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内毒素血症期间帕金蛋白对心肌线粒体相关膜及心肌病调节作用的评估

Evaluation of Parkin in the Regulation of Myocardial Mitochondria-Associated Membranes and Cardiomyopathy During Endotoxemia.

作者信息

Kim Matthew, Nikouee Azadeh, Sun Yuxiao, Zhang Qing-Jun, Liu Zhi-Ping, Zang Qun Sophia

机构信息

Department of Surgery, Burn & Shock Trauma Research Institute, Loyola University Chicago Stritch School of Medicine, Maywood, IL, United States.

Department of Surgery, University of Texas Southwestern Medical Center, Dallas, TX, United States.

出版信息

Front Cell Dev Biol. 2022 Feb 21;10:796061. doi: 10.3389/fcell.2022.796061. eCollection 2022.

Abstract

Mitochondrial deficiency is a known pathology in sepsis-induced organ failure. We previously found that mitochondria-associated membranes (MAMs), a subcellular domain supporting mitochondrial status, are impaired in the heart during endotoxemia, suggesting a mechanism of mitochondrial damage occurred in sepsis. Mitophagy pathway E3 ubiquitin ligase Parkin and PTEN-induced kinase 1 (PINK1) controls mitochondrial quality. Studies described here examined the impact of Parkin on cardiac MAMs and endotoxemia-induced cardiomyopathy. Additionally, point mutation W403A in Parkin was previously identified as a constitutively active mutation . effects of forced expression of this mutation were evaluated in the endotoxemia model. Mice of wild type (WT), Parkin-deficiency ( ), and knock-in expression of Parkin W402A (human Parkin W403A) were given lipopolysaccharide (LPS) challenge. Cardiac function was evaluated by echocardiography. In the harvested heart tissue, MAM fractions were isolated by ultracentrifugation, and their amount and function were quantified. Ultrastructure of MAMs and mitochondria was examined by electron microscopy. Mitochondrial respiratory activities were measured by enzyme assays. Myocardial inflammation was estimated by levels of pro-inflammatory cytokine IL-6. Myocardial mitophagy was assessed by levels of mitophagy factors associated with mitochondria and degrees of mitochondria-lysosome co-localization. Parkin activation, signified by phosphorylation on serine 65 of Parkin, was also evaluated. Compared with WT, mice showed more severely impaired cardiac MAMs during endotoxemia, characterized by disrupted structure, reduced quantity, and weakened transporting function. Endotoxemia-induced cardiomyopathy was intensified in mice, shown by worsened cardiac contractility and higher production of IL-6. Mitochondria from the hearts were more deteriorated, indicated by losses in both structural integrity and respiration function. Unexpectedly, mice carrying Parkin W402A showed similar levels of cardiomyopathy and mitochondrial damage when compared with their WT counterparts. Further, Parkin W402A mutation neither enhanced mitophagy nor increased Parkin activation in myocardium under the challenge of endotoxemia. our results suggest that Parkin/PINK1 mitophagy participates in the regulation of cardiac MAMs during endotoxemia. Point mutation W402A (human W403A) in Parkin is not sufficient to alleviate cardiomyopathy induced by endotoxemia .

摘要

线粒体缺陷是脓毒症诱导的器官衰竭中一种已知的病理状态。我们之前发现,线粒体相关膜(MAMs),一个支持线粒体状态的亚细胞结构域,在内毒素血症期间心脏中会受损,这提示了脓毒症中线粒体损伤的一种机制。线粒体自噬途径E3泛素连接酶帕金(Parkin)和PTEN诱导激酶1(PINK1)控制线粒体质量。此处描述的研究考察了Parkin对心脏MAMs和内毒素血症诱导的心肌病的影响。此外,Parkin中的点突变W403A之前被鉴定为一种组成型活性突变。在该内毒素血症模型中评估了这种突变的强制表达的效果。对野生型(WT)、Parkin缺陷型( )以及Parkin W402A(人类Parkin W403A)敲入表达的小鼠进行脂多糖(LPS)刺激。通过超声心动图评估心脏功能。在收获的心脏组织中,通过超速离心分离MAM组分,并对其数量和功能进行定量。通过电子显微镜检查MAMs和线粒体的超微结构。通过酶测定法测量线粒体呼吸活性。通过促炎细胞因子白细胞介素-6的水平评估心肌炎症。通过与线粒体相关的线粒体自噬因子水平和线粒体-溶酶体共定位程度评估心肌线粒体自噬。还评估了以Parkin丝氨酸65磷酸化表示的Parkin激活情况。与WT相比, 小鼠在内毒素血症期间心脏MAMs受损更严重,其特征为结构破坏、数量减少和转运功能减弱。内毒素血症诱导的心肌病在 小鼠中加剧,表现为心脏收缩力恶化和白细胞介素-6产生增加。来自 心脏的线粒体更恶化,表现为结构完整性和呼吸功能丧失。出乎意料的是,与WT对照相比,携带Parkin W402A的小鼠表现出相似程度的心肌病和线粒体损伤。此外,在LPS刺激下,Parkin W402A突变既没有增强心肌中的线粒体自噬,也没有增加Parkin激活。我们的结果表明,Parkin/PINK1线粒体自噬在内毒素血症期间参与心脏MAMs的调节。Parkin中的点突变W402A(人类W403A)不足以减轻内毒素血症诱导的心肌病 。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8d95/8898903/ffc04ea0cd5b/fcell-10-796061-g001.jpg

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