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昆虫飞行肌肉的三维图像重建。I. 强直肌层。

Three-dimensional image reconstruction of insect flight muscle. I. The rigor myac layer.

作者信息

Taylor K A, Reedy M C, Córdova L, Reedy M K

机构信息

Department of Cell Biology, Duke University Medical Center, Durham, North Carolina 27710-3011.

出版信息

J Cell Biol. 1989 Sep;109(3):1085-102. doi: 10.1083/jcb.109.3.1085.

Abstract

We have obtained detailed three-dimensional images of in situ cross-bridge structure in insect flight muscle by electron microscopy of multiple tilt views of single filament layers in ultrathin sections, supplemented with data from thick sections. In this report, we describe the images obtained of the myac layer, a 25-nm longitudinal section containing a single layer of alternating myosin and actin filaments. The reconstruction reveals averaged rigor cross-bridges that clearly separate into two classes constituting lead and rear chevrons within each 38.7-nm axial repeat. These two classes differ in tilt angle, size and shape, density, and slew. This new reconstruction confirms our earlier interpretation of the lead bridge as a two-headed cross-bridge and the rear bridge as a single-headed cross-bridge. The importance of complementing tilt series with additional projections outside the goniometer tilt range is demonstrated by comparison with our earlier myac layer reconstruction. Incorporation of this additional data reveals new details of rigor cross-bridge structure in situ which include clear delineation of (a) a triangular shape for the lead bridge, (b) a smaller size for the rear bridge, and (c) density continuity across the thin filament in the lead bridge. Within actin's regular 38.7-nm helical repeat, local twist variations in the thin filament that correlate with the two cross-bridge classes persist in this new reconstruction. These observations show that in situ rigor cross-bridges are not uniform, and suggest three different myosin head conformations in rigor.

摘要

我们通过对超薄切片中单个细丝层的多个倾斜视图进行电子显微镜观察,并辅以厚切片数据,获得了昆虫飞行肌肉中肌原位横桥结构的详细三维图像。在本报告中,我们描述了对肌动球蛋白层(myac layer)所获得的图像,该层是一个25纳米的纵向切片,包含单层交替排列的肌球蛋白和肌动蛋白丝。重建结果显示出平均化的强直横桥,在每个38.7纳米的轴向重复单元内,这些横桥清晰地分为两类,构成前向和后向人字形。这两类横桥在倾斜角度、大小和形状、密度以及扭转方面存在差异。这个新的重建结果证实了我们早期对前向桥为双头横桥、后向桥为单头横桥的解释。通过与我们早期的肌动球蛋白层重建结果进行比较,证明了用测角仪倾斜范围之外的额外投影来补充倾斜系列的重要性。纳入这些额外数据揭示了肌原位强直横桥结构的新细节,其中包括:(a)前向桥呈三角形的清晰轮廓;(b)后向桥尺寸较小;(c)前向桥中细肌丝上的密度连续性。在肌动蛋白规则的38.7纳米螺旋重复单元内,与这两类横桥相关的细肌丝局部扭转变化在这个新的重建结果中依然存在。这些观察结果表明,肌原位强直横桥并非均匀一致,并提示在强直状态下存在三种不同的肌球蛋白头部构象。

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