A direct test of the hypothesis that increased microtubule network density contributes to contractile dysfunction of the hypertrophied heart

被引:26
作者
Cheng, Guangmao [1 ]
Zile, Michael R. [1 ]
Takahashi, Masaru [1 ]
Baicu, Catalin F. [1 ]
Bonnema, D. Dirk [1 ]
Cabral, Fernando [2 ]
Menick, Donald R. [1 ]
Cooper, George [1 ]
机构
[1] Med Univ S Carolina, Gazes Cardiac Res Inst, Div Cardiol, Charleston, SC 29403 USA
[2] Univ Texas Houston, Sch Med, Dept Integrat Biol & Pharmacol, Houston, TX USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY | 2008年 / 294卷 / 05期
关键词
molecular biology; hypertrophy; heart failure;
D O I
10.1152/ajpheart.91515.2007
中图分类号
R5 [内科学];
学科分类号
1002 ; 100201 ;
摘要
Contractile dysfunction in pressure overload-hypertrophied myocardium has been attributed in part to the increased density of a stabilized cardiocyte microtubule network. The present study, the first to employ wild-type and mutant tubulin transgenes in a living animal, directly addresses this microtubule hypothesis by defining the contractile mechanics of the normal and hypertrophied left ventricle (LV) and its constituent cardiocytes from transgenic mice having cardiac-restricted replacement of native beta(4)-tubulin with beta(1)-tubulin mutants that had been selected for their effects on microtubule stability and thus microtubule network density. In each case, the replacement of cardiac beta(4)-tubulin with mutant hemagglutinin-tagged beta(1)-tubulin was well tolerated in vivo. When LVs in intact mice and cardiocytes from these same LVs were examined in terms of contractile mechanics, baseline function was reduced in mice with genetically hyperstabilized microtubules, and hypertrophy-related contractile dysfunction was exacerbated. However, in mice with genetically hypostabilized cardiac microtubules, hypertrophy-related contractile dysfunction was ameliorated. Thus, in direct support of the microtubule hypothesis, we show here that cardiocyte microtubule network density, as an isolated variable, is inversely related to contractile function in vivo and in vitro, and microtubule instability rescues most of the contractile dysfunction seen in pressure overload-hypertrophied myocardium.
引用
收藏
页码:H2231 / H2241
页数:11
相关论文
共 46 条
[1]   TYROSINATABLE AND NON-TYROSINATABLE TUBULIN SUBPOPULATIONS IN RAT MUSCLE IN COMPARISON WITH THOSE IN BRAIN [J].
ALONSO, AD ;
ARCE, CA ;
BARRA, HS .
BIOCHIMICA ET BIOPHYSICA ACTA, 1993, 1163 (01) :26-30
[2]   Quantitation and distribution of β-tubulin in human cardiac myocytes. [J].
Aquila-Pastir, LA ;
DiPaola, NR ;
Matteo, RG ;
Smedira, NG ;
McCarthy, PM ;
Moravec, CS .
JOURNAL OF MOLECULAR AND CELLULAR CARDIOLOGY, 2002, 34 (11) :1513-1523
[3]   AN AMINO-TERMINAL TETRAPEPTIDE SPECIFIES COTRANSLATIONAL DEGRADATION OF BETA-TUBULIN BUT NOT ALPHA-TUBULIN MESSENGER-RNAS [J].
BACHURSKI, CJ ;
THEODORAKIS, NG ;
COULSON, RMR ;
CLEVELAND, DW .
MOLECULAR AND CELLULAR BIOLOGY, 1994, 14 (06) :4076-4086
[4]  
Barlow SB, 2002, J CELL SCI, V115, P3469
[5]   Post-translational modifications of cardiac tubulin during chronic heart failure in the rat [J].
Belmadani, S ;
Poüs, C ;
Ventura-Clapier, R ;
Fischmeister, R ;
Méry, PF .
MOLECULAR AND CELLULAR BIOCHEMISTRY, 2002, 237 (1-2) :39-46
[6]  
Blade K, 1999, J CELL SCI, V112, P2213
[7]   MUTATIONS AFFECTING ASSEMBLY AND STABILITY OF TUBULIN - EVIDENCE FOR A NONESSENTIAL BETA-TUBULIN IN CHO CELLS [J].
BOGGS, B ;
CABRAL, F .
MOLECULAR AND CELLULAR BIOLOGY, 1987, 7 (08) :2700-2707
[8]   STABILIZATION AND POSTTRANSLATIONAL MODIFICATION OF MICROTUBULES DURING CELLULAR MORPHOGENESIS [J].
BULINSKI, JC ;
GUNDERSEN, GG .
BIOESSAYS, 1991, 13 (06) :285-293
[9]   Inhibition of β-adrenergic receptor trafficking in adult cardiocytes by MAP4 decoration of microtubules [J].
Cheng, GM ;
Qiao, F ;
Gallien, TN ;
Kuppuswamy, D ;
Cooper, G .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2005, 288 (03) :H1193-H1202
[10]   Accuracy of echocardiographic estimates of left ventricular mass in mice [J].
Collins, KA ;
Korcarz, CE ;
Shroff, SG ;
Bednarz, JE ;
Fentzke, RC ;
Lin, H ;
Leiden, JM ;
Lang, RM .
AMERICAN JOURNAL OF PHYSIOLOGY-HEART AND CIRCULATORY PHYSIOLOGY, 2001, 280 (05) :H1954-H1962