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大鼠比目鱼肌和棕色脂肪组织中因钠钾主动转运导致的能量消耗的微量量热法测定。

Microcalorimetric determination of energy expenditure due to active sodium-potassium transport in the soleus muscle and brown adipose tissue of the rat.

作者信息

Chinet A, Clausen T, Girardier L

出版信息

J Physiol. 1977 Feb;265(1):43-61. doi: 10.1113/jphysiol.1977.sp011704.

Abstract
  1. The resting heat production rate (E) of soleus muscles from young rats and brown adipose tissue from adult rats was measured by means of a perfusable heat flux microcalorimeter in the absence and presence of ouabain. In the soleus muscle, the acute response of E to ouabain was compared with the ouabain-suppressible components of 22Na-efflux and 42K-influx. 2. In standard Krebs-Ringer bicarbonate buffer, ouabain (10(-3)M) induced an immediate but transient decrease in E of around 5%. Both in muscle and adipose tissue this was followed by a progressive rise in heat production rate. 3. When the medium was enriched with Mg (10 mM), ouabain produced a sustained decrease in E of the same magnitude as in the standard medium and the secondary rise was less marked or abolished. Under these conditions, in the soleus muscle, ouabain inhibited E by 5% (i.e. by 1-76 +/- 0-22 mcal.g wet wt.-1.min-1), 22Na-efflux by 58% (0-187 +/- 0-013 micronmole. g wet wt.-1.min-1) and 42K-influx by 34% (0-132 +/- 0-028 micronmole. g wet wt.-1.min-1). 4. When the muscles were loaded with Na by pre-incubation in K-free Mg-enriched medium, the addition of K (3mM) induced an immediate ouabain-suppressible increase in E of 2-98 +/- 0-33 mcal. g wet wt.-1.min-1 and a concomitant stimulation of 22Na-efflux of 0-388 +/- 0-136 micronmole. g wet wt.-1.min-1. 5. Maximum Na/ATP ratios for the active Na-K transport process were computed, with no assumption as to the in vivo free energy of ATP hydrolysis. These were 2-1, 1-9 and 2-3 under the conditions described in paragraphs (2), (3) and (4) respectively. 6. The calculated reversible thermodynamic work associated with active Na-K transport corresponded to 34% of the measured ouabain-induced decrease in E. On the premise that the maximum efficiency of the cellular energy conservation processes is 65%, this estimate indicates that the minimum energetic efficiency of ATP utilization by the active Na-K transport process in mammalian muscle is 52%.
摘要
  1. 在有无哇巴因的情况下,使用可灌注热流微量量热计测量了幼鼠比目鱼肌和成年鼠棕色脂肪组织的静息产热率(E)。在比目鱼肌中,将E对哇巴因的急性反应与22Na外流和42K内流中可被哇巴因抑制的成分进行了比较。2. 在标准的 Krebs-Ringer 碳酸氢盐缓冲液中,哇巴因(10(-3)M)导致E立即但短暂地下降约5%。在肌肉和脂肪组织中,随后产热率都逐渐上升。3. 当培养基中加入镁(10 mM)时,哇巴因使E持续下降,下降幅度与在标准培养基中相同,且二次上升不太明显或消失。在这些条件下,在比目鱼肌中,哇巴因使E降低5%(即降低1 - 76±0 - 22 mcal·g湿重-1·min-1),使22Na外流降低58%(0 - 187±0 - 013微摩尔·g湿重-1·min-1),使42K内流降低34%(0 - 132±0 - 028微摩尔·g湿重-1·min-1)。4. 当肌肉在无钾的富镁培养基中预孵育以加载钠后,加入钾(3 mM)会立即引起可被哇巴因抑制的E增加,增加量为2 - 98±0 - 33 mcal·g湿重-1·min-1,并同时刺激22Na外流,增加量为0 - 388±0 - 136微摩尔·g湿重-1·min-1。5. 计算了主动钠钾转运过程的最大钠/ATP 比率,且未对 ATP 水解的体内自由能做任何假设。在第(2)、(3)和(4)段所述条件下,这些比率分别为2 - 1、1 - 9和2 - 3。6. 与主动钠钾转运相关的计算出的可逆热力学功相当于测量到的哇巴因诱导的E下降的34%。基于细胞能量守恒过程的最大效率为65%这一前提,该估计表明哺乳动物肌肉中主动钠钾转运过程利用ATP的最小能量效率为52%。

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