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高能磷酸酯在青蛙肌肉做功和维持张力中的利用

High energy phosphate utilization for work production and tension maintenance in frog muscle.

作者信息

Cerretelli P, di Prampero P E

机构信息

Département de Physiologie, Centre Médical Universitaire, Genève, Switzerland.

出版信息

Pflugers Arch. 1988 Aug;412(3):270-6. doi: 10.1007/BF00582508.

Abstract

Frog (Rana esculenta, L.) gastrocnemii (161 pairs) or sartorii (8 pairs) were stimulated by intermittent tetani at 10 degrees C (20 Hz, supramaximal intensity, N2 atmosphere) isometrically (IM) or isotonically (IT) for various durations (6-30 s) at different tensions (0.05-1.00 Po = maximal IM tension at resting length, lo). The energy expenditure (E) was measured from ATP and phosphocreatine breakdown and the high energy phosphate equivalent of lactic acid production. Both in IM and IT conditions, E was found to be a linear function of the summated tetanus duration (t): E = a + b t, where b is the energy cost of tension maintenance. For the gastrocnemius, both in IM and IT, b was independent of the tension developed and equal to 0.45 mumol approximately P.g-1.s-1, whereas for the sartorius b was tension-dependent varying between 0.58 and 0.28 mumol approximately P.g-1.s-1 for Po and 0.18 Po, respectively. The constancy of the b value in muscles with pennate structure may be tentatively attributed, at least in part, to the greater internal energy dissipation, regardless of the tension developed. The term a of the above equation is due to all time-independent processes of muscle contraction, i.e.: (1) activation energy; (2) internal work and (3) external work (in IT only). Based on the measured value of a and on the work performed, the mechanical equivalent of approximately P splitting was calculated as 17.7 kJ.mol-1, a figure close to that previously obtained on frog sartorius (16.7 kJ.mol-1) and dog gastrocnemius (19.2 kJ.mol-1).(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在10摄氏度(20赫兹,超强刺激强度,氮气环境)下,对食用蛙(食用蛙,林奈)的腓肠肌(161对)或缝匠肌(8对)进行间歇性强直刺激,在不同张力(0.05 - 1.00 Po = 静息长度lo时的最大等长张力)下进行不同时长(6 - 30秒)的等长(IM)或等张(IT)收缩。通过ATP和磷酸肌酸分解以及乳酸生成的高能磷酸当量来测量能量消耗(E)。在等长和等张条件下,均发现E是强直收缩总时长(t)的线性函数:E = a + b t,其中b是维持张力的能量消耗。对于腓肠肌,在等长和等张收缩时,b均与所产生的张力无关,约等于0.45微摩尔·磷·克⁻¹·秒⁻¹,而对于缝匠肌,b与张力有关,在Po和0.18 Po时分别在0.58至0.28微摩尔·磷·克⁻¹·秒⁻¹之间变化。具有羽状结构的肌肉中b值的恒定,至少部分可暂时归因于更大的内部能量耗散,而与所产生的张力无关。上述方程中的a项归因于肌肉收缩的所有与时间无关的过程,即:(1)活化能;(2)内功和(3)外功(仅在等张收缩时)。根据测量的a值和所做的功,计算出磷裂解的机械当量约为17.7千焦·摩尔⁻¹,这一数值与先前在蛙缝匠肌(16.7千焦·摩尔⁻¹)和犬腓肠肌(19.2千焦·摩尔⁻¹)上得到的数值相近。(摘要截断于250字)

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