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SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids

Increased metabolism is a requirement for tumor cell proliferation. To understand the dependence of tumor cells on fatty acid metabolism, we evaluated various nodes of the fatty acid synthesis pathway. Using RNAi we have demonstrated that depletion of fatty-acid synthesis pathway enzymes SCD1, FASN,...

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Autores principales: Mason, Paul, Liang, Beirong, Li, Lingyun, Fremgen, Trisha, Murphy, Erin, Quinn, Angela, Madden, Stephen L., Biemann, Hans-Peter, Wang, Bing, Cohen, Aharon, Komarnitsky, Svetlana, Jancsics, Kate, Hirth, Brad, Cooper, Christopher G. F., Lee, Edward, Wilson, Sean, Krumbholz, Roy, Schmid, Steven, Xiang, Yibin, Booker, Michael, Lillie, James, Carter, Kara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3310881/
https://www.ncbi.nlm.nih.gov/pubmed/22457791
http://dx.doi.org/10.1371/journal.pone.0033823
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author Mason, Paul
Liang, Beirong
Li, Lingyun
Fremgen, Trisha
Murphy, Erin
Quinn, Angela
Madden, Stephen L.
Biemann, Hans-Peter
Wang, Bing
Cohen, Aharon
Komarnitsky, Svetlana
Jancsics, Kate
Hirth, Brad
Cooper, Christopher G. F.
Lee, Edward
Wilson, Sean
Krumbholz, Roy
Schmid, Steven
Xiang, Yibin
Booker, Michael
Lillie, James
Carter, Kara
author_facet Mason, Paul
Liang, Beirong
Li, Lingyun
Fremgen, Trisha
Murphy, Erin
Quinn, Angela
Madden, Stephen L.
Biemann, Hans-Peter
Wang, Bing
Cohen, Aharon
Komarnitsky, Svetlana
Jancsics, Kate
Hirth, Brad
Cooper, Christopher G. F.
Lee, Edward
Wilson, Sean
Krumbholz, Roy
Schmid, Steven
Xiang, Yibin
Booker, Michael
Lillie, James
Carter, Kara
author_sort Mason, Paul
collection PubMed
description Increased metabolism is a requirement for tumor cell proliferation. To understand the dependence of tumor cells on fatty acid metabolism, we evaluated various nodes of the fatty acid synthesis pathway. Using RNAi we have demonstrated that depletion of fatty-acid synthesis pathway enzymes SCD1, FASN, or ACC1 in HCT116 colon cancer cells results in cytotoxicity that is reversible by addition of exogenous fatty acids. This conditional phenotype is most pronounced when SCD1 is depleted. We used this fatty-acid rescue strategy to characterize several small-molecule inhibitors of fatty acid synthesis, including identification of TOFA as a potent SCD1 inhibitor, representing a previously undescribed activity for this compound. Reference FASN and ACC inhibitors show cytotoxicity that is less pronounced than that of TOFA, and fatty-acid rescue profiles consistent with their proposed enzyme targets. Two reference SCD1 inhibitors show low-nanomolar cytotoxicity that is offset by at least two orders of magnitude by exogenous oleate. One of these inhibitors slows growth of HCT116 xenograft tumors. Our data outline an effective strategy for interrogation of on-mechanism potency and pathway-node-specificity of fatty acid synthesis inhibitors, establish an unambiguous link between fatty acid synthesis and cancer cell survival, and point toward SCD1 as a key target in this pathway.
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spelling pubmed-33108812012-03-28 SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids Mason, Paul Liang, Beirong Li, Lingyun Fremgen, Trisha Murphy, Erin Quinn, Angela Madden, Stephen L. Biemann, Hans-Peter Wang, Bing Cohen, Aharon Komarnitsky, Svetlana Jancsics, Kate Hirth, Brad Cooper, Christopher G. F. Lee, Edward Wilson, Sean Krumbholz, Roy Schmid, Steven Xiang, Yibin Booker, Michael Lillie, James Carter, Kara PLoS One Research Article Increased metabolism is a requirement for tumor cell proliferation. To understand the dependence of tumor cells on fatty acid metabolism, we evaluated various nodes of the fatty acid synthesis pathway. Using RNAi we have demonstrated that depletion of fatty-acid synthesis pathway enzymes SCD1, FASN, or ACC1 in HCT116 colon cancer cells results in cytotoxicity that is reversible by addition of exogenous fatty acids. This conditional phenotype is most pronounced when SCD1 is depleted. We used this fatty-acid rescue strategy to characterize several small-molecule inhibitors of fatty acid synthesis, including identification of TOFA as a potent SCD1 inhibitor, representing a previously undescribed activity for this compound. Reference FASN and ACC inhibitors show cytotoxicity that is less pronounced than that of TOFA, and fatty-acid rescue profiles consistent with their proposed enzyme targets. Two reference SCD1 inhibitors show low-nanomolar cytotoxicity that is offset by at least two orders of magnitude by exogenous oleate. One of these inhibitors slows growth of HCT116 xenograft tumors. Our data outline an effective strategy for interrogation of on-mechanism potency and pathway-node-specificity of fatty acid synthesis inhibitors, establish an unambiguous link between fatty acid synthesis and cancer cell survival, and point toward SCD1 as a key target in this pathway. Public Library of Science 2012-03-22 /pmc/articles/PMC3310881/ /pubmed/22457791 http://dx.doi.org/10.1371/journal.pone.0033823 Text en Mason et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Mason, Paul
Liang, Beirong
Li, Lingyun
Fremgen, Trisha
Murphy, Erin
Quinn, Angela
Madden, Stephen L.
Biemann, Hans-Peter
Wang, Bing
Cohen, Aharon
Komarnitsky, Svetlana
Jancsics, Kate
Hirth, Brad
Cooper, Christopher G. F.
Lee, Edward
Wilson, Sean
Krumbholz, Roy
Schmid, Steven
Xiang, Yibin
Booker, Michael
Lillie, James
Carter, Kara
SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title_full SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title_fullStr SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title_full_unstemmed SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title_short SCD1 Inhibition Causes Cancer Cell Death by Depleting Mono-Unsaturated Fatty Acids
title_sort scd1 inhibition causes cancer cell death by depleting mono-unsaturated fatty acids
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3310881/
https://www.ncbi.nlm.nih.gov/pubmed/22457791
http://dx.doi.org/10.1371/journal.pone.0033823
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