Differential involvement of the microtubule cytoskeleton in insulin receptor substrate 1 (IRS-1) and IRS-2 signaling to AKT determines the response to microtubule disruption in breast carcinoma cells
The insulin receptor substrate (IRS) proteins serve as essential signaling intermediates for the activation of PI3K by both the insulin-like growth factor 1 receptor (IGF-1R) and its close family member, the insulin receptor (IR). Although IRS-1 and IRS-2 share significant homology, they regulate distinct cellular responses downstream of these receptors and play divergent roles in breast cancer. To investigate the mechanism by which signaling through IRS-1 and IRS-2 results in differential outcomes, we assessed the involvement of the microtubule cytoskeleton in IRS-dependent signaling. Treatment with drugs that either stabilize or disrupt microtubules reveal that an intact microtubule cytoskeleton contributes to IRS-2- but not IRS-1-mediated activation of AKT by IGF-1. Proximal IGF-1R signaling events, including IRS tyrosine phosphorylation and recruitment of PI3K, are not inhibited by microtubule disruption, indicating that IRS-2 requires the microtubule cytoskeleton at the level of downstream effector activation. IRS-2 colocalization with tubulin is enhanced upon Taxol-mediated microtubule stabilization, which, together with the signaling data, suggests that the microtubule cytoskeleton may facilitate access of IRS-2 to downstream effectors such as AKT. Of clinical relevance is that our data reveal that expression of IRS-2 sensitizes breast carcinoma cells to apoptosis in response to treatment with microtubule-disrupting drugs, identifying IRS-2 as a potential biomarker for the response of breast cancer patients to Vinca alkaloid drug treatment.
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Univ Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Beth Israel Deaconess Med Ctr, Dept Med, Boston, MA 02215 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Piper, Andrew J.
Clark, Jennifer L.
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Univ Massachusetts, Sch Med, Dept Pathol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Clark, Jennifer L.
Mercado-Matos, Jose
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Univ Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Mercado-Matos, Jose
Matthew-Onabanjo, Asia N.
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Univ Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Matthew-Onabanjo, Asia N.
Hsieh, Chung-Cheng
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Univ Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Hsieh, Chung-Cheng
Akalin, Ali
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Univ Massachusetts, Sch Med, Dept Pathol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA
Akalin, Ali
Shaw, Leslie M.
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Univ Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USAUniv Massachusetts, Med Sch, Dept Mol Cell & Canc Biol, Worcester, MA 01605 USA