Cargando…

Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer

Past chemopreventive human trials on dietary selenium supplements produced controversial outcomes. They largely employed selenomethionine (SeM)-based diets. SeM was less toxic than selenite or methylseleninic acid (MSeA) to lung cancer cells. We thus investigated the toxic action of these Se agents...

Descripción completa

Detalles Bibliográficos
Autores principales: Fan, Teresa W.-M., Winnike, Jason, Al-Attar, Ahmad, Belshoff, Alexander C., Lorkiewicz, Pawel K., Tan, Jin Lian, Wu, Min, Higashi, Richard M., Lane, Andrew N.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383978/
https://www.ncbi.nlm.nih.gov/pubmed/37512481
http://dx.doi.org/10.3390/metabo13070774
_version_ 1785081044178829312
author Fan, Teresa W.-M.
Winnike, Jason
Al-Attar, Ahmad
Belshoff, Alexander C.
Lorkiewicz, Pawel K.
Tan, Jin Lian
Wu, Min
Higashi, Richard M.
Lane, Andrew N.
author_facet Fan, Teresa W.-M.
Winnike, Jason
Al-Attar, Ahmad
Belshoff, Alexander C.
Lorkiewicz, Pawel K.
Tan, Jin Lian
Wu, Min
Higashi, Richard M.
Lane, Andrew N.
author_sort Fan, Teresa W.-M.
collection PubMed
description Past chemopreventive human trials on dietary selenium supplements produced controversial outcomes. They largely employed selenomethionine (SeM)-based diets. SeM was less toxic than selenite or methylseleninic acid (MSeA) to lung cancer cells. We thus investigated the toxic action of these Se agents in two non-small cell lung cancer (NSCLC) cell lines and ex vivo organotypic cultures (OTC) of NSCLC patient lung tissues. Stable isotope-resolved metabolomics (SIRM) using (13)C(6)-glucose and (13)C(5,)(15)N(2)-glutamine tracers with gene knockdowns were employed to examine metabolic dysregulations associated with cell type- and treatment-dependent phenotypic changes. Inhibition of key anaplerotic processes, pyruvate carboxylation (PyC) and glutaminolysis were elicited by exposure to MSeA and selenite but not by SeM. They were accompanied by distinct anabolic dysregulation and reflected cell type-dependent changes in proliferation/death/cell cycle arrest. NSCLC OTC showed similar responses of PyC and/or glutaminolysis to the three agents, which correlated with tissue damages. Altogether, we found differential perturbations in anaplerosis-fueled anabolic pathways to underlie the distinct anti-cancer actions of the three Se agents, which could also explain the failure of SeM-based chemoprevention trials.
format Online
Article
Text
id pubmed-10383978
institution National Center for Biotechnology Information
language English
publishDate 2023
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-103839782023-07-30 Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer Fan, Teresa W.-M. Winnike, Jason Al-Attar, Ahmad Belshoff, Alexander C. Lorkiewicz, Pawel K. Tan, Jin Lian Wu, Min Higashi, Richard M. Lane, Andrew N. Metabolites Article Past chemopreventive human trials on dietary selenium supplements produced controversial outcomes. They largely employed selenomethionine (SeM)-based diets. SeM was less toxic than selenite or methylseleninic acid (MSeA) to lung cancer cells. We thus investigated the toxic action of these Se agents in two non-small cell lung cancer (NSCLC) cell lines and ex vivo organotypic cultures (OTC) of NSCLC patient lung tissues. Stable isotope-resolved metabolomics (SIRM) using (13)C(6)-glucose and (13)C(5,)(15)N(2)-glutamine tracers with gene knockdowns were employed to examine metabolic dysregulations associated with cell type- and treatment-dependent phenotypic changes. Inhibition of key anaplerotic processes, pyruvate carboxylation (PyC) and glutaminolysis were elicited by exposure to MSeA and selenite but not by SeM. They were accompanied by distinct anabolic dysregulation and reflected cell type-dependent changes in proliferation/death/cell cycle arrest. NSCLC OTC showed similar responses of PyC and/or glutaminolysis to the three agents, which correlated with tissue damages. Altogether, we found differential perturbations in anaplerosis-fueled anabolic pathways to underlie the distinct anti-cancer actions of the three Se agents, which could also explain the failure of SeM-based chemoprevention trials. MDPI 2023-06-21 /pmc/articles/PMC10383978/ /pubmed/37512481 http://dx.doi.org/10.3390/metabo13070774 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Fan, Teresa W.-M.
Winnike, Jason
Al-Attar, Ahmad
Belshoff, Alexander C.
Lorkiewicz, Pawel K.
Tan, Jin Lian
Wu, Min
Higashi, Richard M.
Lane, Andrew N.
Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title_full Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title_fullStr Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title_full_unstemmed Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title_short Differential Inhibition of Anaplerotic Pyruvate Carboxylation and Glutaminolysis-Fueled Anabolism Underlies Distinct Toxicity of Selenium Agents in Human Lung Cancer
title_sort differential inhibition of anaplerotic pyruvate carboxylation and glutaminolysis-fueled anabolism underlies distinct toxicity of selenium agents in human lung cancer
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10383978/
https://www.ncbi.nlm.nih.gov/pubmed/37512481
http://dx.doi.org/10.3390/metabo13070774
work_keys_str_mv AT fanteresawm differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT winnikejason differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT alattarahmad differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT belshoffalexanderc differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT lorkiewiczpawelk differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT tanjinlian differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT wumin differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT higashirichardm differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer
AT laneandrewn differentialinhibitionofanapleroticpyruvatecarboxylationandglutaminolysisfueledanabolismunderliesdistincttoxicityofseleniumagentsinhumanlungcancer