Regulation of Human Cardiac Ion Channel Genes by MicroRNAs: Theoretical Perspective and Pathophysiological Implications

被引:83
作者
Luo, Xiaobin [1 ]
Zhang, Haijun
Xiao, Jiening
Wang, Zhiguo [1 ]
机构
[1] Univ Montreal, Dept Med, Montreal Heart Inst, Res Ctr, Montreal, PQ H3C 3J7, Canada
关键词
miRNA; Ion channel; Gene expression; Heart; Myocardial infarction; Heart failure; Atrial fibrillation; EPICARDIAL BORDER ZONE; MUSCLE-SPECIFIC MICRORNA; INDUCED HEART-FAILURE; MYOCARDIAL-INFARCTION; VENTRICULAR MYOCYTES; POTASSIUM CURRENTS; NA+-CA2+ EXCHANGER; OUTWARD CURRENTS; EXPRESSION; K+;
D O I
10.1159/000315076
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Excitability is a fundamental characteristic of cardiac cells, which is delicately determined by ion channel activities modulated by many factors. MicroRNA (miRNA) expression is dynamically regulated and altered miRNA expression can render expression deregulation of ion channel genes leading to channelopathies-arrhythmogenesis. Indeed, evidence has emerged indicating the crucial role of miRNAs in controlling cardiac excitability by regulating expression of ion channel genes at the post-transcriptional level. However, the very limited experimental data in the literature hinder our understanding of the role of miRNAs and the often one-to-one interaction between miRNA and ion-channel gene in the published studies also casts a doubt about fullness of our view. Unfortunately, currently available techniques do not permit thorough characterization of miRNA targeting; computational prediction programs remain the only source for rapid identification of a putative miRNA target in silico. We conducted a rationally designed bioinformatics analysis in conjunction with experimental approaches to identify the miRNAs from the currently available miRNA databases which have the potential to regulate human cardiac ion channel genes and to validate the analysis with several pathological settings associated with the deregulated miRNAs and ion channel genes in the heart. We established a matrix of miRNAs that are expressed in cardiac cells and have the potential to regulate the genes encoding cardiac ion channels and transporters. We were able to explain a particular ionic remodeling process in hypertrophy/ heart failure, myocardial ischemia, or atrial fibrillation with the corresponding deregulated miRNAs under that pathological condition; the changes of miRNAs appear to have anti-correlation with the changes of many of the genes encoding cardiac ion channels under these situations. These results indicate that multiple miRNAs might be critically involved in the electrical/ ionic remodeling processes of cardiac diseases through altering their expression in cardiac cells, which has not been uncovered by previous experimental studies. Copyright (C) 2010 S. Karger AG, Basel
引用
收藏
页码:571 / 586
页数:16
相关论文
共 92 条
  • [1] DIMINISHED CA2+ AND BA2+ CURRENTS IN MYOCYTES SURVIVING IN THE EPICARDIAL BORDER ZONE OF THE 5-DAY INFARCTED CANINE HEART
    AGGARWAL, R
    BOYDEN, PA
    [J]. CIRCULATION RESEARCH, 1995, 77 (06) : 1180 - 1191
  • [2] K(v)LQT1 and IsK (minK) proteins associate to form the I-Ks cardiac potassium current
    Barhanin, J
    Lesage, F
    Guillemare, E
    Fink, M
    Lazdunski, M
    Romey, G
    [J]. NATURE, 1996, 384 (6604) : 78 - 80
  • [3] ALTERATIONS OF K+ CURRENTS IN ISOLATED HUMAN VENTRICULAR MYOCYTES FROM PATIENTS WITH TERMINAL HEART-FAILURE
    BEUCKELMANN, DJ
    NABAUER, M
    ERDMANN, E
    [J]. CIRCULATION RESEARCH, 1993, 73 (02) : 379 - 385
  • [4] Ionic mechanisms of electrical remodeling in human atrial fibrillation
    Bosch, RF
    Zeng, XR
    Grammer, JB
    Popovic, K
    Mewis, C
    Kühlkamp, V
    [J]. CARDIOVASCULAR RESEARCH, 1999, 44 (01) : 121 - 131
  • [5] Principles of MicroRNA-target recognition
    Brennecke, J
    Stark, A
    Russell, RB
    Cohen, SM
    [J]. PLOS BIOLOGY, 2005, 3 (03): : 404 - 418
  • [6] MicroRNAs in skeletal and cardiac muscle development
    Callis, Thomas E.
    Chen, Jian-Fu
    Wan, Da-Zhi
    [J]. DNA AND CELL BIOLOGY, 2007, 26 (04) : 219 - 225
  • [7] MicroRNA-133 controls cardiac hypertrophy
    Care, Alessandra
    Catalucci, Daniele
    Felicetti, Federica
    Bonci, Desiree
    Addario, Antonio
    Gallo, Paolo
    Bang, Marie-Louise
    Segnalini, Patrizia
    Gu, Yusu
    Dalton, Nancy D.
    Elia, Leonardo
    Latronico, Michael V. G.
    Hoydal, Morten
    Autore, Camillo
    Russo, Matteo A.
    Dorn, Gerald W., II
    Ellingsen, Oyvind
    Ruiz-Lozano, Pilar
    Peterson, Kirk L.
    Croce, Carlo M.
    Peschle, Cesare
    Condorelli, Gianluigi
    [J]. NATURE MEDICINE, 2007, 13 (05) : 613 - 618
  • [8] Cardiac ionic currents and acute ischemia: From channels to arrhythmias
    Carmeliet, E
    [J]. PHYSIOLOGICAL REVIEWS, 1999, 79 (03) : 917 - 1017
  • [9] Real-time quantification of microRNAs by stem-loop RT-PCR
    Chen, CF
    Ridzon, DA
    Broomer, AJ
    Zhou, ZH
    Lee, DH
    Nguyen, JT
    Barbisin, M
    Xu, NL
    Mahuvakar, VR
    Andersen, MR
    Lao, KQ
    Livak, KJ
    Guegler, KJ
    [J]. NUCLEIC ACIDS RESEARCH, 2005, 33 (20) : e179.1 - e179.9
  • [10] The role of microRNA-1 and microRNA-133 in skeletal muscle proliferation and differentiation
    Chen, JF
    Mandel, EM
    Thomson, JM
    Wu, QL
    Callis, TE
    Hammond, SM
    Conlon, FL
    Wang, DZ
    [J]. NATURE GENETICS, 2006, 38 (02) : 228 - 233