Reedy M C, Reedy M K, Goody R S
J Muscle Res Cell Motil. 1983 Feb;4(1):55-81. doi: 10.1007/BF00711958.
This paper presents electron microscopy, supported by optical diffraction and filtering of images from 100 nm and 25 nm sections, to complement the companion report of X-ray diffraction monitoring (immediately preceding this article) performed on the same insect flight muscle specimens during fixation, dehydration and embedding. Glycerinated Lethocerus fibre bundles initially fixed in rigor, in ATP relaxing buffer, or in 1 mM AMPPNP at 2 degrees C, gave thin-section images from each state whose optical transforms match the distinctive X-ray diffraction patterns from the embedded samples. For rigor and relaxed states, this extends and confirms a long-known correlation between X-ray patterns and EM image regularities. For the AMPPNP state, such correlation is here fully developed for the first time, and involves a new and distinctive EM image pattern of the crossbridge array, clearly different from a previously reported structure in AMPPNP-treated muscles that appears identical to fixed relaxed muscle. We found this latter artifact of 'AMPPNP-relaxed structure' in many fibres from our best AMPPNP specimen, but could identify other fibres which retained the distinctive AMPPNP structure, known to be dominant in this specimen from the X-ray pattern. The true AMPPNP structure shows features of both the ATP-relaxed and rigor crossbridge patterns, not as separate patches, but hybridized uniformly along each filament and throughout each affected sarcomere and fibre. It presents a 14.5 nm repeat of striping and lateral projections along thick filaments, together with variously angled crossbridge attachments to actin that form a 38.7 nm repeat of diffuse chevrons or deltoids replacing the more clearly delinated rigor double chevrons. The associated optical transform has the typical AMPPNP features, that is, it has in common with rigor a strong 19.3 nm layer line and strong second to fourth row line sampling on the 38.7 nm layer line, it has in common with relaxed patterns a strong 14.5 nm meridional and layer line, but it uniquely shows no intensity at the first row line on the 38.7 nm layer line (the 10.3 X-ray reflection), where rigor and relaxed transforms always show high intensity. The processing artifacts which intensify the 10.3 reflection, and produce the weak 19.3 nm layer line (a gain of intensity for ATP but a loss for the AMPPNP state), throughout ATP specimens and in those analogue-treated fibres showing AMPPNP-relaxed structure, might indicate trapping and accumulation of minority populations within the native equilibrium distribution of crossbridge conformations in each nucleotide state.
本文介绍了电子显微镜技术,并辅以光学衍射以及对100纳米和25纳米切片图像的滤波处理,以补充之前紧接着本文的关于对相同昆虫飞行肌肉标本在固定、脱水和包埋过程中进行X射线衍射监测的配套报告。最初固定在僵直状态、ATP松弛缓冲液中或2摄氏度下1 mM AMPPNP中的甘油化大仰蝽纤维束,给出了每种状态的薄切片图像,其光学变换与包埋样品独特的X射线衍射图谱相匹配。对于僵直状态和松弛状态,这扩展并证实了X射线图谱与电子显微镜图像规律之间长期以来已知的相关性。对于AMPPNP状态,这种相关性在此首次得到充分展现,并且涉及一种新的、独特的横桥阵列电子显微镜图像模式,明显不同于先前报道的AMPPNP处理肌肉中的结构,后者看起来与固定的松弛肌肉相同。我们在我们最好的AMPPNP标本的许多纤维中发现了这种“AMPPNP松弛结构”的后一种假象,但能够识别出其他保留独特AMPPNP结构的纤维,从X射线图谱可知这种结构在该标本中占主导地位。真正的AMPPNP结构呈现出ATP松弛和僵直横桥模式的特征,不是作为单独的斑块,而是沿着每条细丝以及在每个受影响的肌节和纤维中均匀地混合。它沿着粗丝呈现出14.5纳米的条纹重复和侧向突起,以及与肌动蛋白形成各种角度的横桥附着,形成38.7纳米的弥散V形或三角形重复,取代了更清晰描绘的僵直双V形。相关的光学变换具有典型的AMPPNP特征,即它与僵直状态有共同之处,有一条强的19.3纳米层线以及在38.7纳米层线上对第二至第四排线的强采样,它与松弛模式有共同之处,有一条强的14.5纳米子午线和层线,但它独特地在38.7纳米层线的第一排线(10.3 X射线反射)处没有强度,而僵直和松弛变换在该处总是显示高强度。在整个ATP标本以及那些显示AMPPNP松弛结构的类似物处理纤维中,增强10.3反射并产生弱的19.3纳米层线(ATP状态强度增加,而AMPPNP状态强度降低)的处理假象,可能表明在每个核苷酸状态下横桥构象天然平衡分布中少数群体的捕获和积累。