Myosin heavy chain turnover in cultured neonatal rat heart cells: Effects of [Ca2+](i) and contractile activity

被引:33
作者
Byron, KL
Puglisi, JL
Holda, JR
Eble, D
Samarel, AM
机构
[1] LOYOLA UNIV, MED CTR, CARDIOVASC INST, STRITCH SCH MED, MAYWOOD, IL 60153 USA
[2] LOYOLA UNIV, STRITCH SCH MED, DEPT MED, MAYWOOD, IL 60153 USA
[3] LOYOLA UNIV, STRITCH SCH MED, DEPT PHYSIOL, MAYWOOD, IL 60153 USA
来源
AMERICAN JOURNAL OF PHYSIOLOGY-CELL PHYSIOLOGY | 1996年 / 271卷 / 05期
关键词
muscle atrophy; protein synthesis; protein degradation; myofibrillar assembly; confocal microscopy; intracellular calcium concentration;
D O I
10.1152/ajpcell.1996.271.5.C01447
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Blockade of L-type Ca2+ channels in spontaneously contracting cultured neonatal rat ventricular myocytes causes contractile arrest, myofibrillar disassembly, and accelerated myofibrillar protein turnover. To determine whether myofibrillar atrophy results indirectly from loss of mechanical signals or directly from alterations in intracellular Ca2+ concentration ([Ca2+](i)), contractile activity was inhibited with verapamil (10 mu M) or 2,3-butanedione monoxime (BDM), and their effects on cell shortening, [Ca2+](i), and myosin heavy chain (MHC) turnover mere assessed. Control cells demonstrated spontaneous [Ca2+](i) transients (peak amplitude 232 +/- 15 nM, 1-2 Hz) and vigorous contractile activity. Verapamil inhibited shortening by eliminating spon taneous [Ca2+](i) transients. Low concentrations of BDM (5.0-7.5 mM) had no effect on basal or peak [Ca2+](i) transient amplitude but reduced cell shortening, whereas 10 mM BDM reduced both [Ca2+](i) transient amplitude and shortening. Both agents inhibited MHC synthesis, but only verapamil accelerated MHC degradation. Thus MHC half-life does not change in parallel with contractile activity but rather more closely follows changes in [Ca2+](i). [Ca2+](i) transients appear critical in maintaining myofibrillar assembly and preventing accelerated MHC proteolysis.
引用
收藏
页码:C1447 / C1456
页数:10
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