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在生理温度下,比目鱼肌和腰大肌肌原纤维的ATP酶缩短速率相似。

At physiological temperatures the ATPase rates of shortening soleus and psoas myofibrils are similar.

作者信息

Candau R, Iorga B, Travers F, Barman T, Lionne C

机构信息

Institut National de la Santé Et de la Recherche Médicale Unité 128, 34293 Montpellier Cedex 5, France.

出版信息

Biophys J. 2003 Nov;85(5):3132-41. doi: 10.1016/S0006-3495(03)74731-6.

Abstract

We obtained the temperature dependences of the adenosine triphosphatase (ATPase) activities (calcium-activated and relaxed) of myofibrils from a slow muscle, which we compared with those from a fast muscle. We chose rabbit soleus and psoas because their myosin heavy chains are almost pure: isoforms I and IIX, respectively. The Arrhenius plots of the ATPases are linear (4-35 degrees C) with energies of activation for soleus myofibrils 155 kJ mol(-1) (activated) and 78 kJ mol(-1) (relaxed). With psoas myofibrils, the energies of activation were 71 kJ mol(-1) (activated) and 60 kJ mol(-1) (relaxed). When extrapolated to 42 degrees C the ATPase rates of the two types of myofibril were identical: 50 s(-1) (activated) and 0.23 s(-1) (relaxed). Whereas with psoas myofibrils the K(m) for adenosine triphosphate (activated ATPase) is relatively insensitive to temperature, that for soleus myofibrils increased from 0.3 microM at 4 degrees C to 66.5 microM at 35 degrees C. Our results illustrate the importance of temperature when comparing the mechanochemical coupling in different types of muscle. We discuss the problem of how to reconcile the similarity of the myofibrillar ATPase rates at physiological temperatures with their different mechanical properties.

摘要

我们获得了慢肌肌原纤维的三磷酸腺苷酶(ATPase)活性(钙激活和松弛状态下)与温度的关系,并与快肌的进行了比较。我们选择了兔比目鱼肌和腰大肌,因为它们的肌球蛋白重链几乎是纯的,分别为同工型I和IIX。ATP酶的阿累尼乌斯曲线在4 - 35摄氏度范围内呈线性,比目鱼肌肌原纤维的激活能为155 kJ mol(-1)(激活状态)和78 kJ mol(-1)(松弛状态)。对于腰大肌肌原纤维,激活能分别为71 kJ mol(-1)(激活状态)和60 kJ mol(-1)(松弛状态)。当外推到42摄氏度时,两种类型肌原纤维的ATP酶速率相同:50 s(-1)(激活状态)和0.23 s(-1)(松弛状态)。虽然腰大肌肌原纤维中三磷酸腺苷(激活的ATP酶)的米氏常数(K(m))对温度相对不敏感,但比目鱼肌肌原纤维的K(m)从4摄氏度时的0.3 microM增加到35摄氏度时的66.5 microM。我们的结果说明了在比较不同类型肌肉的机械化学偶联时温度的重要性。我们讨论了如何协调生理温度下肌原纤维ATP酶速率的相似性与其不同机械特性之间的问题。

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