Tajima Y, Kamiya K, Seto T
Biophys J. 1983 Sep;43(3):335-43. doi: 10.1016/S0006-3495(83)84357-4.
In the small-angle x-ray diffraction pattern of the living relaxed anterior byssus retractor muscle of Mytilus edulis, the thin filaments showed the following features. The 59.8-A reflection was much stronger and a little farther from the meridian than the 51.9-A reflection, although they are both contributions of the first-order Bessel function and are comparable with each other in the height from the equator. The 381-A reflection, given by the second-order Bessel function, was weaker than the 59.8-A reflection by more than the difference between the peak values of the first- and second-order Bessel functions, and was not so distant radially from the latter as estimated from the amount of peak shift brought about by the alteration of the Bessel order. A model of the thin filament was made on the basis of inverse Fourier transformation of the scattering amplitude, and the above features were explained by the characteristic shape of actin shown in this model. The actin subunits are elongated along the genetic left-hand helix with a pitch of 59.8 A, and are bonded together along the genetic helix in the inner part of the filament.
在贻贝活体松弛的前足丝牵缩肌的小角X射线衍射图谱中,细肌丝呈现出以下特征。59.8 Å的反射比51.9 Å的反射要强得多,且离子午线稍远,尽管它们都是一阶贝塞尔函数的贡献,并且在离赤道的高度上彼此相当。由二阶贝塞尔函数产生的38.1 Å反射比59.8 Å反射弱,其减弱程度超过一阶和二阶贝塞尔函数峰值的差值,并且在径向方向上与后者的距离不像根据贝塞尔阶数变化引起的峰值位移量所估计的那么远。基于散射振幅的傅里叶逆变换构建了细肌丝模型,上述特征可由该模型中所示的肌动蛋白的特征形状来解释。肌动蛋白亚基沿着遗传左手螺旋伸长,螺距为59.8 Å,并在肌丝内部沿着遗传螺旋结合在一起。