Chinn Marc, Getz Elise Burmeister, Cooke Roger, Lehman Steven L
Department of Biochemistry and Biophysics, University of California, San Francisco, California 94143, USA.
J Muscle Res Cell Motil. 2003;24(8):571-8. doi: 10.1023/b:jure.0000009846.05582.89.
We have investigated the effects of a stronger actomyosin bond on force (Ps) during rapid stretch of active permeabilized rabbit psoas muscle fibers as a function of temperature from 5 to 30 degrees C. The strength of the actomyosin bond is enhanced by addition of polyethylene glycol (PEG), especially in pre-powerstroke states [Chinn et al. (2000) Biophys J 49: 437-451]. We have hypothesized that such states produce much of the force when activated muscles are stretched [Getz et al. (1998) Biophys J 75: 2971-2983]. Addition of PEG to activated fibers produced a small increase in isometric tension, Po (50-90 kN/m2), which was approximately independent of temperature. In contrast PEG produced a dramatic increase in Ps at low temperatures (200-300 kN/m2), but a modest increase at higher temperatures (70-90 kN/m2). We also measured Ps and Po in solutions containing the phosphate analog aluminum fluoride (AlF4) with and without PEG. In the absence of PEG, AlF4 reduced Po much more than Ps. Addition of PEG did not enhance Po, but enhanced Ps significantly. The contrasting effects of PEG on Ps and Po, and the effect of temperature can be explained by a model in which stretch force is produced by pre-powerstroke cross-bridges whose maximum distension is increased by PEG, and isometric force is produced by strongly bound cross-bridges whose bond strength is also enhanced by PEG, but to a lesser extent.
我们研究了在5至30摄氏度的温度范围内,主动通透的兔腰大肌纤维快速拉伸过程中,更强的肌动球蛋白键对力(Ps)的影响。通过添加聚乙二醇(PEG)可增强肌动球蛋白键的强度,尤其是在动力冲程前状态下[Chinn等人(2000年),《生物物理杂志》49卷:437 - 451页]。我们推测,当激活的肌肉被拉伸时,这些状态会产生大部分力[Getz等人(1998年),《生物物理杂志》75卷:2971 - 2983页]。向激活的纤维中添加PEG会使等长张力Po(50 - 90 kN/m²)有小幅增加,且该增加大致与温度无关。相比之下,PEG在低温下(200 - 300 kN/m²)会使Ps显著增加,但在高温下(70 - 90 kN/m²)只会使其适度增加。我们还测量了含有磷酸盐类似物氟化铝(AlF4)且添加或未添加PEG的溶液中的Ps和Po。在未添加PEG的情况下,AlF4对Po的降低幅度远大于对Ps的降低幅度。添加PEG并未增强Po,但显著增强了Ps。PEG对Ps和Po的不同影响以及温度的影响可以用一个模型来解释,即拉伸力由动力冲程前的横桥产生,PEG会增加其最大伸展度,等长力由紧密结合的横桥产生,PEG也会增强其键强,但程度较小。