Wais-Steider C, White N S, Gilbert D S, Eagles P A
Department of Biophysics, King's College, London, England.
J Mol Biol. 1987 Sep 20;197(2):205-18. doi: 10.1016/0022-2836(87)90119-7.
Freshly extracted axoplasm from giant axons of the marine fan worm Myxicola infundibulum and the squid Loligo can be pulled into fibres that contain highly oriented cytoskeletal elements suitable for X-ray diffraction. A major advantage of studying axoplasmic components by this technique is that it allows essentially native structures and their interactions to be examined. We describe here the analyses of the X-ray diffraction patterns. We show that in Myxicola the pattern can be explained by diffraction from both neurofilaments and microtubules, whilst in Loligo the pattern arises solely from microtubules. At low resolution, X-ray patterns obtained from dehydrated axoplasmic microtubules resemble strongly the Fourier transforms generated from electron micrographs of negatively stained specimens. Hydration of axoplasmic fibres produced reversible changes in the X-ray pattern intensities, although the layer-line positions were unaltered. On the 4 nm layer-line, the intensity of the J3 reflection was dramatically reduced on hydration, though its position was unchanged. Hydration also affected the J10/J16 reflections, which increased in intensity, though here again the positions of the peaks were little altered. The X-ray patterns from our hydrated fibres resemble those produced by others from fibres of purified microtubules, though in our patterns contrast is generated towards the centre of the wall. We interpret our findings in the light of current ideas about microtubule structure as determined by X-ray diffraction and electron microscope techniques.
从海生扇形蠕虫Myxicola infundibulum和鱿鱼Loligo的巨大轴突中刚提取的轴浆,可被拉成含有适合X射线衍射的高度定向细胞骨架成分的纤维。用这种技术研究轴浆成分的一个主要优点是,它能对基本的天然结构及其相互作用进行检测。我们在此描述对X射线衍射图谱的分析。我们发现,在Myxicola中,该图谱可由神经丝和微管的衍射来解释,而在Loligo中,该图谱仅由微管产生。在低分辨率下,从脱水的轴浆微管获得的X射线图谱与从负染标本的电子显微照片生成的傅里叶变换非常相似。轴浆纤维的水合作用使X射线图谱强度发生可逆变化,尽管层线位置未变。在4纳米层线上J3反射的强度在水合时显著降低,但其位置不变。水合作用也影响J10/J16反射,其强度增加,不过此处峰值位置变化不大。我们水合纤维的X射线图谱与其他人从纯化微管纤维产生的图谱相似,不过在我们的图谱中,对比度是朝着管壁中心产生的。我们根据目前关于由X射线衍射和电子显微镜技术确定的微管结构的观点来解释我们的发现。