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Evidence for structurally different attached states of myosin cross-bridges on actin during contraction of fish muscle.

机译:鱼肌肉收缩过程中肌动蛋白肌球蛋白跨桥结构不同附着状态的证据。

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摘要

Using data from fast time-resolved x-ray diffraction experiments on the synchrotrons at Daresbury and (Deutsches Elektronen Synchrotron [DESY]), it is shown that during contraction of fish muscle there are at least two distinct configurations of myosin cross-bridges on actin, that they appear to have different tension producing properties and that they probably differ in the axial tilt of the cross-bridges on actin. Evidence is presented for newly observed myosin-based layer lines in patterns from active fish muscle, together with intensity changes of the actin layer lines. On the equator, the 110 reflection changes much faster (time for 50% change t1/2 = 21 +/- 4 ms after activation) than the 100 reflection (t1/2 = 35 +/- 8 ms) and tension (t1/2 = 41 +/- 3 ms) during the rising phase of tetanic contractions. These and higher order reflections have been used to show the time course of mass attachment at actin during this rising phase. Mass arrival (t1/2 = 25 ms) precedes tension by approximately 15 ms. Analysis has been carried out to evaluate the effects of changes in sarcomere length during the tetanus. It is shown that any such effects are very small. Difference "equatorial" electron density maps between active muscle at a time when mass arrival at actin is just complete, but the tension is still rising, and at a later time well into the tension plateau, show that the structural difference between the lower and higher force states corresponds to mass movement consistent with axial swinging of heads from a nonstereospecific actin attached state (low force) to a more stereospecific (high force) state.
机译:使用在Daresbury和(Deutsches Elektronen Synchrotron [DESY])的同步加速器上进行快速时间分辨的X射线衍射实验得到的数据,结果表明,在鱼肌肉收缩期间,肌动蛋白上的肌球蛋白横桥至少存在两种​​不同的构型,它们似乎具有不同的张力产生特性,并且肌动蛋白上的跨桥的轴向倾斜可能不同。证据表明,新近观察到的以活跃的鱼肌肉为基础的基于肌球蛋白的层线,以及肌动蛋白层线的强度变化。在赤道上,110反射的变化(激活后50%的变化时间t1 / 2 = 21 +/- 4 ms)比100反射(t1 / 2 = 35 +/- 8 ms)和张力(t1 / 2 = 41 +/- 3毫秒)在强直性收缩的上升阶段。这些和更高阶的反射已被用来显示在这个上升阶段在肌动蛋白上的质量附着的时间过程。质量到达(t1 / 2 = 25 ms)之前,张力大约15 ms。已经进行了分析以评估破伤风期间肌节长度变化的影响。结果表明,这种影响很小。当质量到达肌动蛋白的过程刚刚完成,但张力仍在上升,并在稍后进入张力高原时,活动肌肉之间的差异“赤道”电子密度图表明,较低和较高之间的结构差异力状态对应于与头部从非立体特异性肌动蛋白附着状态(低力)到更立体定向(高力)状态的头部轴向摆动一致的质量运动。

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