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Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer

N-acetyl-aspartyl-glutamate (NAAG) is a peptide-based neurotransmitter that has been extensively studied in many neurological diseases. In this study, we show a specific role of NAAG in cancer. We found that NAAG is more abundant in higher grade cancers and is a source of glutamate in cancers expres...

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Autores principales: Nguyen, Tu, Kirsch, Brian James, Asaka, Ryoichi, Nabi, Karim, Quinones, Addison, Tan, Jessica, Antonio, Marjorie Justine, Camelo, Felipe, Li, Ting, Nguyen, Stephanie, Hoang, Giang, Nguyen, Kiet, Udupa, Sunag, Sazeides, Christos, Shen, Yao-An, Elgogary, Amira, Reyes, Juvenal, Zhao, Liang, Kleensang, Andre, Chaichana, Kaisorn Lee, Hartung, Thomas, Betenbaugh, Michael J., Marie, Suely K., Jung, Jin G., Wang, Tian-Li, Gabrielson, Edward, Le, Anne
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6472703/
https://www.ncbi.nlm.nih.gov/pubmed/30970252
http://dx.doi.org/10.1016/j.celrep.2019.03.036
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author Nguyen, Tu
Kirsch, Brian James
Asaka, Ryoichi
Nabi, Karim
Quinones, Addison
Tan, Jessica
Antonio, Marjorie Justine
Camelo, Felipe
Li, Ting
Nguyen, Stephanie
Hoang, Giang
Nguyen, Kiet
Udupa, Sunag
Sazeides, Christos
Shen, Yao-An
Elgogary, Amira
Reyes, Juvenal
Zhao, Liang
Kleensang, Andre
Chaichana, Kaisorn Lee
Hartung, Thomas
Betenbaugh, Michael J.
Marie, Suely K.
Jung, Jin G.
Wang, Tian-Li
Gabrielson, Edward
Le, Anne
author_facet Nguyen, Tu
Kirsch, Brian James
Asaka, Ryoichi
Nabi, Karim
Quinones, Addison
Tan, Jessica
Antonio, Marjorie Justine
Camelo, Felipe
Li, Ting
Nguyen, Stephanie
Hoang, Giang
Nguyen, Kiet
Udupa, Sunag
Sazeides, Christos
Shen, Yao-An
Elgogary, Amira
Reyes, Juvenal
Zhao, Liang
Kleensang, Andre
Chaichana, Kaisorn Lee
Hartung, Thomas
Betenbaugh, Michael J.
Marie, Suely K.
Jung, Jin G.
Wang, Tian-Li
Gabrielson, Edward
Le, Anne
author_sort Nguyen, Tu
collection PubMed
description N-acetyl-aspartyl-glutamate (NAAG) is a peptide-based neurotransmitter that has been extensively studied in many neurological diseases. In this study, we show a specific role of NAAG in cancer. We found that NAAG is more abundant in higher grade cancers and is a source of glutamate in cancers expressing glutamate carboxypeptidase II (GCPII), the enzyme that hydrolyzes NAAG to glutamate and N-acetyl-aspartate (NAA). Knocking down GCPII expression through genetic alteration or pharmacological inhibition of GCPII results in a reduction of both glutamate concentrations and cancer growth. Moreover, targeting GCPII in combination with glutaminase inhibition accentuates these effects. These findings suggest that NAAG serves as an important reservoir to provide glutamate to cancer cells through GCPII when glutamate production from other sources is limited. Thus, GCPII is a viable target for cancer therapy, either alone or in combination with glutaminase inhibition.
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spelling pubmed-64727032019-04-18 Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer Nguyen, Tu Kirsch, Brian James Asaka, Ryoichi Nabi, Karim Quinones, Addison Tan, Jessica Antonio, Marjorie Justine Camelo, Felipe Li, Ting Nguyen, Stephanie Hoang, Giang Nguyen, Kiet Udupa, Sunag Sazeides, Christos Shen, Yao-An Elgogary, Amira Reyes, Juvenal Zhao, Liang Kleensang, Andre Chaichana, Kaisorn Lee Hartung, Thomas Betenbaugh, Michael J. Marie, Suely K. Jung, Jin G. Wang, Tian-Li Gabrielson, Edward Le, Anne Cell Rep Article N-acetyl-aspartyl-glutamate (NAAG) is a peptide-based neurotransmitter that has been extensively studied in many neurological diseases. In this study, we show a specific role of NAAG in cancer. We found that NAAG is more abundant in higher grade cancers and is a source of glutamate in cancers expressing glutamate carboxypeptidase II (GCPII), the enzyme that hydrolyzes NAAG to glutamate and N-acetyl-aspartate (NAA). Knocking down GCPII expression through genetic alteration or pharmacological inhibition of GCPII results in a reduction of both glutamate concentrations and cancer growth. Moreover, targeting GCPII in combination with glutaminase inhibition accentuates these effects. These findings suggest that NAAG serves as an important reservoir to provide glutamate to cancer cells through GCPII when glutamate production from other sources is limited. Thus, GCPII is a viable target for cancer therapy, either alone or in combination with glutaminase inhibition. 2019-04-09 /pmc/articles/PMC6472703/ /pubmed/30970252 http://dx.doi.org/10.1016/j.celrep.2019.03.036 Text en This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Article
Nguyen, Tu
Kirsch, Brian James
Asaka, Ryoichi
Nabi, Karim
Quinones, Addison
Tan, Jessica
Antonio, Marjorie Justine
Camelo, Felipe
Li, Ting
Nguyen, Stephanie
Hoang, Giang
Nguyen, Kiet
Udupa, Sunag
Sazeides, Christos
Shen, Yao-An
Elgogary, Amira
Reyes, Juvenal
Zhao, Liang
Kleensang, Andre
Chaichana, Kaisorn Lee
Hartung, Thomas
Betenbaugh, Michael J.
Marie, Suely K.
Jung, Jin G.
Wang, Tian-Li
Gabrielson, Edward
Le, Anne
Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title_full Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title_fullStr Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title_full_unstemmed Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title_short Uncovering the Role of N-Acetyl-Aspartyl-Glutamate as a Glutamate Reservoir in Cancer
title_sort uncovering the role of n-acetyl-aspartyl-glutamate as a glutamate reservoir in cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6472703/
https://www.ncbi.nlm.nih.gov/pubmed/30970252
http://dx.doi.org/10.1016/j.celrep.2019.03.036
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