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Multiple effector domains within SNT1 coordinate ERK activation and neuronal differentiation of PC12 cells
1Department of Biochemistry and Molecular Biology and Graduate Training Program in Molecular, Cellular, Biochemical, and Developmental Sciences, Mount Sinai School of Medicine, Box 1020, New York, New York 10029, USA.
Abstract:
Differentiation of neuronal precursor cells in response to neurotrophic differentiation factors is accompanied by the activation of membrane-anchored SNT signaling adaptor proteins. Two classes of differentiation factors, the neurotrophins and fibroblast growth factors, induce rapid tyrosine phosphorylation of SNT1(FRS2alpha), which in turn enables SNT1 to recruit Shp2 tyrosine phosphatase and Grb2 adaptor protein in complex with the Ras GDP/GTP exchange factor Sos. To determine effector functions of SNT that promote neuronal differentiation of PC12 pheochromocytoma cells, we engineered a chimeric protein, SNT1(IRS)CX, bearing the effector region of SNT1 and the insulin receptor recognition domains of IRS2. Insulin promoted tyrosine phosphorylation of SNT1(IRS)CX in transfected PC12 cells accompanied by sustained activation of ERK1/2 mitogen-activated protein kinases and neuronal differentiation. The SNT1(IRS)CX-mediated response was dependent on endogenous Ras, MEK, and Shp2 activities. Mutagenesis of SNT1(IRS)CX identified three classes of effector motifs within SNT critical for both sustained ERK activation and neuronal differentiation: 1) four phosphotyrosine motifs that mediate recruitment of Grb2, 2) two phosphotyrosine motifs that mediate recruitment of Shp2, and 3) a C-terminal motif that functions by helping to recruit Sos. We discuss possible mechanisms by which three functionally distinct SNT effector motifs collaborate to promote a downstream biochemical and biological response.
Insights
Signaling adaptor proteins like SNT1 are activated during neuronal differentiation. Specific SNT1 effector motifs are critical for sustained ERK activation and neuronal differentiation, involving recruitment of Grb2, Shp2, and Sos.
Area of Science:
- Molecular Biology
- Cell Signaling
- Neuroscience
Background:
- Neuronal differentiation involves membrane-anchored SNT signaling adaptor proteins.
- Neurotrophins and fibroblast growth factors activate SNT1 (FRS2alpha) via tyrosine phosphorylation.
Purpose of the Study:
- To determine the effector functions of SNT proteins in neuronal differentiation.
- To investigate the role of specific SNT motifs in PC12 cell differentiation.
Main Methods:
- Engineered a chimeric protein SNT1(IRS)CX.
- Utilized PC12 pheochromocytoma cells for transfection and stimulation with insulin.
- Performed mutagenesis of SNT1(IRS)CX to identify critical effector motifs.
Main Results:
- Insulin induced tyrosine phosphorylation of SNT1(IRS)CX, leading to sustained ERK1/2 activation and neuronal differentiation.
- The SNT1(IRS)CX response depended on endogenous Ras, MEK, and Shp2.
- Identified three classes of SNT effector motifs crucial for ERK activation and differentiation: Grb2-recruiting, Shp2-recruiting, and Sos-recruiting motifs.
Conclusions:
- Specific SNT effector motifs collaborate to promote neuronal differentiation.
- SNT adaptor proteins play a key role in integrating upstream signals for neuronal development.
- Understanding SNT function provides insights into neurotrophic factor signaling pathways.