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非洲爪蟾去皮肌纤维中用于钙摄取和力量产生的ATP利用

ATP utilization for calcium uptake and force production in skinned muscle fibres of Xenopus laevis.

作者信息

Stienen G J, Zaremba R, Elzinga G

机构信息

Department of Physiology, Free University, Amsterdam, The Netherlands.

出版信息

J Physiol. 1995 Jan 1;482 ( Pt 1)(Pt 1):109-22. doi: 10.1113/jphysiol.1995.sp020503.

Abstract
  1. A method has been developed to discriminate between the rate of ATP hydrolysis associated with calcium uptake into the sarcoplasmic reticulum (SR) and force development of the contractile apparatus in mechanically or saponin-skinned skeletal muscle fibres. The rate of ATP hydrolysis was determined in fibres of different types from the iliofibularis muscle of Xenopus laevis by enzymatic coupling of ATP re-synthesis to the oxidation of NADH. 2. The ATPase activity was determined before and after exposure of the preparations for 30 min to a solution containing 0.5% Triton X-100, which effectively abolishes the SR ATPase activity. The fibres were activated in a solution containing 5 mM caffeine to ensure that calcium uptake into the SR was maximal. 3. At saturating Ca2+ concentrations the actomyosin (AM) and SR ATPase activities in fast-twitch fibres, at 4.3 degrees C, amounted to 1.52 +/- 0.07 and 0.58 +/- 0.10 mumol s-1 (g dry wt)-1, respectively (means +/- S.E.M.; n = 25). The SR ATPase activity was 25% of the total ATPase activity. At submaximal calcium concentrations the AM ATPase activity varied in proportion to the isometric force. 4. The calcium sensitivity of the SR ATPase was larger than that of the AM ATPase and its dependence on [Ca2+] was less steep. The AM ATPase activity was half-maximal at a pCa of 6.11 (pCa = -log [Ca2+]) whereas the SR ATPase activity was half-maximal at a pCa of 6.62. 5. In Triton X-100-treated fibres, at different 2,3-butanedione monoxime (BDM) concentrations, the AM ATPase activity and isometric force varied proportionally. The SR ATPase activity determined by extrapolation of the total ATPase activity in mechanically skinned or saponin-treated fibres to zero force, was independent of the BDM concentration in the range studied (0-20 mM). The values obtained for the SR ATPase activity in this way were similar to those obtained with Triton X-100 treatment. 6. The AM ATPase activity in slow-twitch fibres amounted to 0.74 +/- 0.13 mumol s-1 (g dry wt)-1, i.e. about a factor of two smaller than in fast-twitch fibres. The SR ATPase activity amounted to 0.47 +/- 0.07 mumol s-1 (g dry wt)-1, i.e. rather similar to the value in fast-twitch fibres. The proportion of the total ATPase activity that was due to SR ATPase (40%) was larger than in fast-twitch fibres. 7. The temperature dependence of the AM and SR ATPase activities in fast-twitch fibres differed. In the temperature range 5-10 degrees C, the relative changes in AM and SR ATPase activities for a 10 degrees C temperature change (Q10) were 3.9 +/- 0.3 and 7.2 +/- 1.5, respectively.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 已开发出一种方法,用于区分与钙摄取到肌浆网(SR)相关的ATP水解速率以及机械或皂素去皮的骨骼肌纤维中收缩装置的力发展。通过将ATP再合成与NADH氧化进行酶偶联,测定了非洲爪蟾髂腓肌不同类型纤维中的ATP水解速率。2. 在将制剂暴露于含有0.5% Triton X-100的溶液30分钟之前和之后测定ATP酶活性,该溶液可有效消除SR ATP酶活性。纤维在含有5 mM咖啡因的溶液中被激活,以确保钙摄取到SR中达到最大值。3. 在4.3℃下,在饱和Ca2+浓度时,快肌纤维中的肌动球蛋白(AM)和SR ATP酶活性分别为1.52±0.07和0.58±0.10 μmol s-1(g干重)-1(平均值±标准误;n = 25)。SR ATP酶活性占总ATP酶活性的25%。在亚最大钙浓度下,AM ATP酶活性与等长力成比例变化。4. SR ATP酶的钙敏感性大于AM ATP酶,并且其对[Ca2+]的依赖性较不陡峭。AM ATP酶活性在pCa为6.11时达到最大值的一半(pCa = -log [Ca2+]),而SR ATP酶活性在pCa为6.62时达到最大值的一半。5. 在Triton X-100处理的纤维中,在不同的2,3-丁二酮单肟(BDM)浓度下,AM ATP酶活性和等长力成比例变化。通过将机械去皮或皂素处理的纤维中的总ATP酶活性外推到零力来确定的SR ATP酶活性,在所研究的浓度范围(0-20 mM)内与BDM浓度无关。以这种方式获得的SR ATP酶活性值与用Triton X-100处理获得的值相似。6. 慢肌纤维中的AM ATP酶活性为0.74±0.13 μmol s-1(g干重)-1,即比快肌纤维中的约小两倍。SR ATP酶活性为0.47±0.07 μmol s-1(g干重)-1,即与快肌纤维中的值相当相似。由于SR ATP酶导致的总ATP酶活性比例(40%)比快肌纤维中的大。7. 快肌纤维中AM和SR ATP酶活性的温度依赖性不同。在5-10℃的温度范围内,对于10℃的温度变化(Q10),AM和SR ATP酶活性的相对变化分别为3.9±0.3和7.2±1.5。(摘要截短为400字)

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