首页> 美国卫生研究院文献>The Journal of Physiology >Myofilament sliding per ATP molecule in rabbit muscle fibres studied using laser flash photolysis of caged ATP.
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Myofilament sliding per ATP molecule in rabbit muscle fibres studied using laser flash photolysis of caged ATP.

机译:使用笼式ATP的激光闪光光解研究了兔肌纤维中每个ATP分子的肌丝滑动。

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摘要

1. To estimate the distance of myofilament sliding per ATP molecule hydrolysed during the actin-myosin interaction in muscle, single glycerinated fibres prepared from rabbit psoas muscle were made to shorten under very small external loads (< or = 0.0005 maximum isometric force (Po), at 20-22 degrees C) by the laser flash photolysis of caged ATP (P3-1-(2-nitro) phenylethyladenosine 5'-triphosphate), a biologically inert and photolabile precursor of ATP. The laser flash-induced fibre shortening was recorded with a high-speed video system at 200 frames s-1. 2. Following the photochemical release of 75-300 microM ATP, the fibres shortened uniformly along the fibre length not only at the level of fibre segments but also at the level of sarcomeres. The fibres did not shorten appreciably in response to 50 microM ATP. 3. The initial velocity of the laser flash-induced fibre shortening increased with increasing concentration of released ATP, being 0.05 +/- 0.01, 0.12 +/- 0.04, 0.23 +/- 0.04, 0.38 +/- 0.03 and 0.95 +/- 0.08 microns s-1 (half-sarcomere)-1 (means +/- S.E.M., n = 10) with 75, 100, 150, 200 and 300 microM ATP, respectively. 4. The distance of the laser flash-induced fibre shortening also increased with increasing concentration of released ATP, being 10 +/- 2, 25 +/- 5, 65 +/- 7, 100 +/- 10 and 180 +/- 20 nm (half-sarcomere)-1 (means +/- S.E.M., n = 10) with 75, 100, 150, 200 and 300 microM ATP, respectively. 5. Comparison of the initial shortening velocities of the laser flash-induced shortening with the force-velocity relation of maximally Ca(2+)-activated fibres indicated the presence of considerable internal resistance against myofilament sliding following release of ATP. The initial velocity of shortening following the release of 300, 150 and 75 microM ATP was equal to the shortening velocity of maximally Ca(2+)-activated fibres under an external load of 0.55, 0.93 and 0.98 Po respectively. 6. These results suggest that, under nearly isometric conditions, the distance of myofilament sliding per ATP molecule hydrolysed is about 10 nm in each half-sarcomere.
机译:1.为了估计肌动蛋白-肌球蛋白相互作用过程中水解的每个ATP分子水解的肌丝滑行距离,用兔腰大肌制备的单甘油化纤维在很小的外部载荷(小于或等于0.0005最大等轴测力(Po))下缩短了,在20-22摄氏度下,通过笼形ATP(P3-1-(2-硝基)苯基乙基腺苷5'-三磷酸)的激光闪光光解,ATP是一种生物惰性且光不稳定的ATP前体。用高速视频系统以200帧s-1记录激光闪光引起的纤维缩短。 2.在光化学释放75-300 microM ATP之后,纤维不仅沿纤维段水平而且沿肉瘤水平沿纤维长度均匀缩短。响应50 microM ATP时,纤维没有明显缩短。 3.激光闪光引起的纤维缩短的初始速度随着释放的ATP浓度的增加而增加,分别为0.05 +/- 0.01、0.12 +/- 0.04、0.23 +/- 0.04、0.38 +/- 0.03和0.95 +/-分别具有75、100、150、200和300 microM ATP的0.08微米s-1(半肌节)-1(平均值+/- SEM,n = 10)。 4.激光闪光引起的纤维缩短的距离也随着释放的ATP浓度的增加而增加,分别为10 +/- 2、25 +/- 5、65 +/- 7、100 +/- 10和180 +/-。 20 nm(半肌节蛋白)-1(平均+/- SEM,n = 10)分别具有75、100、150、200和300 microM ATP。 5.激光闪光诱导的起酥油的初始起酥油速度与最大Ca(2+)活化纤维的力-速度关系的比较表明,存在相当大的内部抵抗ATP释放后的肌丝滑动的能力。释放300、150和75 microM ATP后的起酥油的初始速度分别等于最大Ca(2+)活化纤维在外部载荷0.55、0.93和0.98 Po下的起酥油速度。 6.这些结果表明,在几乎等距的条件下,每个半肌小节中每个水解的ATP分子的肌丝滑动距离约为10 nm。

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