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Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2

Extracellular-signal regulated kinase (ERK) signaling is required for a multitude of physiological and patho-physiological processes. However, the identities of the proteins that ERK phosphorylates to elicit these responses are incompletely known. Using an affinity purification methodology of genera...

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Autores principales: Pullikuth, Ashok K., Ozdemir, Aysun, Cardenas, Daviel, Bailey, Evangeline, Sherman, Nicholas E., Pfister, K. Kevin, Catling, Andrew D.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3588060/
https://www.ncbi.nlm.nih.gov/pubmed/23434660
http://dx.doi.org/10.3390/ijms14023595
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author Pullikuth, Ashok K.
Ozdemir, Aysun
Cardenas, Daviel
Bailey, Evangeline
Sherman, Nicholas E.
Pfister, K. Kevin
Catling, Andrew D.
author_facet Pullikuth, Ashok K.
Ozdemir, Aysun
Cardenas, Daviel
Bailey, Evangeline
Sherman, Nicholas E.
Pfister, K. Kevin
Catling, Andrew D.
author_sort Pullikuth, Ashok K.
collection PubMed
description Extracellular-signal regulated kinase (ERK) signaling is required for a multitude of physiological and patho-physiological processes. However, the identities of the proteins that ERK phosphorylates to elicit these responses are incompletely known. Using an affinity purification methodology of general utility, here we identify cytoplasmic dynein intermediate chain 2 (DYNC1I-2, IC-2) as a novel substrate for ERK following epidermal growth factor receptor stimulation of fibroblasts. IC-2 is a subunit of cytoplasmic dynein, a minus-end directed motor protein necessary for transport of diverse cargos along microtubules. Emerging data support the hypothesis that post-translational modification regulates dynein but the signaling mechanisms used are currently unknown. We find that ERK phosphorylates IC-2 on a novel, highly conserved Serine residue proximal to the binding site for the p150(Glued) subunit of the cargo adapter dynactin. Surprisingly, neither constitutive phosphorylation nor a phosphomimetic substitution of this Serine influences binding of p150(Glued) to IC-2. These data suggest that ERK phosphorylation of IC-2 regulates dynein function through mechanisms other than its interaction with dynactin.
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spelling pubmed-35880602013-03-13 Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2 Pullikuth, Ashok K. Ozdemir, Aysun Cardenas, Daviel Bailey, Evangeline Sherman, Nicholas E. Pfister, K. Kevin Catling, Andrew D. Int J Mol Sci Article Extracellular-signal regulated kinase (ERK) signaling is required for a multitude of physiological and patho-physiological processes. However, the identities of the proteins that ERK phosphorylates to elicit these responses are incompletely known. Using an affinity purification methodology of general utility, here we identify cytoplasmic dynein intermediate chain 2 (DYNC1I-2, IC-2) as a novel substrate for ERK following epidermal growth factor receptor stimulation of fibroblasts. IC-2 is a subunit of cytoplasmic dynein, a minus-end directed motor protein necessary for transport of diverse cargos along microtubules. Emerging data support the hypothesis that post-translational modification regulates dynein but the signaling mechanisms used are currently unknown. We find that ERK phosphorylates IC-2 on a novel, highly conserved Serine residue proximal to the binding site for the p150(Glued) subunit of the cargo adapter dynactin. Surprisingly, neither constitutive phosphorylation nor a phosphomimetic substitution of this Serine influences binding of p150(Glued) to IC-2. These data suggest that ERK phosphorylation of IC-2 regulates dynein function through mechanisms other than its interaction with dynactin. MDPI 2013-02-07 /pmc/articles/PMC3588060/ /pubmed/23434660 http://dx.doi.org/10.3390/ijms14023595 Text en © 2013 by the authors; licensee Molecular Diversity Preservation International, Basel, Switzerland. http://creativecommons.org/licenses/by/3.0 This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution license (http://creativecommons.org/licenses/by/3.0/).
spellingShingle Article
Pullikuth, Ashok K.
Ozdemir, Aysun
Cardenas, Daviel
Bailey, Evangeline
Sherman, Nicholas E.
Pfister, K. Kevin
Catling, Andrew D.
Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title_full Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title_fullStr Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title_full_unstemmed Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title_short Epidermal Growth Factor Stimulates Extracellular-Signal Regulated Kinase Phosphorylation of a Novel Site on Cytoplasmic Dynein Intermediate Chain 2
title_sort epidermal growth factor stimulates extracellular-signal regulated kinase phosphorylation of a novel site on cytoplasmic dynein intermediate chain 2
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3588060/
https://www.ncbi.nlm.nih.gov/pubmed/23434660
http://dx.doi.org/10.3390/ijms14023595
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