Wu Penglong, Li Yifan, Cai Mingqi, Ye Bo, Geng Bingchuan, Li Faqian, Zhu Hua, Liu Jinbao, Wang Xuejun
Division of Basic Biomedical Sciences, University of South Dakota Sanford School of Medicine, Vermillion, SD, United States.
Department of Cardiology, Xiamen Cardiovascular Hospital of Xiamen University, School of Medicine, Xiamen University, Xiamen, China.
Front Cardiovasc Med. 2022 Apr 7;9:866901. doi: 10.3389/fcvm.2022.866901. eCollection 2022.
Ubiquitin carboxyl-terminal hydrolase L1 (UCHL1) is a deubiquitinase known to play essential roles in the nervous tissue. Myocardial upregulation of UCHL1 was observed in human dilated cardiomyopathy and several animal models of heart disease, but the (patho)physiological significance of UCHL1 in cardiomyocytes remains undefined. Hence, we conducted this study to fill this critical gap. We produced cardiomyocyte-restricted knockout (CKO) by coupling the -floxed allele with transgenic in C57B/6J inbred mice. Mice transgenic for were used as controls (CTL). Myocardial Uchl1 proteins were markedly reduced in CKO mice but they did not display discernible abnormal phenotype. Ten-week old CTL or CKO mice were subjected to left anterior descending artery ligation (myocardial infarction, MI) or sham surgery (Sham) and characterized at 7- and 28-day after surgery. Compared with Sham mice, significant increases in myocardial UCHL1 proteins were detected in CTL MI but not in CKO MI mice. MI-induced left ventricular (LV) chamber dilation, reduction of ejection fraction (EF) and fractional shortening (FS), and LV anterior wall thinning detected by echocardiography were comparable between the CTL MI and CKO MI groups 7-day post-MI. However, by 28-day post-MI, MI-induced LV chamber dilatation, EF and FS reduction, increases of myocardial ubiquitin conjugates, and increases in the heart weight to body weight ratio and the ventricular weight to body weight ratio were significantly more pronounced in CKO MI than CTL MI mice. As further revealed by LV pressure-volume relationship analyses, CKO MI mice but not CTL MI mice displayed significant decreases in stroke volume, cardiac output, and the maximum rates of LV pressure rising or declining and of LV volume declining, as well as significant increases in LV end-diastolic pressure and Tau, compared with their respective Sham controls. LC3-II flux assays reveal that autophagic flux is decreased in CKO mouse myocardium as well as in cultured Uchl1-deficient cardiomyocytes. In conclusion, UCHL1 of cardiomyocytes is dispensable for development but promotes macroautophagy in cardiomyocytes. Upregulation of UCHL1 in post-MI hearts occurs primarily in the cardiomyocytes and protects against post-MI cardiac remodeling and malfunction likely through supporting autophagic flux and proteostasis during a stress condition.
泛素羧基末端水解酶L1(UCHL1)是一种去泛素化酶,已知在神经组织中发挥重要作用。在人类扩张型心肌病和几种心脏病动物模型中观察到UCHL1在心肌中的上调,但其在心肌细胞中的(病理)生理意义仍不明确。因此,我们进行了这项研究以填补这一关键空白。我们通过将floxed等位基因与C57B/6J近交系小鼠中的转基因相结合,产生了心肌细胞特异性敲除(CKO)小鼠。转基因小鼠用作对照(CTL)。CKO小鼠心肌中的Uchl1蛋白明显减少,但未表现出明显的异常表型。对10周龄的CTL或CKO小鼠进行左前降支动脉结扎(心肌梗死,MI)或假手术(Sham),并在术后7天和28天进行特征分析。与假手术小鼠相比,CTL MI小鼠心肌中的UCHL1蛋白显著增加,而CKO MI小鼠中未检测到增加。超声心动图检测到,MI诱导的左心室(LV)腔扩张、射血分数(EF)和缩短分数(FS)降低以及LV前壁变薄在MI后7天的CTL MI组和CKO MI组之间相当。然而,在MI后28天,CKO MI小鼠中MI诱导的LV腔扩张、EF和FS降低、心肌泛素缀合物增加以及心脏重量与体重比和心室重量与体重比增加明显比CTL MI小鼠更明显。LV压力 - 容积关系分析进一步显示,与各自的假手术对照相比,CKO MI小鼠而非CTL MI小鼠的每搏输出量、心输出量以及LV压力上升或下降和LV容积下降的最大速率显著降低,LV舒张末期压力和Tau显著增加。LC3-II通量分析表明,CKO小鼠心肌以及培养的Uchl1缺陷心肌细胞中的自噬通量降低。总之,心肌细胞中的UCHL1对发育并非必需,但可促进心肌细胞中的巨自噬。MI后心脏中UCHL1的上调主要发生在心肌细胞中,并可能通过在应激条件下支持自噬通量和蛋白质稳态来防止MI后心脏重塑和功能障碍。