Tajima Y, Amemiya Y
Department of Physics, Tokyo Metropolitan University, Japan.
Adv Biophys. 1991;27:77-88. doi: 10.1016/0065-227x(91)90009-3.
In the X-ray pattern of the ABRM, layer lines from the thin filaments can be clearly observed not only at the small angles but also at the medium angles up to 0.145 A-1, and the layer lines are changed in intensity in the tonically contracting state in both the small and medium angle regions. Because tropomyosin does not contribute significantly to the layer lines except the three near the equator, it is suggested that structural change of actin occurs in the tonically contracting state. The intensity profiles of the layer lines with the 0th Bessel order corresponding to the axial periods 27.9, 13.8, 9.3, and 6.9 A indicate axial staggering of the inner and outer domains of actin by about 1/3 of the axial period of actin, and the presence of a small mass on the shoulder of the outer domain at a distance of 50 A from the filament axis. The difference Patterson functions calculated from the intensities of the four layer lines with the 0th Bessel order suggest that peptide chains are oriented perpendicularly to the filament axis in the actin molecules. The peptide chain direction is presumably tilted against the filament axis in the outer part of actin as a result of structural change by tonic contraction.
在ABRM的X射线图谱中,不仅在小角度而且在高达0.145 Å⁻¹的中角度都能清晰观察到来自细肌丝的层线,并且在强直收缩状态下,小角度和中角度区域的层线强度都会发生变化。由于原肌球蛋白除了赤道附近的三条层线外对层线贡献不大,因此表明肌动蛋白在强直收缩状态下发生了结构变化。对应于轴向周期27.9、13.8、9.3和6.9 Å的第0阶贝塞尔层线的强度分布表明,肌动蛋白的内结构域和外结构域在轴向上错开约肌动蛋白轴向周期的1/3,并且在距丝轴50 Å处的外结构域肩部存在一个小质量。根据第0阶贝塞尔的四条层线强度计算出的差分帕特森函数表明,肽链在肌动蛋白分子中垂直于丝轴取向。由于强直收缩引起的结构变化,肽链方向可能在肌动蛋白外部相对于丝轴倾斜。