Involvement of Shc in insulin- and epidermal growth factor-induced activation of p21ras

G J Pronk1, A M de Vries-Smits, L Buday

  • 1Laboratory for Physiological Chemistry, Utrecht University, The Netherlands.

Insights

Shc proteins link insulin and EGF signaling to p21ras activation by binding Grb2 and mSOS. This interaction is crucial for cellular responses to these growth factors.

Area of Science:

  • Cellular signaling pathways
  • Molecular biology
  • Signal transduction

Background:

  • Shc proteins are key mediators in growth factor signaling.
  • Tyrosine phosphorylation of Shc is an early event upon growth factor stimulation.
  • Shc proteins associate with Grb2 (growth factor receptor-bound protein 2).

Purpose of the Study:

  • To investigate the role of Shc proteins in insulin- and epidermal growth factor (EGF)-induced p21ras activation.
  • To elucidate the molecular interactions between Shc, Grb2, and mSOS in response to insulin and EGF.
  • To determine if Shc mediates the association of signaling molecules with the insulin receptor or its substrates.

Main Methods:

  • Overexpression of human insulin receptors in NIH 3T3 cells (A14 cells).
  • Stimulation with insulin and EGF.
  • Immunoprecipitation assays to detect protein-protein interactions and tyrosine phosphorylation.
  • In vitro guanine nucleotide exchange assays on p21ras.

Main Results:

  • Both insulin and EGF induced Shc tyrosine phosphorylation and association with Grb2 and mSOS.
  • Shc immune complexes exhibited guanine nucleotide exchange activity toward p21ras.
  • Grb2 associated with insulin receptor substrate 1 (IRS1), but mSOS did not associate with IRS1.
  • mSOS associated with the EGF receptor upon EGF stimulation, but not with the insulin receptor upon insulin stimulation.

Conclusions:

  • Shc proteins act as adaptors, mediating the association of Grb2 and mSOS, which is essential for insulin- and EGF-induced p21ras activation.
  • The association of Grb2-mSOS with Shc is a critical step in insulin-induced, mSOS-mediated p21ras activation.
  • Shc's role in linking receptor tyrosine kinases to downstream signaling pathways like the Ras/MAPK pathway is highlighted.

Related Concept Videos

The Ras Gene02:38

The Ras Gene

The Ras-gene-encoded proteins are regulators of signaling pathways controlling cell proliferation, differentiation, or cell survival. The Ras-gene family in humans constitutes three primary members—the HRas, NRas, and KRas. These genes code for four functionally distinct yet closely related proteins—the HRas, NRas, KRas4A, and KRas4B. The involvement of mutant Ras genes in human cancer was first discovered in 1982 and is among the most common causes of human tumorigenesis.
Ras is a superfamily...
Interactions Between Signaling Pathways01:19

Interactions Between Signaling Pathways

Signaling cascades usually lack linearity. Multiple pathways interact and regulate one another, allowing cells to integrate and respond to diverse environmental stimuli.
Convergence and divergence, and cross-talk between signaling pathways
Two distinct signaling pathways can converge on a single functional unit, which may either be a single protein or a complex of proteins. The response is either functionally distinct or synergistic between the two pathways but different from the response...
MAPK Signaling Cascades01:07

MAPK Signaling Cascades

Mitogen-activated protein kinase, or MAPK pathway, activates three sequential kinases to regulate cellular responses such as proliferation, differentiation, survival, and apoptosis. The canonical MAPK pathway starts with a mitogen or growth factor binding to an RTK. The activated RTKs stimulate Ras, which recruits Raf or MAP3 Kinase (MAPKKK), the first kinase of the MAPK signaling cascade. Raf further phosphorylates and activates MEK or MAP2 Kinases (MAPKK), which in turn phosphorylates MAP...
The JAK-STAT Signaling Pathway01:20

The JAK-STAT Signaling Pathway

Several cytokine receptors have tightly bound Janus kinase or JAK proteins attached at their cytosolic tail. Small signaling molecules such as cytokines, growth hormones, or prolactins bind to the cytokine receptors and initiate their dimerization. The dimerization brings the cytosolic JAKs together that trans-phosphorylate and activates each other. The activated JAKs now phosphorylate cytosolic tails of the cytokine receptors, which serve as binding sites for adaptor proteins such as  SH2...
PI3K/mTOR/AKT Signaling Pathway01:22

PI3K/mTOR/AKT Signaling Pathway

The mammalian target of rapamycin  (mTOR) is a serine/threonine kinase that regulates growth, proliferation, and cell survival in response to hormones, growth factors, or nutrient availability. This kinase exists in two structurally and functionally distinct forms: mTOR complex 1  (mTORC1) and mTOR complex 2  (mTORC2). The first form (mTORC1) is composed of a rapamycin-sensitive Raptor and proline-rich Akt substrate, PRAS40. In contrast,  mTORC2 consists of a rapamycin-insensitive companion...
Insulin: The Receptor and Signaling Pathways01:28

Insulin: The Receptor and Signaling Pathways

Insulin action is mediated through a receptor tyrosine kinase, akin to the IGF-1 receptor. The number of receptors per cell varies significantly, from 40 on erythrocytes to 300,000 on adipocytes and hepatocytes. The insulin receptor consists of linked α/β subunit dimers, forming a heterotetramer glycoprotein with two extracellular α subunits and two β subunits spanning the membrane. The α subunits inhibit the inherent tyrosine kinase activity of the β subunits, but this inhibition is released...