Javascript must be enabled to continue!
Suppression of store-operated calcium entry causes dilated cardiomyopathy of the Drosophila heart
View through CrossRef
ABSTRACT
Store-operated Ca
2+
entry (SOCE) is an essential Ca
2+
signaling and homeostatic mechanism present in nearly all animal cells. SOCE refers to influx of Ca
2+
into cells that is activated by depletion of endoplasmic or sarcoplasmic reticulum stores (ER/SR) Ca
2+
stores. In the SOCE pathway, STIM proteins function as Ca
2+
sensors in the ER, and upon ER Ca
2+
store depletion STIM rearranges to ER-plasma membrane junctions where it activates Orai Ca
2+
influx channels. Multiple studies have implicated STIM and Orai mediated SOCE in the pathogenesis of cardiac hypertrophy. Importantly however, the functional roles of SOCE in normal heart physiology have not been well defined. We have addressed this in
Drosophila melanogaster
, a powerful animal model of cardiac development and physiology. We show that heart specific suppression of
Drosophila Stim
and
Orai
resulted in reduced contractility consistent with dilated cardiomyopathy, characterized by increased end diastolic and end systolic dimensions and decreased fractional shortening. Reduced contractility was apparent in larval hearts and became more pronounced in adults. Myofibers were disorganized and more widely spaced in larval and adult hearts with
Stim
and
Orai
RNAi as compared to controls, possibly reflecting decompensation or upregulated stress response signaling due to altered Ca
2+
homeostasis. Lastly, we show that reduced heart function significantly affected animal health and viability, as animals with heart specific
Stim
and
Orai
suppression exhibited significant delays in post-embryonic development and adults died significantly earlier than controls. Collectively, our results demonstrate that SOCE is essential for normal heart physiology and establish
Drosophila
as an important model for delineation of functional SOCE roles in cardiomyocytes.
Title: Suppression of store-operated calcium entry causes dilated cardiomyopathy of the
Drosophila
heart
Description:
ABSTRACT
Store-operated Ca
2+
entry (SOCE) is an essential Ca
2+
signaling and homeostatic mechanism present in nearly all animal cells.
SOCE refers to influx of Ca
2+
into cells that is activated by depletion of endoplasmic or sarcoplasmic reticulum stores (ER/SR) Ca
2+
stores.
In the SOCE pathway, STIM proteins function as Ca
2+
sensors in the ER, and upon ER Ca
2+
store depletion STIM rearranges to ER-plasma membrane junctions where it activates Orai Ca
2+
influx channels.
Multiple studies have implicated STIM and Orai mediated SOCE in the pathogenesis of cardiac hypertrophy.
Importantly however, the functional roles of SOCE in normal heart physiology have not been well defined.
We have addressed this in
Drosophila melanogaster
, a powerful animal model of cardiac development and physiology.
We show that heart specific suppression of
Drosophila Stim
and
Orai
resulted in reduced contractility consistent with dilated cardiomyopathy, characterized by increased end diastolic and end systolic dimensions and decreased fractional shortening.
Reduced contractility was apparent in larval hearts and became more pronounced in adults.
Myofibers were disorganized and more widely spaced in larval and adult hearts with
Stim
and
Orai
RNAi as compared to controls, possibly reflecting decompensation or upregulated stress response signaling due to altered Ca
2+
homeostasis.
Lastly, we show that reduced heart function significantly affected animal health and viability, as animals with heart specific
Stim
and
Orai
suppression exhibited significant delays in post-embryonic development and adults died significantly earlier than controls.
Collectively, our results demonstrate that SOCE is essential for normal heart physiology and establish
Drosophila
as an important model for delineation of functional SOCE roles in cardiomyocytes.
Related Results
British Food Journal Volume 45 Issue 9 1943
British Food Journal Volume 45 Issue 9 1943
I now pass on to an aspect of calcium metabolism which is more topical, but probably more controversial. I refer to the incidence of calcium deficiency. By what means can we determ...
Association between Bisphenol A exposure and dilated cardiomyopathy
Association between Bisphenol A exposure and dilated cardiomyopathy
Abstract
Background
Evidence has identified bisphenol A to have detrimental environmental and health effects. There are f...
A Case of Takotsubo Cardiomyopathy Following Postpartum Hemorrhage in a Patient with Concurrent Influenza A
A Case of Takotsubo Cardiomyopathy Following Postpartum Hemorrhage in a Patient with Concurrent Influenza A
Background
Takotsubo cardiomyopathy, also known as stress cardiomyopathy and broken heart syndrome, is a transient, non-ischemic cardiomyopathy marked by revers...
Clinical profiles and incident heart failure in cardiomyopathies: a population-based linked electronic health record cohort study
Clinical profiles and incident heart failure in cardiomyopathies: a population-based linked electronic health record cohort study
Abstract
Background
Cardiomyopathies frequently cause heart failure (HF), however their prevalence in the general population and...
#1250 Measurement of ionized calcium with a point-of-care ionometer during treatment with etelcalcetide
#1250 Measurement of ionized calcium with a point-of-care ionometer during treatment with etelcalcetide
Abstract
Background and Aims
Etelcalcetide is an intravenous calcimimetic indicated for the treatment of mineral and bone disord...
Suppression of store-operated calcium entry causes dilated cardiomyopathy of the
Drosophila
heart
Suppression of store-operated calcium entry causes dilated cardiomyopathy of the
Drosophila
heart
Store-operated Ca2+ entry (SOCE) is an essential Ca2+ signaling mechanism present in most animal cells. SOCE refers to Ca2+ influx that is activated by depletion of sarco/endoplasm...
7987 Ravenous Bone
7987 Ravenous Bone
Abstract
Disclosure: Y. Oo: None. L. Srisawitri: None. P. Patel: None. M. Thein: None.
Introduction Hungry bone syndrome ( HBS ) is the rapid drop in ...
Layer-Specific Strain Analysis in Patients with Dilated Cardiomyopathy
Layer-Specific Strain Analysis in Patients with Dilated Cardiomyopathy
Background/Objectives: This study aimed to evaluate layer-specific strain according to etiology and assess whether subtle changes in longitudinal and circumferential layer strain a...

