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Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion

Perilipin-1 (Plin1), a prominent cytoplasmic lipid droplet (CLD) binding phosphoprotein and key physiological regulator of triglyceride storage and lipolysis in adipocytes, is thought to regulate the fragmentation and dispersion of CLD that occurs in response to β-adrenergic activation of adenylate...

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Autores principales: Orlicky, David J., Monks, Jenifer, Stefanski, Adrianne L., McManaman, James L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3692517/
https://www.ncbi.nlm.nih.gov/pubmed/23825572
http://dx.doi.org/10.1371/journal.pone.0066837
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author Orlicky, David J.
Monks, Jenifer
Stefanski, Adrianne L.
McManaman, James L.
author_facet Orlicky, David J.
Monks, Jenifer
Stefanski, Adrianne L.
McManaman, James L.
author_sort Orlicky, David J.
collection PubMed
description Perilipin-1 (Plin1), a prominent cytoplasmic lipid droplet (CLD) binding phosphoprotein and key physiological regulator of triglyceride storage and lipolysis in adipocytes, is thought to regulate the fragmentation and dispersion of CLD that occurs in response to β-adrenergic activation of adenylate cyclase. Here we investigate the dynamics and molecular determinants of these processes using cell lines stably expressing recombinant forms of Plin1 and/or other members of the perilipin family. Plin1 and a C-terminal CLD-binding fragment of Plin1 (Plin1CT) induced formation of single dense CLD clusters near the microtubule organizing center, whereas neither an N-terminal CLD-binding fragment of Plin1, nor Plin2 or Plin3 induced clustering. Clustered CLD coated by Plin1, or Plin1CT, dispersed in response to isoproterenol, or other agents that activate adenylate cyclase, in a process inhibited by the protein kinase A inhibitor, H89, and blocked by microtubule disruption. Isoproterenol-stimulated phosphorylation of CLD-associated Plin1 on serine 492 preceded their dispersion, and live cell imaging showed that cluster dispersion involved initial fragmentation of tight clusters into multiple smaller clusters, which then fragmented into well-dispersed individual CLD. siRNA knockdown of the cortical actin binding protein, moesin, induced disaggregation of tight clusters into multiple smaller clusters, and inhibited the reaggregation of dispersed CLD into tight clusters. Together these data suggest that the clustering and dispersion processes involve a complex orchestration of phosphorylation-dependent, microtubule-dependent and independent, and microfilament dependent steps.
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spelling pubmed-36925172013-07-02 Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion Orlicky, David J. Monks, Jenifer Stefanski, Adrianne L. McManaman, James L. PLoS One Research Article Perilipin-1 (Plin1), a prominent cytoplasmic lipid droplet (CLD) binding phosphoprotein and key physiological regulator of triglyceride storage and lipolysis in adipocytes, is thought to regulate the fragmentation and dispersion of CLD that occurs in response to β-adrenergic activation of adenylate cyclase. Here we investigate the dynamics and molecular determinants of these processes using cell lines stably expressing recombinant forms of Plin1 and/or other members of the perilipin family. Plin1 and a C-terminal CLD-binding fragment of Plin1 (Plin1CT) induced formation of single dense CLD clusters near the microtubule organizing center, whereas neither an N-terminal CLD-binding fragment of Plin1, nor Plin2 or Plin3 induced clustering. Clustered CLD coated by Plin1, or Plin1CT, dispersed in response to isoproterenol, or other agents that activate adenylate cyclase, in a process inhibited by the protein kinase A inhibitor, H89, and blocked by microtubule disruption. Isoproterenol-stimulated phosphorylation of CLD-associated Plin1 on serine 492 preceded their dispersion, and live cell imaging showed that cluster dispersion involved initial fragmentation of tight clusters into multiple smaller clusters, which then fragmented into well-dispersed individual CLD. siRNA knockdown of the cortical actin binding protein, moesin, induced disaggregation of tight clusters into multiple smaller clusters, and inhibited the reaggregation of dispersed CLD into tight clusters. Together these data suggest that the clustering and dispersion processes involve a complex orchestration of phosphorylation-dependent, microtubule-dependent and independent, and microfilament dependent steps. Public Library of Science 2013-06-25 /pmc/articles/PMC3692517/ /pubmed/23825572 http://dx.doi.org/10.1371/journal.pone.0066837 Text en © 2013 Orlicky 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
Orlicky, David J.
Monks, Jenifer
Stefanski, Adrianne L.
McManaman, James L.
Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title_full Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title_fullStr Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title_full_unstemmed Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title_short Dynamics and Molecular Determinants of Cytoplasmic Lipid Droplet Clustering and Dispersion
title_sort dynamics and molecular determinants of cytoplasmic lipid droplet clustering and dispersion
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3692517/
https://www.ncbi.nlm.nih.gov/pubmed/23825572
http://dx.doi.org/10.1371/journal.pone.0066837
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