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关于L-乳酸进入青蛙缝匠肌及从该肌肉中释放的机制的微电极研究。

A microelectrode study of the mechanisms of L-lactate entry into and release from frog sartorius muscle.

作者信息

Mason M J, Thomas R C

机构信息

Department of Physiology, Medical School, Bristol.

出版信息

J Physiol. 1988 Jun;400:459-79. doi: 10.1113/jphysiol.1988.sp017132.

Abstract
  1. Changes in intracellular pH and intracellular anion levels were monitored in frog sartorius muscle fibres during exposure to extracellular L-lactate, using ion-sensitive microelectrodes. 2. Resting intracellular pH (pHi) in 20 mmol l-1 HEPES buffer was 7.18 +/- 0.015 (S.E. of mean, n = 62). Exposure to an extracellular solution at pH 6.5 buffered with 20 mmol l-1 3-(N-morpholino)propanesulphonic acid (MOPS) resulted in a slow intracellular acidification. 3. A reversible decrease in pHi and an increase in intracellular anion levels was observed when L-lactate replaced chloride in equimolar amounts. The increase in intracellular anion level is consistent with intracellular accumulation of L-lactate ion. 4. The rate and steady-state change in pHi and anion level was a function of both extracellular pH and L-lactate concentration, providing evidence for the coupled movement of lactate and proton equivalents. 5. The initial rate of uptake of L-lactate, as measured by the change of pHi, was a non-linear function of the extracellular L-lactate concentration at extracellular pH 6.8 and 7.35. 6. No saturation was observed with concentrations of L-lactate between 5 and 60 mmol l-1 at pH 7.35 and 2.5 and 40 mmol l-1 at pH 6.8. 7. The non-linear relationship between the initial rate of change in pHi and extracellular L-lactate was well fitted by a curve defining uptake as the sum of a carrier process displaying Michaelis-Menten kinetics and a passive diffusion component. The apparent Km of the carrier was 10 mmol l-1 at pHo 7.35 and 4 mmol l-1 at pHo 6.8. 8. The initial rate of change of pHi in the presence of L-lactate was significantly inhibited 39.1 +/- 6.2% by 2-5 mmol l-1 alpha-cyano-4-hydroxycinnamate (n = 9; P less than 0.05, paired t test). 9. alpha-Cyano-4-hydroxycinnamate had no detectable effect on the initial rate of change of pHi induced by propionate exposure. 10. The initial rate of change of pHi induced by L-lactate was not affected by 20-100 mumol l-1 4-acetamido-4'-isothiocyanostilbene-2,2'-disulphonic acid (SITS). 11. We conclude that L-lactate crosses the membrane of the frog sartorius muscle with proton equivalents via (1) a carrier-mediated process, and (2) passive diffusion of lactic acid. In the physiological range of L-lactate concentrations and pH the transport process dominates.
摘要
  1. 使用离子敏感微电极监测蛙缝匠肌纤维在暴露于细胞外L-乳酸期间细胞内pH值和细胞内阴离子水平的变化。2. 在20 mmol/L HEPES缓冲液中,静息细胞内pH值(pHi)为7.18±0.015(平均值的标准误,n = 62)。暴露于用20 mmol/L 3-(N-吗啉代)丙烷磺酸(MOPS)缓冲的pH 6.5的细胞外溶液中会导致细胞内缓慢酸化。3. 当L-乳酸以等摩尔量替代氯离子时,观察到pHi可逆性降低且细胞内阴离子水平升高。细胞内阴离子水平的升高与L-乳酸根离子在细胞内的积累一致。4. pHi和阴离子水平的变化速率及稳态变化是细胞外pH值和L-乳酸浓度两者的函数,这为乳酸和质子当量的协同转运提供了证据。5. 在细胞外pH 6.8和7.35时,通过pHi变化测量的L-乳酸摄取初始速率是细胞外L-乳酸浓度的非线性函数。6. 在pH 7.35时,L-乳酸浓度在5至60 mmol/L之间,以及在pH 6.8时,L-乳酸浓度在2.5至40 mmol/L之间均未观察到饱和现象。7. pHi初始变化速率与细胞外L-乳酸之间的非线性关系通过一条曲线得到很好拟合,该曲线将摄取定义为显示米氏动力学的载体过程和被动扩散成分的总和。在pHo 7.35时载体的表观Km为10 mmol/L,在pHo 6.8时为4 mmol/L。8. 在存在L-乳酸的情况下,pHi的初始变化速率被2 - 5 mmol/L α-氰基-4-羟基肉桂酸显著抑制39.1±6.2%(n = 9;配对t检验,P小于0.05)。9. α-氰基-4-羟基肉桂酸对丙酸盐暴露诱导的pHi初始变化速率没有可检测到的影响。10. L-乳酸诱导的pHi初始变化速率不受20 - 100 μmol/L 4-乙酰氨基-4'-异硫氰基芪-2,2'-二磺酸(SITS)的影响。11. 我们得出结论,L-乳酸与质子当量一起通过(1)载体介导的过程和(2)乳酸的被动扩散穿过蛙缝匠肌的膜。在L-乳酸浓度和pH的生理范围内,转运过程占主导。

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