Griffiths P J, Bagni M A, Colombini B, Amenitsch H, Bernstorff S, Ashley C C, Cecchi G
University Laboratory of Physiology, Oxford University, United Kingdom.
Am J Physiol Cell Physiol. 2005 Jul;289(1):C177-86. doi: 10.1152/ajpcell.00020.2005. Epub 2005 Mar 2.
M3 reflection intensity (I(M3)) from tetanized, intact skeletal muscle fiber bundles was measured during sinusoidal length oscillations at 2.8 kHz, a frequency at which the myosin motor's power stroke is greatly reduced. I(M3) signals were approximately sinusoidal, but showed a "double peak" distortion previously observed only at lower oscillation frequencies. A tilting lever arm model simulated this distortion, where I(M3) was calculated from the molecular structure of myosin subfragment 1 (S1). Simulations showed an isometric lever arm disposition close to normal to the filament axis at isometric tension, similar to that found using lower oscillation frequencies, where the power stroke contributes more toward total S1 movement. Inclusion of a second detached S1 in each actin-bound myosin dimer increased simulated I(M3) signal amplitude and improved agreement with the experimental data. The best agreement was obtained when detached heads have a fixed orientation, insensitive to length changes, and similar to that of attached heads at tetanus plateau. This configuration also accounts for the variations in relative intensity of the two main peaks of the M3 reflection substructure after a length change. This evidence of an I(M3) signal distortion when power stroke tilting is suppressed, provided that a large enough amplitude of length oscillation is used, is consistent with the tilting lever arm model of the power stroke.
在2.8千赫兹的正弦长度振荡过程中,测量了强直收缩的完整骨骼肌纤维束的M3反射强度(I(M3)),该频率下肌球蛋白马达的动力冲程大幅降低。I(M3)信号近似正弦波,但呈现出先前仅在较低振荡频率下观察到的“双峰”畸变。一个倾斜杠杆臂模型模拟了这种畸变,其中I(M3)是根据肌球蛋白亚片段1(S1)的分子结构计算得出的。模拟结果显示,在等长张力下,等长杠杆臂的排列接近与细丝轴垂直,类似于使用较低振荡频率时的情况,此时动力冲程对S1的总移动贡献更大。在每个与肌动蛋白结合的肌球蛋白二聚体中加入第二个分离的S1,增加了模拟的I(M3)信号幅度,并改善了与实验数据的一致性。当分离的头部具有固定方向、对长度变化不敏感且类似于强直收缩平台期附着头部的方向时,能获得最佳一致性。这种构型也解释了长度变化后M3反射亚结构两个主峰相对强度的变化。当动力冲程倾斜受到抑制时,只要使用足够大的长度振荡幅度,I(M3)信号畸变的这一证据与动力冲程的倾斜杠杆臂模型一致。