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Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A
The metastasis suppressor protein NME1 is an evolutionarily conserved and multifunctional enzyme that plays an important role in suppressing the invasion and metastasis of tumour cells. The nucleoside diphosphate kinase (NDPK) activity of NME1 is well recognized in balancing the intracellular pools...
Autores principales: | , , , , , , , , , , , , |
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Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2021
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Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8212152/ https://www.ncbi.nlm.nih.gov/pubmed/33903070 http://dx.doi.org/10.1016/j.redox.2021.101978 |
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author | Yu, Bess Yi Kun Tossounian, Maria-Armineh Hristov, Stefan Denchev Lawrence, Ryan Arora, Pallavi Tsuchiya, Yugo Peak-Chew, Sew Yeu Filonenko, Valeriy Oxenford, Sally Angell, Richard Gouge, Jerome Skehel, Mark Gout, Ivan |
author_facet | Yu, Bess Yi Kun Tossounian, Maria-Armineh Hristov, Stefan Denchev Lawrence, Ryan Arora, Pallavi Tsuchiya, Yugo Peak-Chew, Sew Yeu Filonenko, Valeriy Oxenford, Sally Angell, Richard Gouge, Jerome Skehel, Mark Gout, Ivan |
author_sort | Yu, Bess Yi Kun |
collection | PubMed |
description | The metastasis suppressor protein NME1 is an evolutionarily conserved and multifunctional enzyme that plays an important role in suppressing the invasion and metastasis of tumour cells. The nucleoside diphosphate kinase (NDPK) activity of NME1 is well recognized in balancing the intracellular pools of nucleotide diphosphates and triphosphates to regulate cytoskeletal rearrangement and cell motility, endocytosis, intracellular trafficking, and metastasis. In addition, NME1 was found to function as a protein-histidine kinase, 3′-5′ exonuclease and geranyl/farnesyl pyrophosphate kinase. These diverse cellular functions are regulated at the level of expression, post-translational modifications, and regulatory interactions. The NDPK activity of NME1 has been shown to be inhibited in vitro and in vivo under oxidative stress, and the inhibitory effect mediated via redox-sensitive cysteine residues. In this study, affinity purification followed by mass spectrometric analysis revealed NME1 to be a major coenzyme A (CoA) binding protein in cultured cells and rat tissues. NME1 is also found covalently modified by CoA (CoAlation) at Cys109 in the CoAlome analysis of HEK293/Pank1β cells treated with the disulfide-stress inducer, diamide. Further analysis showed that recombinant NME1 is efficiently CoAlated in vitro and in cellular response to oxidising agents and metabolic stress. In vitro CoAlation of recombinant wild type NME1, but not the C109A mutant, results in the inhibition of its NDPK activity. Moreover, CoA also functions as a competitive inhibitor of the NME1 NDPK activity by binding non-covalently to the nucleotide binding site. Taken together, our data reveal metastasis suppressor protein NME1 as a novel binding partner of the key metabolic regulator CoA, which inhibits its nucleoside diphosphate kinase activity via non-covalent and covalent interactions. |
format | Online Article Text |
id | pubmed-8212152 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2021 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-82121522021-06-25 Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A Yu, Bess Yi Kun Tossounian, Maria-Armineh Hristov, Stefan Denchev Lawrence, Ryan Arora, Pallavi Tsuchiya, Yugo Peak-Chew, Sew Yeu Filonenko, Valeriy Oxenford, Sally Angell, Richard Gouge, Jerome Skehel, Mark Gout, Ivan Redox Biol Articles from the Special Issue on Low Molecular Weight Thiols: Lessons Learned and New Perspectives; Edited by Dr. Barry Halliwell and Dr. Ivan Gout The metastasis suppressor protein NME1 is an evolutionarily conserved and multifunctional enzyme that plays an important role in suppressing the invasion and metastasis of tumour cells. The nucleoside diphosphate kinase (NDPK) activity of NME1 is well recognized in balancing the intracellular pools of nucleotide diphosphates and triphosphates to regulate cytoskeletal rearrangement and cell motility, endocytosis, intracellular trafficking, and metastasis. In addition, NME1 was found to function as a protein-histidine kinase, 3′-5′ exonuclease and geranyl/farnesyl pyrophosphate kinase. These diverse cellular functions are regulated at the level of expression, post-translational modifications, and regulatory interactions. The NDPK activity of NME1 has been shown to be inhibited in vitro and in vivo under oxidative stress, and the inhibitory effect mediated via redox-sensitive cysteine residues. In this study, affinity purification followed by mass spectrometric analysis revealed NME1 to be a major coenzyme A (CoA) binding protein in cultured cells and rat tissues. NME1 is also found covalently modified by CoA (CoAlation) at Cys109 in the CoAlome analysis of HEK293/Pank1β cells treated with the disulfide-stress inducer, diamide. Further analysis showed that recombinant NME1 is efficiently CoAlated in vitro and in cellular response to oxidising agents and metabolic stress. In vitro CoAlation of recombinant wild type NME1, but not the C109A mutant, results in the inhibition of its NDPK activity. Moreover, CoA also functions as a competitive inhibitor of the NME1 NDPK activity by binding non-covalently to the nucleotide binding site. Taken together, our data reveal metastasis suppressor protein NME1 as a novel binding partner of the key metabolic regulator CoA, which inhibits its nucleoside diphosphate kinase activity via non-covalent and covalent interactions. Elsevier 2021-04-15 /pmc/articles/PMC8212152/ /pubmed/33903070 http://dx.doi.org/10.1016/j.redox.2021.101978 Text en © 2021 The Author(s) https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). |
spellingShingle | Articles from the Special Issue on Low Molecular Weight Thiols: Lessons Learned and New Perspectives; Edited by Dr. Barry Halliwell and Dr. Ivan Gout Yu, Bess Yi Kun Tossounian, Maria-Armineh Hristov, Stefan Denchev Lawrence, Ryan Arora, Pallavi Tsuchiya, Yugo Peak-Chew, Sew Yeu Filonenko, Valeriy Oxenford, Sally Angell, Richard Gouge, Jerome Skehel, Mark Gout, Ivan Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title | Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title_full | Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title_fullStr | Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title_full_unstemmed | Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title_short | Regulation of metastasis suppressor NME1 by a key metabolic cofactor coenzyme A |
title_sort | regulation of metastasis suppressor nme1 by a key metabolic cofactor coenzyme a |
topic | Articles from the Special Issue on Low Molecular Weight Thiols: Lessons Learned and New Perspectives; Edited by Dr. Barry Halliwell and Dr. Ivan Gout |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8212152/ https://www.ncbi.nlm.nih.gov/pubmed/33903070 http://dx.doi.org/10.1016/j.redox.2021.101978 |
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