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

机译:储存钙的进入抑制导致果蝇心脏扩张型心肌病

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摘要

Store-operated Ca entry (SOCE) is an essential Ca signaling mechanism present in most animal cells. SOCE refers to Ca influx that is activated by depletion of sarco/endoplasmic reticulum (S/ER) Ca stores. The main components of SOCE are STIM and Orai. STIM proteins function as S/ER Ca sensors, and upon S/ER Ca depletion STIM rearranges to S/ER-plasma membrane junctions and activates Orai Ca 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 , a powerful animal model of cardiac physiology. We show that heart-specific suppression of and in larvae and adults resulted in reduced contractility consistent with dilated cardiomyopathy. Myofibers were also highly disorganized in and 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 and 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 as an important model for understanding the role of SOCE in cardiac pathophysiology.
机译:贮藏操作的Ca进入(SOCE)是大多数动物细胞中存在的重要Ca信号传导机制。 SOCE指的是Ca大量涌入,是由于肌浆网/内质网(S / ER)的Ca储存耗尽而激活的。 SOCE的主要组件是STIM和Orai。 STIM蛋白起S / ER Ca传感器的作用,当S / ER Ca耗尽时,STIM重排至S / ER-质膜连接并激活Orai Ca流入通道。研究表明SOCE与心脏肥大的发病机理有关,但SOCE在正常心脏生理中的作用仍知之甚少。因此,我们分析了心脏生理功能强大的动物模型中特定于心脏的SOCE功能。我们显示,幼虫和成虫的心脏特异性抑制导致收缩力降低,与扩张型心肌病一致。肌纤维在RNAi和RNAi心脏中也高度混乱,反映出可能的代偿失调或压力信号上调。此外,我们显示由于SOCE抑制而导致的心脏功能降低对动物的生存能力产生不利影响,因为心脏特异性和RNAi动物在胚胎后发育中显示出明显的延迟,而成年动物的死亡早于对照组。总的来说,我们的结果表明SOCE对于心脏的生理功能必不可少,并建立了一个重要的模型,以了解SOCE在心脏病理生理中的作用。

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