FALCON systematically interrogates free fatty acid biology and identifies a novel mediator of lipotoxicity

Cellular exposure to free fatty acids (FFAs) is implicated in the pathogenesis of obesity-associated diseases. However, there are no scalable approaches to comprehensively assess the diverse FFAs circulating in human plasma. Furthermore, assessing how FFA-mediated processes interact with genetic ris...

Full description

Saved in:
Bibliographic Details
Published inCell metabolism Vol. 35; no. 5; pp. 887 - 905.e11
Main Authors Wieder, Nicolas, Fried, Juliana Coraor, Kim, Choah, Sidhom, Eriene-Heidi, Brown, Matthew R., Marshall, Jamie L., Arevalo, Carlos, Dvela-Levitt, Moran, Kost-Alimova, Maria, Sieber, Jonas, Gabriel, Katlyn R., Pacheco, Julian, Clish, Clary, Abbasi, Hamdah Shafqat, Singh, Shantanu, Rutter, Justine C., Therrien, Martine, Yoon, Haejin, Lai, Zon Weng, Baublis, Aaron, Subramanian, Renuka, Devkota, Ranjan, Small, Jonnell, Sreekanth, Vedagopuram, Han, Myeonghoon, Lim, Donghyun, Carpenter, Anne E., Flannick, Jason, Finucane, Hilary, Haigis, Marcia C., Claussnitzer, Melina, Sheu, Eric, Stevens, Beth, Wagner, Bridget K., Choudhary, Amit, Shaw, Jillian L., Pablo, Juan Lorenzo, Greka, Anna
Format Journal Article
LanguageEnglish
Published United States Elsevier Inc 02.05.2023
Subjects
Online AccessGet full text

Cover

Loading…
More Information
Summary:Cellular exposure to free fatty acids (FFAs) is implicated in the pathogenesis of obesity-associated diseases. However, there are no scalable approaches to comprehensively assess the diverse FFAs circulating in human plasma. Furthermore, assessing how FFA-mediated processes interact with genetic risk for disease remains elusive. Here, we report the design and implementation of fatty acid library for comprehensive ontologies (FALCON), an unbiased, scalable, and multimodal interrogation of 61 structurally diverse FFAs. We identified a subset of lipotoxic monounsaturated fatty acids associated with decreased membrane fluidity. Furthermore, we prioritized genes that reflect the combined effects of harmful FFA exposure and genetic risk for type 2 diabetes (T2D). We found that c-MAF-inducing protein (CMIP) protects cells from FFA exposure by modulating Akt signaling. In sum, FALCON empowers the study of fundamental FFA biology and offers an integrative approach to identify much needed targets for diverse diseases associated with disordered FFA metabolism. [Display omitted] •Fatty acid library for comprehensive ontologies (FALCON) profiles diverse fatty acids•FALCON’s unbiased grouping of fatty acids (FFAs) is applicable to multiple cell types•Lipotoxic FFAs include monounsaturated fatty acids that decrease membrane fluidity•FALCON identifies CMIP at the intersection of environmental and genetic disease risk Wieder and Coraor Fried et al. designed fatty acid library for comprehensive ontologies (FALCON) to systematically profile the effects of diverse free fatty acids (FFAs) on different cell types. Unbiased grouping of FFAs revealed a novel subset of toxic monounsaturated FFAs, and integration with human genomic data revealed lipotoxicity regulators.
Bibliography:ObjectType-Article-1
SourceType-Scholarly Journals-1
ObjectType-Feature-2
content type line 23
AUTHOR CONTRIBUTIONS
N.W., J.C.F., J.L.P., and A.G. conceived the study and designed the experiments. N.W. and J.C.F. conducted experiments and analyzed the data; experimental work was contributed by C.K., E.-H.S., J.L.M., M.D.-L., J. Sieber, J.P., J.L.P., J.C.R., M.T., H.Y., Z.W.L., A.B., R.D., J. Small, V.S., M.H., and D.L.; data analysis was contributed by C.K., E.-H.S., M.R.B., C.A., M.K.-A., K.R.G., C.C., H.S.A., S.S., R.S., A.C., J.F., and J.L.P. N.W., J.C.F., J.L.P., J.L.S., and A.G. wrote the manuscript; A.G. directed the study. All authors read the manuscript and approved its contents.
ISSN:1550-4131
1932-7420
DOI:10.1016/j.cmet.2023.03.018