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A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme

RhoA controls changes in cell morphology and invasion associated with cancer phenotypes. Cell lines derived from melanoma tumors at varying stages revealed that RhoA is selectively activated in cells of metastatic origin. We describe a functional proteomics strategy to identify proteins regulated by...

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Autores principales: Kabuyama, Yukihito, Litman, Elizabeth S., Templeton, Paul D., Metzner, Sandra I., Witze, Eric S., Argast, Gretchen M., Langer, Stephen J., Polvinen, Kirsi, Shellman, Yiqun, Chan, Daniel, Shabb, John B., Fitzpatrick, James E., Resing, Katheryn A., Sousa, Marcelo C., Ahn, Natalie G.
Formato: Texto
Lenguaje:English
Publicado: The American Society for Biochemistry and Molecular Biology 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2758758/
https://www.ncbi.nlm.nih.gov/pubmed/19620624
http://dx.doi.org/10.1074/mcp.M900178-MCP200
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author Kabuyama, Yukihito
Litman, Elizabeth S.
Templeton, Paul D.
Metzner, Sandra I.
Witze, Eric S.
Argast, Gretchen M.
Langer, Stephen J.
Polvinen, Kirsi
Shellman, Yiqun
Chan, Daniel
Shabb, John B.
Fitzpatrick, James E.
Resing, Katheryn A.
Sousa, Marcelo C.
Ahn, Natalie G.
author_facet Kabuyama, Yukihito
Litman, Elizabeth S.
Templeton, Paul D.
Metzner, Sandra I.
Witze, Eric S.
Argast, Gretchen M.
Langer, Stephen J.
Polvinen, Kirsi
Shellman, Yiqun
Chan, Daniel
Shabb, John B.
Fitzpatrick, James E.
Resing, Katheryn A.
Sousa, Marcelo C.
Ahn, Natalie G.
author_sort Kabuyama, Yukihito
collection PubMed
description RhoA controls changes in cell morphology and invasion associated with cancer phenotypes. Cell lines derived from melanoma tumors at varying stages revealed that RhoA is selectively activated in cells of metastatic origin. We describe a functional proteomics strategy to identify proteins regulated by RhoA and report a previously uncharacterized human protein, named “mediator of RhoA-dependent invasion (MRDI),” that is induced in metastatic cells by constitutive RhoA activation and promotes cell invasion. In human melanomas, MRDI localization correlated with stage, showing nuclear localization in nevi and early stage tumors and cytoplasmic localization with plasma membrane accentuation in late stage tumors. Consistent with its role in promoting cell invasion, MRDI localized to cell protrusions and leading edge membranes in cultured cells and was required for cell motility, tyrosine phosphorylation of focal adhesion kinase, and modulation of actin stress fibers. Unexpectedly MRDI had enzymatic function as an isomerase that converts the S-adenosylmethionine catabolite 5-methylribose 1-phosphate into 5-methylribulose 1-phosphate. The enzymatic function of MRDI was required for methionine salvage from S-adenosylmethionine but distinct from its function in cell invasion. Thus, mechanisms used by signal transduction pathways to control cell movement have evolved from proteins with ancient function in amino acid metabolism.
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spelling pubmed-27587582009-10-13 A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme Kabuyama, Yukihito Litman, Elizabeth S. Templeton, Paul D. Metzner, Sandra I. Witze, Eric S. Argast, Gretchen M. Langer, Stephen J. Polvinen, Kirsi Shellman, Yiqun Chan, Daniel Shabb, John B. Fitzpatrick, James E. Resing, Katheryn A. Sousa, Marcelo C. Ahn, Natalie G. Mol Cell Proteomics Research RhoA controls changes in cell morphology and invasion associated with cancer phenotypes. Cell lines derived from melanoma tumors at varying stages revealed that RhoA is selectively activated in cells of metastatic origin. We describe a functional proteomics strategy to identify proteins regulated by RhoA and report a previously uncharacterized human protein, named “mediator of RhoA-dependent invasion (MRDI),” that is induced in metastatic cells by constitutive RhoA activation and promotes cell invasion. In human melanomas, MRDI localization correlated with stage, showing nuclear localization in nevi and early stage tumors and cytoplasmic localization with plasma membrane accentuation in late stage tumors. Consistent with its role in promoting cell invasion, MRDI localized to cell protrusions and leading edge membranes in cultured cells and was required for cell motility, tyrosine phosphorylation of focal adhesion kinase, and modulation of actin stress fibers. Unexpectedly MRDI had enzymatic function as an isomerase that converts the S-adenosylmethionine catabolite 5-methylribose 1-phosphate into 5-methylribulose 1-phosphate. The enzymatic function of MRDI was required for methionine salvage from S-adenosylmethionine but distinct from its function in cell invasion. Thus, mechanisms used by signal transduction pathways to control cell movement have evolved from proteins with ancient function in amino acid metabolism. The American Society for Biochemistry and Molecular Biology 2009-10 2009-07-20 /pmc/articles/PMC2758758/ /pubmed/19620624 http://dx.doi.org/10.1074/mcp.M900178-MCP200 Text en © 2009 by The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice—Final version full access. Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/3.0/) applies to Author Choice Articles
spellingShingle Research
Kabuyama, Yukihito
Litman, Elizabeth S.
Templeton, Paul D.
Metzner, Sandra I.
Witze, Eric S.
Argast, Gretchen M.
Langer, Stephen J.
Polvinen, Kirsi
Shellman, Yiqun
Chan, Daniel
Shabb, John B.
Fitzpatrick, James E.
Resing, Katheryn A.
Sousa, Marcelo C.
Ahn, Natalie G.
A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title_full A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title_fullStr A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title_full_unstemmed A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title_short A Mediator of Rho-dependent Invasion Moonlights as a Methionine Salvage Enzyme
title_sort mediator of rho-dependent invasion moonlights as a methionine salvage enzyme
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2758758/
https://www.ncbi.nlm.nih.gov/pubmed/19620624
http://dx.doi.org/10.1074/mcp.M900178-MCP200
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