MicroRNA-101 Inhibits Rat Cardiac Hypertrophy by Targeting Rab1a

被引:29
|
作者
Wei, Longxiao [2 ]
Yuan, Menghui [2 ]
Zhou, Runsuo [2 ]
Bai, Qianrong [2 ]
Zhang, Wei [2 ]
Zhang, Ming [1 ]
Huang, Yong [2 ]
Shi, Le [2 ]
机构
[1] Xi An Jiao Tong Univ, Sch Med, Affiliated Hosp 1, Dept Radiol, Xian 710061, Peoples R China
[2] Fourth Mil Med Univ, Tangdu Hosp, Dept Nucl Med, Xian 710032, Peoples R China
关键词
miR-101; cardiac hypertrophy; Rab1a; small GTPase; PRESSURE-OVERLOAD; CANCER CELLS; SUPPRESSES; ACTIVATION; TRANSITION; MECHANISMS; EXPRESSION; CARCINOMA; HEART;
D O I
10.1097/FJC.0000000000000203
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Cardiac hypertrophy is a primary pathological change associated with cardiovascular diseases. Dysregulated microRNAs are frequent in cardiovascular diseases and contribute to cardiac hypertrophy by regulating a series of targeted genes. In this study, a rat model of cardiac hypertrophy was created by transverse abdominal aortic constriction, and cardiomyocyte hypertrophy in cultured neonatal rat cardiomyocytes was induced using angiotensin II (AngII) to investigate the role of miR-101 in myocardial hypertrophy. We demonstrated that miR-101 was downregulated in both the transverse abdominal aortic constriction rat model and hypertrophic cardiac myocytes. The overexpression of miR-101 in neonatal rat cardiomyocytes, which was accompanied by a reduced Rab1a level, inhibits 3 cardinal features of cardiomyocyte hypertrophy: fetal gene expression, protein synthesis, and cell enlargement. Conversely, the downregulation of miR-101 reverses these effects. Furthermore, the luciferase reporter system demonstrated that Rab1a is a target gene of miR-101, and the ectopic expression of Rab1a can reverse the cardiomyocyte hypertrophy inhibitory activity of miR-101. Taken together, our findings identify miR-101 as an important regulator in cardiac hypertrophy and implicate the potential application of miR-101 in the therapy of cardiac hypertrophy.
引用
收藏
页码:357 / 363
页数:7
相关论文
共 50 条
  • [31] MicroRNA-101 regulates oocyte maturation in vitro via targeting HAS2 in porcine cumulus cells
    Luo, Xiaotong
    Chen, Xuan
    Lv, Yanqiu
    Han, Yue
    Qu, Xinglin
    Zhang, Yuyang
    Li, Xin
    Yu, Yongsheng
    Jin, Yi
    THERIOGENOLOGY, 2022, 187 : 119 - 126
  • [32] MicroRNA-101 Targets MAPK Phosphatase-1 To Regulate the Activation of MAPKs in Macrophages
    Zhu, Qing-Yuan
    Liu, Qin
    Chen, Jian-Xia
    Lan, Ke
    Ge, Bao-Xue
    JOURNAL OF IMMUNOLOGY, 2010, 185 (12) : 7435 - 7442
  • [33] MicroRNA-101 protects cardiac fibroblasts from hypoxia-induced apoptosis via inhibition of the TGF-β signaling pathway
    Zhao, Xin
    Wang, Kejing
    Hu, Fen
    Qian, Cheng
    Guan, Hongquan
    Feng, Kaige
    Zhou, You
    Chen, Zhijian
    INTERNATIONAL JOURNAL OF BIOCHEMISTRY & CELL BIOLOGY, 2015, 65 : 155 - 164
  • [34] MicroRNA-101 down-regulates sphingosine kinase 1 in colorectal cancer cells
    Chen, Min-Bin
    Yang, Lan
    Lu, Pei-Hua
    Fu, Xing-Li
    Zhang, Yan
    Zhu, Ya-Qun
    Tian, Ye
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2015, 463 (04) : 954 - 960
  • [35] MicroRNA302-367-PI3K-PTEN-AKT-mTORC1 pathway promotes the development of cardiac hypertrophy through controlling autophagy
    Jin, Lianhua
    Zhou, Yan
    Han, Lizhi
    Piao, Jinhua
    IN VITRO CELLULAR & DEVELOPMENTAL BIOLOGY-ANIMAL, 2020, 56 (02) : 112 - 119
  • [36] MicroRNA-101 suppresses colorectal cancer progression by negative regulation of Rap1b
    Zhou, Zhiyuan
    Xu, Hang
    Duan, Yantao
    Liu, Bin
    ONCOLOGY LETTERS, 2020, 20 (03) : 2225 - 2231
  • [37] MicroRNA-101 Protects Against Cardiac Remodeling Following Myocardial Infarction via Downregulation of Runt-Related Transcription Factor 1
    Li, Xidong
    Zhang, Shouwen
    Wa, Mingguang
    Liu, Zhonghua
    Hu, Shunpeng
    JOURNAL OF THE AMERICAN HEART ASSOCIATION, 2019, 8 (23):
  • [38] MicroRNA-101 regulated transcriptional modulator SUB1 plays a role in prostate cancer
    Chakravarthi, B. V. S. K.
    Goswami, M. T.
    Pathi, S. S.
    Robinson, A. D.
    Cieslik, M.
    Chandrashekar, D. S.
    Agarwal, S.
    Siddiqui, J.
    Daignault, S.
    Carskadon, S. L.
    Jing, X.
    Chinnaiyan, A. M.
    Kunju, L. P.
    Palanisamy, N.
    Varambally, S.
    ONCOGENE, 2016, 35 (49) : 6330 - 6340
  • [39] IGF-1 deficiency resists cardiac hypertrophy and myocardial contractile dysfunction: role of microRNA-1 and microRNA-133a
    Hua, Yinan
    Zhang, Yingmei
    Ren, Jun
    JOURNAL OF CELLULAR AND MOLECULAR MEDICINE, 2012, 16 (01) : 83 - 95
  • [40] The microRNA signature of patients with sunitinib failure: regulation of UHRF1 pathways by microRNA-101 in renal cell carcinoma
    Goto, Yusuke
    Kurozumi, Akira
    Nohata, Nijiro
    Kojima, Satoko
    Matsushita, Ryosuke
    Yoshino, Hirofumi
    Yamazaki, Kazuto
    Ishida, Yasuo
    Ichikawa, Tomohiko
    Naya, Yukio
    Seki, Naohiko
    ONCOTARGET, 2016, 7 (37) : 59070 - 59086