High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control

Factors underlying the effects of gastric bypass surgery on glucose homeostasis are incompletely understood. Here the authors developed and applied high-throughput mediation analysis to identify proteome/metabolome mediators of improved glucose homeostasis after to gastric bypass surgery, and report...

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Autores principales: Jonathan M. Dreyfuss, Yixing Yuchi, Xuehong Dong, Vissarion Efthymiou, Hui Pan, Donald C. Simonson, Ashley Vernon, Florencia Halperin, Pratik Aryal, Anish Konkar, Yinong Sebastian, Brandon W. Higgs, Joseph Grimsby, Cristina M. Rondinone, Simon Kasif, Barbara B. Kahn, Kathleen Foster, Randy Seeley, Allison Goldfine, Vera Djordjilović, Mary Elizabeth Patti
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Publicado: Nature Portfolio 2021
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Acceso en línea:https://doaj.org/article/77b147ec15344c3cb4b79626a96517bd
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spelling oai:doaj.org-article:77b147ec15344c3cb4b79626a96517bd2021-12-05T12:22:17ZHigh-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control10.1038/s41467-021-27289-22041-1723https://doaj.org/article/77b147ec15344c3cb4b79626a96517bd2021-11-01T00:00:00Zhttps://doi.org/10.1038/s41467-021-27289-2https://doaj.org/toc/2041-1723Factors underlying the effects of gastric bypass surgery on glucose homeostasis are incompletely understood. Here the authors developed and applied high-throughput mediation analysis to identify proteome/metabolome mediators of improved glucose homeostasis after to gastric bypass surgery, and report that improved glycemia was mediated by the growth hormone receptor.Jonathan M. DreyfussYixing YuchiXuehong DongVissarion EfthymiouHui PanDonald C. SimonsonAshley VernonFlorencia HalperinPratik AryalAnish KonkarYinong SebastianBrandon W. HiggsJoseph GrimsbyCristina M. RondinoneSimon KasifBarbara B. KahnKathleen FosterRandy SeeleyAllison GoldfineVera DjordjilovićMary Elizabeth PattiNature PortfolioarticleScienceQENNature Communications, Vol 12, Iss 1, Pp 1-13 (2021)
institution DOAJ
collection DOAJ
language EN
topic Science
Q
spellingShingle Science
Q
Jonathan M. Dreyfuss
Yixing Yuchi
Xuehong Dong
Vissarion Efthymiou
Hui Pan
Donald C. Simonson
Ashley Vernon
Florencia Halperin
Pratik Aryal
Anish Konkar
Yinong Sebastian
Brandon W. Higgs
Joseph Grimsby
Cristina M. Rondinone
Simon Kasif
Barbara B. Kahn
Kathleen Foster
Randy Seeley
Allison Goldfine
Vera Djordjilović
Mary Elizabeth Patti
High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
description Factors underlying the effects of gastric bypass surgery on glucose homeostasis are incompletely understood. Here the authors developed and applied high-throughput mediation analysis to identify proteome/metabolome mediators of improved glucose homeostasis after to gastric bypass surgery, and report that improved glycemia was mediated by the growth hormone receptor.
format article
author Jonathan M. Dreyfuss
Yixing Yuchi
Xuehong Dong
Vissarion Efthymiou
Hui Pan
Donald C. Simonson
Ashley Vernon
Florencia Halperin
Pratik Aryal
Anish Konkar
Yinong Sebastian
Brandon W. Higgs
Joseph Grimsby
Cristina M. Rondinone
Simon Kasif
Barbara B. Kahn
Kathleen Foster
Randy Seeley
Allison Goldfine
Vera Djordjilović
Mary Elizabeth Patti
author_facet Jonathan M. Dreyfuss
Yixing Yuchi
Xuehong Dong
Vissarion Efthymiou
Hui Pan
Donald C. Simonson
Ashley Vernon
Florencia Halperin
Pratik Aryal
Anish Konkar
Yinong Sebastian
Brandon W. Higgs
Joseph Grimsby
Cristina M. Rondinone
Simon Kasif
Barbara B. Kahn
Kathleen Foster
Randy Seeley
Allison Goldfine
Vera Djordjilović
Mary Elizabeth Patti
author_sort Jonathan M. Dreyfuss
title High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
title_short High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
title_full High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
title_fullStr High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
title_full_unstemmed High-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
title_sort high-throughput mediation analysis of human proteome and metabolome identifies mediators of post-bariatric surgical diabetes control
publisher Nature Portfolio
publishDate 2021
url https://doaj.org/article/77b147ec15344c3cb4b79626a96517bd
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