Griffiths P J, Bagni M A, Colombini B, Amenitsch H, Bernstorff S, Funari S, Ashley C C, Cecchi G
University Laboratory of Physiology, Oxford, United Kingdom.
Biophys J. 2006 Feb 1;90(3):975-84. doi: 10.1529/biophysj.105.068619. Epub 2005 Nov 4.
Effects of the number of actin-bound S1 and of axial tension on x-ray patterns from tetanized, intact skeletal muscle fibers were investigated. The muscle relaxant, BDM, reduced tetanic M3 meridional x-ray reflection intensity (I(M3)), M3 spacing (d(M3)), and the equatorial I(11)/I(10) ratio in a manner consistent with a reduction in the fraction of S1 bound to actin rather than by generation of low-force S1-actin isomers. At complete force suppression, I(M3) was 78% of its relaxed value. BDM distorted dynamic I(M3) responses to sinusoidal length oscillations in a manner consistent with an increased cross-bridge contribution to total sarcomere compliance, rather than a changed S1 lever orientation in BDM. When the number of actin-bound S1 was varied by altering myofilament overlap, tetanic I(M3) at low overlap was similar to that in high [BDM] (79% of relaxed I(M3)). Tetanic d(M3) dependence on active tension in overlap experiments differed from that observed with BDM. At high BDM, tetanic d(M3) approached its relaxed value (14.34 nm), whereas tetanic d(M3) at low overlap was 14.50 nm, close to its value at full overlap (14.56 nm). This difference in tetanic d(M3) behavior was explicable by a nonlinear thick filament compliance which is extended by both active and passive tension.
研究了肌动蛋白结合的S1数量和轴向张力对强直收缩的完整骨骼肌纤维X射线图案的影响。肌肉松弛剂BDM降低了强直收缩时M3子午线X射线反射强度(I(M3))、M3间距(d(M3))以及赤道I(11)/I(10)比值,其方式与结合到肌动蛋白上的S1比例降低一致,而非通过产生低力的S1-肌动蛋白异构体。在完全抑制力时,I(M3)为其松弛值的78%。BDM以一种与横桥对总肌节顺应性贡献增加一致的方式扭曲了对正弦长度振荡的动态I(M3)反应,而不是BDM中S1杠杆方向的改变。当通过改变肌丝重叠来改变结合到肌动蛋白上的S1数量时,低重叠时的强直I(M3)与高[BDM]时相似(为松弛I(M3)的79%)。在重叠实验中,强直d(M3)对主动张力的依赖性与BDM实验中观察到的不同。在高BDM时,强直d(M3)接近其松弛值(14.34纳米),而低重叠时的强直d(M3)为14.50纳米,接近其在完全重叠时的值(14.56纳米)。强直d(M3)行为的这种差异可以通过非线性粗肌丝顺应性来解释,这种顺应性会因主动和被动张力而延长。