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肌球蛋白结合诱导心肌细胞和骨骼肌纤维中细肌丝的协同激活。

Myosin binding-induced cooperative activation of the thin filament in cardiac myocytes and skeletal muscle fibers.

作者信息

Metzger J M

机构信息

Department of Physiology, University of Michigan School of Medicine, Ann Arbor 48109, USA.

出版信息

Biophys J. 1995 Apr;68(4):1430-42. doi: 10.1016/S0006-3495(95)80316-4.

Abstract

Myosin binding-induced activation of the thin filament was examined in isolated cardiac myocytes and single slow and fast skeletal muscle fibers. The number of cross-bridge attachments was increased by stepwise lowering of the [MgATP] in the Ca(2+)-free solution bathing the preparations. The extent of thin filament activation was determined by monitoring steadystate isometric tension at each MgATP concentration. As pMgATP (where pMgATP is -log [MgATP]) was increased from 3.0 to 8.0, isometric tension increased to a peak value in the pMgATP range of 5.0-5.4. The steepness of the tension-pMgATP relationship, between the region of the curve where tension was zero and the peak tension, is hypothesized to be due to myosin-induced cooperative activation of the thin filament. Results showed that the steepness of the tension-pMgATP relationship was markedly greater in cardiac as compared with either slow or fast skeletal muscle fibers. The steeper slope in cardiac myocytes provides evidence of greater myosin binding-induced cooperative activation of the thin filament in cardiac as compared with skeletal muscle, at least under these experimental conditions of nominal free Ca2+. Cooperative activation is also evident in the tension-pCa relation, and is dependent upon thin filament molecular interactions, which require the presence of troponin C. Thus, it was determined whether myosin-based cooperative activation of the thin filament also requires troponin C. Partial extraction of troponin C reduced the steepness of the tension-pMgATP relationship, with the effect being significantly greater in cardiac than in skeletal muscle. After partial extraction of troponin C, muscle type differences in the steepness of the tension-pMgATP relationship were no longer apparent, and reconstitution with purified troponin C restored the muscle lineage differences. These results suggest that, in the absence of Ca2+, myosin-mediated activation of the thin filament is greater in cardiac than in skeletal muscle, and this apparent cooperativity requires the presence of troponin C on thin filament regulatory strands.

摘要

在分离的心肌细胞以及单根慢肌和快肌骨骼肌纤维中,研究了肌球蛋白结合诱导的细肌丝激活。通过逐步降低灌注标本的无钙溶液中的[MgATP],增加横桥附着的数量。通过监测每个MgATP浓度下的稳态等长张力来确定细肌丝激活的程度。随着pMgATP(其中pMgATP为-log[MgATP])从3.0增加到8.0,等长张力在pMgATP范围为5.0 - 5.4时增加到峰值。在张力为零的曲线区域和峰值张力之间,张力-pMgATP关系的陡峭程度被假定是由于肌球蛋白诱导的细肌丝协同激活。结果表明,与慢肌或快肌骨骼肌纤维相比,心肌中张力-pMgATP关系的陡峭程度明显更大。心肌细胞中更陡峭的斜率表明,至少在这些名义游离Ca2+的实验条件下,与骨骼肌相比,心肌中肌球蛋白结合诱导的细肌丝协同激活更强。协同激活在张力-pCa关系中也很明显,并且依赖于细肌丝分子相互作用,这需要肌钙蛋白C的存在。因此,研究了基于肌球蛋白的细肌丝协同激活是否也需要肌钙蛋白C。部分提取肌钙蛋白C降低了张力-pMgATP关系的陡峭程度,其在心肌中的作用明显大于骨骼肌。在部分提取肌钙蛋白C后,张力-pMgATP关系陡峭程度的肌肉类型差异不再明显,用纯化的肌钙蛋白C重构可恢复肌肉谱系差异。这些结果表明,在没有Ca2+的情况下,肌球蛋白介导的细肌丝激活在心肌中比在骨骼肌中更强,并且这种明显的协同性需要细肌丝调节链上存在肌钙蛋白C。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0dcd/1282038/71213af169c9/biophysj00063-0230-a.jpg

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