Platelet-derived growth factor receptor association with Na(+)/H(+) exchanger regulatory factor potentiates receptor activity.
dc.contributor.author | Maudsley, S | |
dc.contributor.author | Zamah, AM | |
dc.contributor.author | Rahman, N | |
dc.contributor.author | Blitzer, JT | |
dc.contributor.author | Luttrell, LM | |
dc.contributor.author | Lefkowitz, RJ | |
dc.contributor.author | Hall, RA | |
dc.coverage.spatial | United States | |
dc.date.accessioned | 2013-09-05T17:53:03Z | |
dc.date.issued | 2000-11 | |
dc.description.abstract | Platelet-derived growth factor (PDGF) is a potent mitogen for many cell types. The PDGF receptor (PDGFR) is a receptor tyrosine kinase that mediates the mitogenic effects of PDGF by binding to and/or phosphorylating a variety of intracellular signaling proteins upon PDGF-induced receptor dimerization. We show here that the Na(+)/H(+) exchanger regulatory factor (NHERF; also known as EBP50), a protein not previously known to interact with the PDGFR, binds to the PDGFR carboxyl terminus (PDGFR-CT) with high affinity via a PDZ (PSD-95/Dlg/Z0-1 homology) domain-mediated interaction and potentiates PDGFR autophosphorylation and extracellular signal-regulated kinase (ERK) activation in cells. A point-mutated version of the PDGFR, with the terminal leucine changed to alanine (L1106A), cannot bind NHERF in vitro and is markedly impaired relative to the wild-type receptor with regard to PDGF-induced autophosphorylation and activation of ERK in cells. NHERF potentiation of PDGFR signaling depends on the capacity of NHERF to oligomerize. NHERF oligomerizes in vitro when bound with PDGFR-CT, and a truncated version of the first NHERF PDZ domain that can bind PDGFR-CT but which does not oligomerize reduces PDGFR tyrosine kinase activity when transiently overexpressed in cells. PDGFR activity in cells can also be regulated in a NHERF-dependent fashion by stimulation of the beta(2)-adrenergic receptor, a known cellular binding partner for NHERF. These findings reveal that NHERF can directly bind to the PDGFR and potentiate PDGFR activity, thus elucidating both a novel mechanism by which PDGFR activity can be regulated and a new cellular role for the PDZ domain-containing adapter protein NHERF. | |
dc.identifier | ||
dc.identifier.issn | 0270-7306 | |
dc.identifier.uri | ||
dc.language | eng | |
dc.publisher | American Society for Microbiology | |
dc.relation.ispartof | Mol Cell Biol | |
dc.subject | Amino Acid Motifs | |
dc.subject | Animals | |
dc.subject | CHO Cells | |
dc.subject | Cricetinae | |
dc.subject | Genes, Dominant | |
dc.subject | Mitogen-Activated Protein Kinases | |
dc.subject | Phosphoproteins | |
dc.subject | Phosphorylation | |
dc.subject | Platelet-Derived Growth Factor | |
dc.subject | Point Mutation | |
dc.subject | Receptors, Adrenergic, beta-2 | |
dc.subject | Receptors, Platelet-Derived Growth Factor | |
dc.subject | Recombinant Fusion Proteins | |
dc.subject | Sodium-Hydrogen Antiporter | |
dc.title | Platelet-derived growth factor receptor association with Na(+)/H(+) exchanger regulatory factor potentiates receptor activity. | |
dc.type | Journal article | |
duke.contributor.orcid | Lefkowitz, RJ|0000-0003-1472-7545 | |
pubs.author-url | ||
pubs.begin-page | 8352 | |
pubs.end-page | 8363 | |
pubs.issue | 22 | |
pubs.organisational-group | Basic Science Departments | |
pubs.organisational-group | Biochemistry | |
pubs.organisational-group | Chemistry | |
pubs.organisational-group | Clinical Science Departments | |
pubs.organisational-group | Duke | |
pubs.organisational-group | Duke Cancer Institute | |
pubs.organisational-group | Institutes and Centers | |
pubs.organisational-group | Medicine | |
pubs.organisational-group | Medicine, Cardiology | |
pubs.organisational-group | Pathology | |
pubs.organisational-group | School of Medicine | |
pubs.organisational-group | Trinity College of Arts & Sciences | |
pubs.publication-status | Published | |
pubs.volume | 20 |
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