Xiao Zezhou, Reddy Desai Pavan Kumar, Xue Chuqing, Liu Ximao, Chen Xiong, Li Jiale, Ling Xiao, Zheng Shaoyi
Department of Cardiovascular Surgery, Nanfang Hospital, Southern Medical University, Guangzhou, China.
Front Cardiovasc Med. 2021 Apr 26;8:609300. doi: 10.3389/fcvm.2021.609300. eCollection 2021.
Atrial fibroblasts are the main component of atrial fibrosis. Data in previous studies proved the implication of miRNAs in AF progression and the association of miR-205 with cancer associated-fibroblasts, while no evidence supported the implication of miR-205 in atrial fibrosis. Therefore, this study aims to explore the effect and mechanism of miR-205/P4HA3 axis on atrial fibrosis. Angiotensin II (Ang II) was used to induce atrial fibrosis model in rats, which was verified by H&E staining and Masson staining. qRT-PCR and Western blot were applied to measure the expressions of miR-205, P4HA3, collagen I, and α-SMA. The rat atrial fibroblasts were isolated and then subjected to Ang II treatment or cell transfection for determination of cell biological functions using CCK-8, BrdU assay, TUNEL staining, and cell scratch assay. qRT-PCR and Western blot was applied to analyze the expressions of miR-205, P4HA3, collagen I, α-SMA, JNK, and p-JNK in atrial fibroblasts. Dual-luciferase reporter gene assay and RNA immune-precipitation experiment was employed to verify the binding relationship between miR-205 and P4HA3. Ang II induced rats had disordered arrangement of atrial muscles with uneven nuclear sizes and necrotic atrial myocytes, and increased collagen deposition, in which elevated expressions of P4HA3, collagen I, and α-SMA as well as suppressed expression level of miR-205 were found. , Ang II treatment in atrial fibroblasts with overexpression of P4HA3 facilitated cellular migration and proliferation, with the induction of JNK signaling pathway. However, these trends were reversed after transfection with miR-205 mimic. P4HA3 is a target gene of miR-205. The miR-205/P4HA3 axis is implicated in atrial fibrosis by inhibition of rat fibroblast proliferation and migration and the inactivation of JNK signaling pathway.
心房成纤维细胞是心房纤维化的主要成分。以往研究数据证明了微小RNA(miRNA)在房颤进展中的作用以及miR-205与癌症相关成纤维细胞的关联,但尚无证据支持miR-205参与心房纤维化。因此,本研究旨在探讨miR-205/P4HA3轴对心房纤维化的影响及机制。使用血管紧张素II(Ang II)诱导大鼠心房纤维化模型,通过苏木精-伊红(H&E)染色和Masson染色进行验证。采用实时定量聚合酶链反应(qRT-PCR)和蛋白质免疫印迹法(Western blot)检测miR-205、P4HA3、I型胶原蛋白和α-平滑肌肌动蛋白(α-SMA)的表达。分离大鼠心房成纤维细胞,然后进行Ang II处理或细胞转染,使用细胞计数试剂盒-8(CCK-8)、5-溴脱氧尿嘧啶核苷(BrdU)检测、末端脱氧核苷酸转移酶介导的缺口末端标记(TUNEL)染色和细胞划痕试验测定细胞生物学功能。应用qRT-PCR和Western blot分析心房成纤维细胞中miR-205、P4HA3、I型胶原蛋白、α-SMA、应激活化蛋白激酶(JNK)和磷酸化JNK(p-JNK)的表达。采用双荧光素酶报告基因检测和RNA免疫沉淀实验验证miR-205与P4HA3之间的结合关系。Ang II诱导的大鼠心房肌排列紊乱,核大小不均,心房肌细胞坏死,胶原沉积增加,其中发现P4HA3、I型胶原蛋白和α-SMA表达升高,miR-205表达水平降低。在P4HA3过表达的心房成纤维细胞中进行Ang II处理促进了细胞迁移和增殖,并诱导了JNK信号通路。然而,用miR-205模拟物转染后,这些趋势发生了逆转。P4HA3是miR-205的靶基因。miR-205/P4HA3轴通过抑制大鼠成纤维细胞增殖和迁移以及JNK信号通路失活参与心房纤维化。