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肌球蛋白重链组成在大鼠心肌力量产生和舒张动力学中的作用。

Role of myosin heavy chain composition in kinetics of force development and relaxation in rat myocardium.

作者信息

Fitzsimons D P, Patel J R, Moss R L

机构信息

Department of Physiology, University of Wisconsin School of Medicine, Madison, WI 53706, USA.

出版信息

J Physiol. 1998 Nov 15;513 ( Pt 1)(Pt 1):171-83. doi: 10.1111/j.1469-7793.1998.171by.x.

Abstract
  1. The effects of ventricular myosin heavy chain (MHC) composition on the kinetics of activation and relaxation were examined in both chemically skinned and intact myocardial preparations from adult rats. Thyroid deficiency was induced to alter ventricular MHC isoform expression from approximately 80% alpha-MHC/20% beta-MHC in euthyroid rats to 100% beta-MHC, without altering the expression of thin-filament-associated regulatory proteins. 2. In single skinned myocytes, increased expression of beta-MHC did not significantly affect either maximal Ca2+-activated tension (P0) or the Ca2+ sensitivity of tension (pCa50). However, unloaded shortening velocity (V0) decreased by 80% due to increased beta-MHC expression. 3. The kinetics of activation and relaxation were examined in skinned multicellular preparations using the caged Ca2+ compound DM-nitrophen and caged Ca2+ chelator diazo-2, respectively. Myocardium expressing 100% beta-MHC exhibited apparent rates of submaximal and maximal tension development (kCa) that were 60% lower than in control myocardium, and a 2-fold increase in the half-time for relaxation from steady-state submaximal force. 4. The time courses of cell shortening and intracellular Ca2+ transients were assessed in living, electrically paced myocytes, both with and without beta-adrenergic stimulation (70 nM isoproterenol (isoprenaline)). Thyroid deficiency had no affect on either the extent of myocyte shortening or the resting or peak fura-2 fluorescence ratios. However, induction of beta-MHC expression by thyroid deficiency was associated with increased half-times for myocyte shortening and relengthening and increased half-time for the decay of the fura-2 fluorescence ratio. Qualitatively similar results were obtained in both the absence and the presence of beta-adrenergic stimulation although the beta-agonist accelerated the kinetics of the twitch and the Ca2+ transient. 5. Collectively, these data provide evidence that increased beta-MHC expression contributes significantly to the observed depression of contractile function in thyroid deficient myocardium by slowing the rates of both force development and force relaxation.
摘要
  1. 在成年大鼠的化学去表皮和完整心肌制备物中,研究了心室肌球蛋白重链(MHC)组成对激活和舒张动力学的影响。诱导甲状腺功能减退,使心室MHC同工型表达从正常甲状腺大鼠的约80%α-MHC/20%β-MHC改变为100%β-MHC,而不改变细肌丝相关调节蛋白的表达。2. 在单个去表皮心肌细胞中,β-MHC表达增加对最大Ca2+激活张力(P0)或张力的Ca2+敏感性(pCa50)均无显著影响。然而,由于β-MHC表达增加,无负荷缩短速度(V0)降低了80%。3. 分别使用笼形Ca2+化合物DM-硝基苯酚和笼形Ca2+螯合剂重氮-2,在去表皮多细胞制备物中研究激活和舒张的动力学。表达100%β-MHC的心肌表现出次最大和最大张力发展(kCa)的表观速率比对照心肌低60%,并且从稳态次最大力松弛的半衰期增加了2倍。4. 在有和没有β-肾上腺素能刺激(70 nM异丙肾上腺素)的情况下,评估了活体电刺激心肌细胞中细胞缩短和细胞内Ca2+瞬变的时间进程。甲状腺功能减退对心肌细胞缩短的程度或静息或峰值fura-2荧光比率均无影响。然而,甲状腺功能减退诱导的β-MHC表达与心肌细胞缩短和再延长的半衰期增加以及fura-2荧光比率衰减的半衰期增加有关。在有无β-肾上腺素能刺激的情况下均获得了定性相似的结果,尽管β-激动剂加速了抽搐和Ca2+瞬变的动力学。5. 总体而言,这些数据提供了证据,表明β-MHC表达增加通过减慢力发展和力松弛的速率,对甲状腺功能减退心肌中观察到的收缩功能降低有显著贡献。

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