MicroRNA-1 Deficiency Is a Primary Etiological Factor Disrupting Cardiac Contractility and Electrophysiological Homeostasis

被引:2
|
作者
Yang, Dandan [1 ]
Wan, Xiaoping [1 ]
Schwieterman, Neill [2 ]
Cavus, Omer [1 ,6 ]
Kacira, Ege [1 ]
Xu, Xianyao [3 ,4 ]
Laurita, Kenneth R. [5 ]
Wold, Loren E. [2 ]
Hund, Thomas J. [3 ,4 ]
Mohler, Peter J. [1 ]
Deschenes, Isabelle [1 ]
Fu, Ji-Dong [1 ]
机构
[1] Ohio State Univ, Dorothy M Davis Heart & Lung Res Inst, Frick Ctr Heart Failure & Arrhythmia, Dept Physiol & Cell Biol, Graves Hall 5071,333 W 10th Ave, Columbus, OH 43210 USA
[2] Ohio State Univ, Dept Surg, Div Cardiac Surg, Columbus, OH USA
[3] Ohio State Univ, Dept Internal Med, Columbus, OH USA
[4] Ohio State Univ, Dept Biomed Engn, Columbus, OH USA
[5] Case Western Reserve Univ, Heart & Vasc Res Ctr, Dept Med, MetroHlth Syst, Cleveland, OH USA
[6] Penn State Univ, Heart & Vasc Inst, Dept Cardiovasc Med, Hershey, PA USA
来源
基金
美国国家卫生研究院;
关键词
arrhythmia; heart contractility; microRNAs; pathogenesis; ventricle remodeling; BETA-SUBUNIT; REMODELING-CONCEPTS; GAP-JUNCTIONS; EXPRESSION; TWINFILIN; PROTEIN; DIFFERENTIATION; MECHANISMS; CYTOSCAPE; GENES;
D O I
10.1161/CIRCEP.123.012150
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
BACKGROUND: MicroRNA-1 (miR1), encoded by the genes miR1-1 and miR1-2, is the most abundant microRNA in the heart and plays a critical role in heart development and physiology. Dysregulation of miR1 has been associated with various heart diseases, where a significant reduction (>75%) in miR1 expression has been observed in patient hearts with atrial fibrillation or acute myocardial infarction. However, it remains uncertain whether miR1-deficiency acts as a primary etiological factor of cardiac remodeling.METHODS: miR1-1 or miR1-2 knockout mice were crossbred to produce 75%-miR1-knockdown (75%KD; miR1-1(+/-):miR1-2(-/-) or miR1-1(-/-):miR1-2(+/-)) mice. Cardiac pathology of 75%KD cardiomyocytes/hearts was investigated by ECG, patch clamping, optical mapping, transcriptomic, and proteomic assays.RESULTS: In adult 75%KD hearts, the overall miR1 expression was reduced to approximate to 25% of the normal wild-type level. These adult 75%KD hearts displayed decreased ejection fraction and fractional shortening, prolonged QRS and QT intervals, and high susceptibility to arrhythmias. Adult 75%KD cardiomyocytes exhibited prolonged action potentials with impaired repolarization and excitation-contraction coupling. Comparatively, 75%KD cardiomyocytes showcased reduced Na+ current and transient outward potassium current, coupled with elevated L-type Ca2+ current, as opposed to wild-type cells. RNA sequencing and proteomics assays indicated negative regulation of cardiac muscle contraction and ion channel activities, along with a positive enrichment of smooth muscle contraction genes in 75%KD cardiomyocytes/hearts. miR1 deficiency led to dysregulation of a wide gene network, with miR1's RNA interference-direct targets influencing many indirectly regulated genes. Furthermore, after 6 weeks of bi-weekly intravenous tail-vein injection of miR1 mimics, the ejection fraction and fractional shortening of 75%KD hearts showed significant improvement but remained susceptible to arrhythmias.CONCLUSIONS: miR1 deficiency acts as a primary etiological factor in inducing cardiac remodeling via disrupting heart regulatory homeostasis. Achieving stable and appropriate microRNA expression levels in the heart is critical for effective microRNA-based therapy in cardiovascular diseases.
引用
收藏
页码:34 / 48
页数:15
相关论文
共 50 条
  • [1] Deficiency of Microrna-1 Induces Cardiac Electrical and Metabolic Remodeling of the Heart
    Yang, Dandan
    Wan, Xiaoping
    Cavus, Omer
    Firoozi, Saman
    Uttarwar, Lalita
    Schwieterman, Neill
    Laurita, Kenneth R.
    Bradley, Elisa A.
    Wold, Loren E.
    Mohler, Peter J.
    Deschenes, Isabelle
    Fu, Jidong
    CIRCULATION, 2021, 144
  • [2] MicroRNA-1 in Cardiac Diseases and Cancers
    Li, Jianzhe
    Dong, Xiaomin
    Wang, Zhongping
    Wu, Jianhua
    KOREAN JOURNAL OF PHYSIOLOGY & PHARMACOLOGY, 2014, 18 (05): : 359 - 363
  • [3] Swimming training restores the cardiac microRNA-1, and-214 levels and cardiac contractility in rat after myocardial infarction
    Melo, Stephano
    Neves, vander Jose
    Fernandes, Tiago
    Oliveira, Edilamar
    FASEB JOURNAL, 2014, 28 (01):
  • [4] The Biophysical Action Of Microrna-1 Is Critical To Maintaining The Homeostasis Of The Heart
    Yang, Dandan
    Wan, Xiaoping
    Kacira, Ege
    Xu, Xianyao
    Tang, Feng
    Hund, Thomas J.
    Mohler, Peter J.
    Deschenes, Isabelle
    Fu, Jidong A.
    CIRCULATION RESEARCH, 2023, 133
  • [5] 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
  • [6] The Unconventional Biophysical Function of MicroRNA-1 in Modulating Cardiac Electrophysiology
    Yang, Dandan
    BIOPHYSICAL JOURNAL, 2020, 118 (03) : 489A - 489A
  • [7] MicroRNA-1 suppresses cardiac hypertrophy by targeting nuclear factor of activated T cells cytoplasmic 3
    Yin, Honglei
    Zhao, Lihua
    Zhang, Shaoli
    Zhang, Yan
    Lei, Suyang
    MOLECULAR MEDICINE REPORTS, 2015, 12 (06) : 8282 - 8288
  • [8] A Novel Inhibitory Role of MicroRNA-1 in Cardiac Fibroblast Proliferation and Differentiation
    King, Michelle E.
    Zhang, Peng
    CIRCULATION, 2013, 128 (22)
  • [9] MicroRNA-1 Inhibits Myocardin-Induced Contractility of Human Vascular Smooth Muscle Cells
    Jiang, Yulan
    Yin, Hao
    Zheng, Xi-Long
    JOURNAL OF CELLULAR PHYSIOLOGY, 2010, 225 (02) : 506 - 511
  • [10] Cardiac STAT3 Deficiency Impairs Contractility and Metabolic Homeostasis in Hypertension
    Altara, Raffaele
    Harmancey, Romain
    Didion, Sean P.
    Booz, George W.
    Zouein, Fouad A.
    FRONTIERS IN PHARMACOLOGY, 2016, 7