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pH对兔快、慢骨骼肌纤维肌原纤维ATP酶活性的影响。

Effects of pH on myofibrillar ATPase activity in fast and slow skeletal muscle fibers of the rabbit.

作者信息

Potma E J, van Graas I A, Stienen G J

机构信息

Laboratory for Physiology, Free University, Amsterdam, The Netherlands.

出版信息

Biophys J. 1994 Dec;67(6):2404-10. doi: 10.1016/S0006-3495(94)80727-1.

Abstract

In permeabilized single fibers of fast (psoas) and slow (soleus) muscle from the rabbit, the effect of pH on isometric myofibrillar ATPase activity and force was studied at 15 degrees C, in the pH range 6.4-7.9. ATPase activity was measured photometrically by enzymatic coupling of the regeneration of ATP to the oxidation of NADH, present in the bathing solution. NADH absorbance at 340 nm was determined inside a measuring chamber. To measure ATP turnover in single soleus fibers accurately, a new measuring chamber (volume 4 microliters) was developed that produced a sensitivity approximately 8 times higher than the system previously used. Under control conditions (pH 7.3), the isometric force was 136 and 115 kN/m2 and the ATP turnover was 0.43 and 0.056 mmol per liter fiber volume per second in psoas and soleus fibers, respectively. Over the pH range studied, isometric force increased monotonically by a factor 1.7 for psoas and 1.2 for soleus fibers. In psoas the isometric ATPase activity remained constant, whereas in soleus it slightly decreased with increasing pH. The pH dependency of relative tension cost (isometric ATPase activity divided by force) was practically identical for psoas and soleus fibers. In both cases it decreased by about a factor 0.57 as pH increased from 6.4 to 7.9. The implications of these findings are discussed in terms of cross-bridge kinetics. For both fiber types, estimates of the reaction rates and the distribution of cross-bridges and of their pH dependencies were obtained. A remarkable similarity was found between fast- and slow-twitch fibers in the effects of pH on the reaction rate constants.

摘要

在兔的快速(腰大肌)和慢速(比目鱼肌)肌肉的通透单纤维中,于15℃、pH值范围为6.4 - 7.9的条件下,研究了pH对等长肌原纤维ATP酶活性和力量的影响。通过将ATP再生与浴液中存在的NADH氧化进行酶偶联,以光度法测量ATP酶活性。在测量室内测定340nm处的NADH吸光度。为了准确测量单根比目鱼肌纤维中的ATP周转率,开发了一种新的测量室(体积4微升),其灵敏度比先前使用的系统高约8倍。在对照条件(pH 7.3)下,腰大肌和比目鱼肌纤维的等长力分别为136和115 kN/m²,ATP周转率分别为每秒每升纤维体积0.43和0.056 mmol。在所研究的pH范围内,腰大肌纤维的等长力单调增加1.7倍,比目鱼肌纤维增加1.2倍。在腰大肌中,等长ATP酶活性保持恒定,而在比目鱼肌中,其随pH升高略有下降。腰大肌和比目鱼肌纤维的相对张力消耗(等长ATP酶活性除以力量)的pH依赖性实际上是相同的。在这两种情况下,随着pH从6.4增加到7.9,其下降约0.57倍。根据横桥动力学讨论了这些发现的意义。对于两种纤维类型,获得了反应速率、横桥分布及其pH依赖性的估计值。在pH对反应速率常数的影响方面,快速和慢速肌纤维之间发现了显著的相似性。

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