Univ-Lyon, CarMeN Laboratory, INSERM 1060, INRA 1397, University Claude Bernard Lyon1, INSA Lyon, Oullins, France; IHU OPeRa, Groupement Hospitalier EST, Bâtiment B13, 59 boulevard Pinel, F-69500 Bron, France; Lebanese University, Faculty of Sciences, Doctoral School of Sciences and Techlogy, Laboratory of Experimental and Clinical Pharmacology, Hadat, Lebanon.
Univ-Lyon, CarMeN Laboratory, INSERM 1060, INRA 1397, University Claude Bernard Lyon1, INSA Lyon, Oullins, France; IHU OPeRa, Groupement Hospitalier EST, Bâtiment B13, 59 boulevard Pinel, F-69500 Bron, France.
J Mol Cell Cardiol. 2019 Jun;131:91-100. doi: 10.1016/j.yjmcc.2019.04.021. Epub 2019 Apr 22.
The signal transducer and activator of transcription 3, STAT3, transfers cellular signals from the plasma membrane to the nucleus, acting as a signaling molecule and a transcription factor. Reports proposed an additional non-canonical role of STAT3 that could regulate the activity of complexes I and II of the electron transport chain and the opening of the mitochondrial permeability transition pore (PTP) after ischemia-reperfusion in various cell types. The native expression of STAT3 in heart mitochondria, together with a direct versus an indirect transcriptional role in mitochondrial functions, have been recently questioned. The objective of the present study was to investigate the cellular distribution of STAT3 in mouse adult cardiomyocytes under basal and stress conditions, along with assessing its presence and activity in cardiac mitochondria using structural and functional approaches. The analysis of the spatial distribution of STAT3 signal in the cardiomyocytes interestingly showed that it is transversely distributed along the T-tubules and in the nucleus. This distribution was neither affected by hypoxia nor by hypoxia/re‑oxygenation conditions. Focusing on the mitochondrial STAT3 localization, our results suggest that serine-phosphorylated STAT3 (PS727-STAT3) and total STAT3 are detected in crude but not in pure mitochondria of mouse adult cardiomyocytes, under basal and ischemia-reperfusion conditions. The inhibition of STAT3, with a pre-validated non-toxic Stattic dose, had no significant effects on mitochondrial respiration, but a weak effect on the calcium retention capacity. Overall, our results exclusively reveal a unique cellular distribution of STAT3 in mouse adult cardiomyocytes, along the T-tubules and in nucleus, under different conditions. They also challenge the expression and activity of STAT3 in mitochondria of these cells under basal conditions and following ischemia-reperfusion. In addition, our results underline technical methods, complemental to cell fractionation, to evaluate STAT3 roles during hypoxia-reoxygenation and at the interface between nucleus and endoplasmic reticulum.
信号转导子和转录激活子 3(STAT3)将细胞信号从质膜传递到细胞核,充当信号分子和转录因子。有报道提出了 STAT3 的另一种非典型作用,即在各种细胞类型中,它可以调节缺血再灌注后的电子传递链复合物 I 和 II 的活性以及线粒体通透性转换孔(PTP)的开放。STAT3 在心脏线粒体中的天然表达,以及其在线粒体功能中的直接和间接转录作用,最近受到质疑。本研究的目的是在基础和应激条件下研究成年心肌细胞中 STAT3 的细胞分布,并使用结构和功能方法评估其在心线粒体中的存在和活性。有趣的是,STAT3 信号的空间分布分析表明,它沿 T 小管和细胞核横向分布。这种分布既不受缺氧影响,也不受缺氧/复氧条件影响。关注线粒体 STAT3 定位,我们的结果表明,在基础和缺血再灌注条件下,鼠成年心肌细胞的粗线粒体而非纯线粒体中可检测到丝氨酸磷酸化的 STAT3(PS727-STAT3)和总 STAT3。用经过预验证的非毒性 Stattic 剂量抑制 STAT3 对线粒体呼吸没有显著影响,但对钙保留能力有微弱影响。总的来说,我们的结果仅揭示了 STAT3 在成年心肌细胞中的独特细胞分布,沿 T 小管和细胞核分布,在不同条件下均如此。它们还挑战了这些细胞中线粒体中 STAT3 在基础条件下和缺血再灌注后的表达和活性。此外,我们的结果强调了补充细胞分级分离的技术方法,以评估缺氧再氧化期间和核与内质网之间界面处 STAT3 的作用。