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A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling

In the liver, mitochondria are exposed to different concentrations of nutrients due to their spatial positioning across the periportal (PP) and pericentral (PC) axis. How these mitochondria sense and integrate these signals to respond and maintain homeostasis is not known. Here, we combined intravit...

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Autores principales: Kang, Sun Woo Sophie, Cunningham, Rory P., Miller, Colin B., Brown, Lauryn A., Cultraro, Constance M., Harned, Adam, Narayan, Kedar, Hernandez, Jonathan, Jenkins, Lisa M., Lobanov, Alexei, Cam, Maggie, Porat-Shliom, Natalie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274915/
https://www.ncbi.nlm.nih.gov/pubmed/37333328
http://dx.doi.org/10.1101/2023.04.13.536717
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author Kang, Sun Woo Sophie
Cunningham, Rory P.
Miller, Colin B.
Brown, Lauryn A.
Cultraro, Constance M.
Harned, Adam
Narayan, Kedar
Hernandez, Jonathan
Jenkins, Lisa M.
Lobanov, Alexei
Cam, Maggie
Porat-Shliom, Natalie
author_facet Kang, Sun Woo Sophie
Cunningham, Rory P.
Miller, Colin B.
Brown, Lauryn A.
Cultraro, Constance M.
Harned, Adam
Narayan, Kedar
Hernandez, Jonathan
Jenkins, Lisa M.
Lobanov, Alexei
Cam, Maggie
Porat-Shliom, Natalie
author_sort Kang, Sun Woo Sophie
collection PubMed
description In the liver, mitochondria are exposed to different concentrations of nutrients due to their spatial positioning across the periportal (PP) and pericentral (PC) axis. How these mitochondria sense and integrate these signals to respond and maintain homeostasis is not known. Here, we combined intravital microscopy, spatial proteomics, and functional assessment to investigate mitochondrial heterogeneity in the context of liver zonation. We found that PP and PC mitochondria are morphologically and functionally distinct; beta-oxidation was elevated in PP regions, while lipid synthesis was predominant in the PC mitochondria. In addition, comparative phosphoproteomics revealed spatially distinct patterns of mitochondrial composition and potential regulation via phosphorylation. Acute pharmacological modulation of nutrient sensing through AMPK and mTOR shifted mitochondrial phenotypes in the PP and PC regions, linking nutrient gradients across the lobule and mitochondrial heterogeneity. This study highlights the role of protein phosphorylation in mitochondrial structure, function, and overall homeostasis in hepatic metabolic zonation. These findings have important implications for liver physiology and disease.
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spelling pubmed-102749152023-06-17 A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling Kang, Sun Woo Sophie Cunningham, Rory P. Miller, Colin B. Brown, Lauryn A. Cultraro, Constance M. Harned, Adam Narayan, Kedar Hernandez, Jonathan Jenkins, Lisa M. Lobanov, Alexei Cam, Maggie Porat-Shliom, Natalie bioRxiv Article In the liver, mitochondria are exposed to different concentrations of nutrients due to their spatial positioning across the periportal (PP) and pericentral (PC) axis. How these mitochondria sense and integrate these signals to respond and maintain homeostasis is not known. Here, we combined intravital microscopy, spatial proteomics, and functional assessment to investigate mitochondrial heterogeneity in the context of liver zonation. We found that PP and PC mitochondria are morphologically and functionally distinct; beta-oxidation was elevated in PP regions, while lipid synthesis was predominant in the PC mitochondria. In addition, comparative phosphoproteomics revealed spatially distinct patterns of mitochondrial composition and potential regulation via phosphorylation. Acute pharmacological modulation of nutrient sensing through AMPK and mTOR shifted mitochondrial phenotypes in the PP and PC regions, linking nutrient gradients across the lobule and mitochondrial heterogeneity. This study highlights the role of protein phosphorylation in mitochondrial structure, function, and overall homeostasis in hepatic metabolic zonation. These findings have important implications for liver physiology and disease. Cold Spring Harbor Laboratory 2023-10-26 /pmc/articles/PMC10274915/ /pubmed/37333328 http://dx.doi.org/10.1101/2023.04.13.536717 Text en https://creativecommons.org/publicdomain/zero/1.0/This article is a US Government work. It is not subject to copyright under 17 USC 105 and is also made available for use under a CC0 license (https://creativecommons.org/publicdomain/zero/1.0/) .
spellingShingle Article
Kang, Sun Woo Sophie
Cunningham, Rory P.
Miller, Colin B.
Brown, Lauryn A.
Cultraro, Constance M.
Harned, Adam
Narayan, Kedar
Hernandez, Jonathan
Jenkins, Lisa M.
Lobanov, Alexei
Cam, Maggie
Porat-Shliom, Natalie
A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title_full A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title_fullStr A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title_full_unstemmed A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title_short A spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
title_sort spatial map of hepatic mitochondria uncovers functional heterogeneity shaped by nutrient-sensing signaling
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10274915/
https://www.ncbi.nlm.nih.gov/pubmed/37333328
http://dx.doi.org/10.1101/2023.04.13.536717
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