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Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart

Store-operated Ca(2+) entry (SOCE) is an essential Ca(2+) signaling mechanism present in most animal cells. SOCE refers to Ca(2+) influx that is activated by depletion of sarco/endoplasmic reticulum (S/ER) Ca(2+) stores. The main components of SOCE are STIM and Orai. STIM proteins function as S/ER C...

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Autores principales: Petersen, Courtney E., Wolf, Matthew J., Smyth, Jeremy T.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Company of Biologists Ltd 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7075072/
https://www.ncbi.nlm.nih.gov/pubmed/32086252
http://dx.doi.org/10.1242/bio.049999
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author Petersen, Courtney E.
Wolf, Matthew J.
Smyth, Jeremy T.
author_facet Petersen, Courtney E.
Wolf, Matthew J.
Smyth, Jeremy T.
author_sort Petersen, Courtney E.
collection PubMed
description Store-operated Ca(2+) entry (SOCE) is an essential Ca(2+) signaling mechanism present in most animal cells. SOCE refers to Ca(2+) influx that is activated by depletion of sarco/endoplasmic reticulum (S/ER) Ca(2+) stores. The main components of SOCE are STIM and Orai. STIM proteins function as S/ER Ca(2+) sensors, and upon S/ER Ca(2+) depletion STIM rearranges to S/ER-plasma membrane junctions and activates Orai Ca(2+) influx channels. Studies have implicated SOCE in cardiac hypertrophy pathogenesis, but SOCE's role in normal heart physiology remains poorly understood. We therefore analyzed heart-specific SOCE function in Drosophila, a powerful animal model of cardiac physiology. We show that heart-specific suppression of Stim and Orai in larvae and adults resulted in reduced contractility consistent with dilated cardiomyopathy. Myofibers were also highly disorganized in Stim and Orai RNAi hearts, reflecting possible decompensation or upregulated stress signaling. Furthermore, we show that reduced heart function due to SOCE suppression adversely affected animal viability, as heart specific Stim and Orai RNAi animals exhibited significant delays in post-embryonic development and adults died earlier than controls. Collectively, our results demonstrate that SOCE is essential for physiological heart function, and establish Drosophila as an important model for understanding the role of SOCE in cardiac pathophysiology.
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spelling pubmed-70750722020-03-16 Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart Petersen, Courtney E. Wolf, Matthew J. Smyth, Jeremy T. Biol Open Research Article Store-operated Ca(2+) entry (SOCE) is an essential Ca(2+) signaling mechanism present in most animal cells. SOCE refers to Ca(2+) influx that is activated by depletion of sarco/endoplasmic reticulum (S/ER) Ca(2+) stores. The main components of SOCE are STIM and Orai. STIM proteins function as S/ER Ca(2+) sensors, and upon S/ER Ca(2+) depletion STIM rearranges to S/ER-plasma membrane junctions and activates Orai Ca(2+) influx channels. Studies have implicated SOCE in cardiac hypertrophy pathogenesis, but SOCE's role in normal heart physiology remains poorly understood. We therefore analyzed heart-specific SOCE function in Drosophila, a powerful animal model of cardiac physiology. We show that heart-specific suppression of Stim and Orai in larvae and adults resulted in reduced contractility consistent with dilated cardiomyopathy. Myofibers were also highly disorganized in Stim and Orai RNAi hearts, reflecting possible decompensation or upregulated stress signaling. Furthermore, we show that reduced heart function due to SOCE suppression adversely affected animal viability, as heart specific Stim and Orai RNAi animals exhibited significant delays in post-embryonic development and adults died earlier than controls. Collectively, our results demonstrate that SOCE is essential for physiological heart function, and establish Drosophila as an important model for understanding the role of SOCE in cardiac pathophysiology. The Company of Biologists Ltd 2020-03-11 /pmc/articles/PMC7075072/ /pubmed/32086252 http://dx.doi.org/10.1242/bio.049999 Text en © 2020. Published by The Company of Biologists Ltd http://creativecommons.org/licenses/by/4.0This is an Open Access article distributed under the terms of the Creative Commons Attribution License (https://creativecommons.org/licenses/by/4.0), which permits unrestricted use, distribution and reproduction in any medium provided that the original work is properly attributed.
spellingShingle Research Article
Petersen, Courtney E.
Wolf, Matthew J.
Smyth, Jeremy T.
Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title_full Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title_fullStr Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title_full_unstemmed Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title_short Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
title_sort suppression of store-operated calcium entry causes dilated cardiomyopathy of the drosophila heart
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7075072/
https://www.ncbi.nlm.nih.gov/pubmed/32086252
http://dx.doi.org/10.1242/bio.049999
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