Knupp Carlo, Offer Gerald, Ranatunga K W, Squire John M
Cardiff University, UK.
J Mol Biol. 2009 Jul 10;390(2):168-81. doi: 10.1016/j.jmb.2009.04.047. Epub 2009 Apr 24.
The key question in understanding how force and movement are produced in muscle concerns the nature of the cyclic interaction of myosin molecules with actin filaments. The lever arm of the globular head of each myosin molecule is thought in some way to swing axially on the actin-attached motor domain, thus propelling the actin filament past the myosin filament. Recent X-ray diffraction studies of vertebrate muscle, especially those involving the analysis of interference effects between myosin head arrays in the two halves of the thick filaments, have been claimed to prove that the lever arm moves at the same time as the sliding of actin and myosin filaments in response to muscle length or force steps. It was suggested that the sliding of myosin and actin filaments, the level of force produced and the lever arm angle are all directly coupled and that other models of lever arm movement will not fit the X-ray data. Here, we show that, in addition to interference across the A-band, which must be occurring, the observed meridional M3 and M6 X-ray intensity changes can all be explained very well by the changing diffraction effects during filament sliding caused by heads stereospecifically attached to actin moving axially relative to a population of detached or non-stereospecifically attached heads that remain fixed in position relative to the myosin filament backbone. Crucially, and contrary to previous interpretations, the X-ray interference results provide little direct information about the position of the myosin head lever arm; they are, in fact, reporting relative motor domain movements. The implications of the new interpretation are briefly assessed.
理解肌肉中力和运动是如何产生的关键问题,涉及肌球蛋白分子与肌动蛋白丝循环相互作用的本质。每个肌球蛋白分子球状头部的杠杆臂被认为以某种方式在附着于肌动蛋白的运动结构域上轴向摆动,从而推动肌动蛋白丝越过肌球蛋白丝。最近对脊椎动物肌肉的X射线衍射研究,尤其是那些涉及分析粗肌丝两半部分中肌球蛋白头部阵列之间干涉效应的研究,据称证明了杠杆臂在肌动蛋白和肌球蛋白丝响应肌肉长度或力阶跃滑动的同时移动。有人提出,肌球蛋白和肌动蛋白丝的滑动、产生的力的水平以及杠杆臂角度都直接相关,并且其他杠杆臂运动模型无法拟合X射线数据。在此,我们表明,除了必然会发生的A带干涉之外,观察到的子午线M3和M6 X射线强度变化都可以通过丝滑动过程中衍射效应的变化很好地解释,这种变化是由特异性附着于肌动蛋白的头部相对于一群相对于肌球蛋白丝主干保持固定位置的脱离或非特异性附着的头部轴向移动引起的。至关重要的是,与先前的解释相反,X射线干涉结果几乎没有提供关于肌球蛋白头部杠杆臂位置的直接信息;实际上,它们报告的是相对运动结构域的运动。我们简要评估了新解释的含义。