published on: June 30, 2019
Insulin receptor substrate-4 binds to Slingshot-1 phosphatase and promotes cofilin dephosphorylation
Yuta Homma1, Shin-Ichiro Kanno2, Kazutaka Sasaki1
1Department of Biomolecular Sciences, Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi 980-8578, Japan.
Abstract:
Cofilin plays an essential role in cell migration and morphogenesis by enhancing actin filament dynamics via its actin filament-severing activity. Slingshot-1 (SSH1) is a protein phosphatase that plays a crucial role in regulating actin dynamics by dephosphorylating and reactivating cofilin. In this study, we identified insulin receptor substrate (IRS)-4 as a novel SSH1-binding protein. Co-precipitation assays revealed the direct endogenous binding of IRS4 to SSH1. IRS4, but not IRS1 or IRS2, was bound to SSH1. IRS4 was bound to SSH1 mainly through the unique region (amino acids 335-400) adjacent to the C terminus of the phosphotyrosine-binding domain of IRS4. The N-terminal A, B, and phosphatase domains of SSH1 were bound to IRS4 independently. Whereas in vitro phosphatase assays revealed that IRS4 does not directly affect the cofilin phosphatase activity of SSH1, knockdown of IRS4 increased cofilin phosphorylation in cultured cells. Knockdown of IRS4 decreased phosphatidylinositol 3-kinase (PI3K) activity, and treatment with an inhibitor of PI3K increased cofilin phosphorylation. Akt preferentially phosphorylated SSH1 at Thr-826, but expression of a non-phosphorylatable T826A mutant of SSH1 did not affect insulin-induced cofilin dephosphorylation, and an inhibitor of Akt did not increase cofilin phosphorylation. These results suggest that IRS4 promotes cofilin dephosphorylation through sequential activation of PI3K and SSH1 but not through Akt. In addition, IRS4 co-localized with SSH1 in F-actin-rich membrane protrusions in insulin-stimulated cells, which suggests that the association of IRS4 with SSH1 contributes to localized activation of cofilin in membrane protrusions.
Insights
Insulin receptor substrate-4 (IRS4) directly binds Slingshot-1 phosphatase (SSH1) to promote cofilin dephosphorylation via PI3K activation, not Akt, aiding cell migration.
Area of Science:
- Cell Biology
- Molecular Biology
- Biochemistry
Background:
- Cofilin regulates actin dynamics essential for cell migration and morphogenesis.
- Slingshot-1 (SSH1) phosphatase reactivates cofilin by dephosphorylation.
- The regulation of SSH1 activity in cellular processes remains incompletely understood.
Purpose of the Study:
- To identify novel binding partners of SSH1.
- To elucidate the role of insulin receptor substrate-4 (IRS4) in cofilin regulation.
- To investigate the signaling pathway linking IRS4, SSH1, and cofilin activity.
Main Methods:
- Co-precipitation assays to confirm direct binding between IRS4 and SSH1.
- In vitro phosphatase assays to assess the effect of IRS4 on SSH1 activity.
- Cellular knockdown experiments and PI3K/Akt pathway inhibition to study cofilin phosphorylation.
- Immunofluorescence microscopy to analyze co-localization of IRS4 and SSH1.
Main Results:
- IRS4 directly binds to SSH1, independent of IRS1 and IRS2.
- IRS4 binding to SSH1 is mediated by IRS4's unique region and SSH1's N-terminal domains.
- IRS4 knockdown increases cofilin phosphorylation and decreases PI3K activity.
- IRS4 promotes cofilin dephosphorylation via PI3K and SSH1 activation, independent of Akt.
- IRS4 and SSH1 co-localize in F-actin-rich membrane protrusions upon insulin stimulation.
Conclusions:
- IRS4 is a novel binding protein for SSH1, regulating cofilin dephosphorylation.
- The IRS4-SSH1 interaction promotes cofilin activation through the PI3K pathway.
- IRS4-mediated localized cofilin activation in membrane protrusions is crucial for insulin-stimulated cellular responses.
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