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The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size

Defective nutrient storage and adipocyte enlargement (hypertrophy) are emerging features of metabolic syndrome and type 2 diabetes. Within adipose tissues, how the cytoskeletal network contributes to adipose cell size, nutrient uptake, fat storage, and signaling remain poorly understood. Utilizing t...

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Autores principales: Ugrankar-Banerjee, Rupali, Tran, Son, Bowerman, Jade, Kovalenko, Anastasiia, Paul, Blessy, Henne, W Mike
Formato: Online Artículo Texto
Lenguaje:English
Publicado: eLife Sciences Publications, Ltd 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10202455/
https://www.ncbi.nlm.nih.gov/pubmed/37144872
http://dx.doi.org/10.7554/eLife.81170
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author Ugrankar-Banerjee, Rupali
Tran, Son
Bowerman, Jade
Kovalenko, Anastasiia
Paul, Blessy
Henne, W Mike
author_facet Ugrankar-Banerjee, Rupali
Tran, Son
Bowerman, Jade
Kovalenko, Anastasiia
Paul, Blessy
Henne, W Mike
author_sort Ugrankar-Banerjee, Rupali
collection PubMed
description Defective nutrient storage and adipocyte enlargement (hypertrophy) are emerging features of metabolic syndrome and type 2 diabetes. Within adipose tissues, how the cytoskeletal network contributes to adipose cell size, nutrient uptake, fat storage, and signaling remain poorly understood. Utilizing the Drosophila larval fat body (FB) as a model adipose tissue, we show that a specific actin isoform—Act5C—forms the cortical actin network necessary to expand adipocyte cell size for biomass storage in development. Additionally, we uncover a non-canonical role for the cortical actin cytoskeleton in inter-organ lipid trafficking. We find Act5C localizes to the FB cell surface and cell-cell boundaries, where it intimately contacts peripheral LDs (pLDs), forming a cortical actin network for cell architectural support. FB-specific loss of Act5C perturbs FB triglyceride (TG) storage and LD morphology, resulting in developmentally delayed larvae that fail to develop into flies. Utilizing temporal RNAi-depletion approaches, we reveal that Act5C is indispensable post-embryogenesis during larval feeding as FB cells expand and store fat. Act5C-deficient FBs fail to grow, leading to lipodystrophic larvae unable to accrue sufficient biomass for complete metamorphosis. In line with this, Act5C-deficient larvae display blunted insulin signaling and reduced feeding. Mechanistically, we also show this diminished signaling correlates with decreased lipophorin (Lpp) lipoprotein-mediated lipid trafficking, and find Act5C is required for Lpp secretion from the FB for lipid transport. Collectively, we propose that the Act5C-dependent cortical actin network of Drosophila adipose tissue is required for adipose tissue size-expansion and organismal energy homeostasis in development, and plays an essential role in inter-organ nutrient transport and signaling.
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spelling pubmed-102024552023-05-23 The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size Ugrankar-Banerjee, Rupali Tran, Son Bowerman, Jade Kovalenko, Anastasiia Paul, Blessy Henne, W Mike eLife Cell Biology Defective nutrient storage and adipocyte enlargement (hypertrophy) are emerging features of metabolic syndrome and type 2 diabetes. Within adipose tissues, how the cytoskeletal network contributes to adipose cell size, nutrient uptake, fat storage, and signaling remain poorly understood. Utilizing the Drosophila larval fat body (FB) as a model adipose tissue, we show that a specific actin isoform—Act5C—forms the cortical actin network necessary to expand adipocyte cell size for biomass storage in development. Additionally, we uncover a non-canonical role for the cortical actin cytoskeleton in inter-organ lipid trafficking. We find Act5C localizes to the FB cell surface and cell-cell boundaries, where it intimately contacts peripheral LDs (pLDs), forming a cortical actin network for cell architectural support. FB-specific loss of Act5C perturbs FB triglyceride (TG) storage and LD morphology, resulting in developmentally delayed larvae that fail to develop into flies. Utilizing temporal RNAi-depletion approaches, we reveal that Act5C is indispensable post-embryogenesis during larval feeding as FB cells expand and store fat. Act5C-deficient FBs fail to grow, leading to lipodystrophic larvae unable to accrue sufficient biomass for complete metamorphosis. In line with this, Act5C-deficient larvae display blunted insulin signaling and reduced feeding. Mechanistically, we also show this diminished signaling correlates with decreased lipophorin (Lpp) lipoprotein-mediated lipid trafficking, and find Act5C is required for Lpp secretion from the FB for lipid transport. Collectively, we propose that the Act5C-dependent cortical actin network of Drosophila adipose tissue is required for adipose tissue size-expansion and organismal energy homeostasis in development, and plays an essential role in inter-organ nutrient transport and signaling. eLife Sciences Publications, Ltd 2023-05-05 /pmc/articles/PMC10202455/ /pubmed/37144872 http://dx.doi.org/10.7554/eLife.81170 Text en © 2023, Ugrankar-Banerjee et al https://creativecommons.org/licenses/by/4.0/This article is distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Cell Biology
Ugrankar-Banerjee, Rupali
Tran, Son
Bowerman, Jade
Kovalenko, Anastasiia
Paul, Blessy
Henne, W Mike
The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title_full The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title_fullStr The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title_full_unstemmed The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title_short The fat body cortical actin network regulates Drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
title_sort fat body cortical actin network regulates drosophila inter-organ nutrient trafficking, signaling, and adipose cell size
topic Cell Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10202455/
https://www.ncbi.nlm.nih.gov/pubmed/37144872
http://dx.doi.org/10.7554/eLife.81170
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