Podlubnaya Z, Kulikova N, Dabrowska R
Institute of Experimental and Theoretical Biophysics, Russian Academy of Sciences, Pushchino.
J Muscle Res Cell Motil. 1999 Aug;20(5-6):547-54. doi: 10.1023/a:1005533020784.
Using electron microscopy and negative staining we have studied the effect of Ca2+ on the structure of synthetic filaments of chicken gizzard smooth muscle myosin under conditions applied by Frado and Craig (1989) for demonstration of the influence of Ca2+ on the structure of synthetic filaments of scallop striated muscle myosin. The results show that Ca2+ induces the transition of compact, ordered structure of filaments with a 14.5 nm axial repeat of the myosin heads close to the filament backbone (characteristic of the relaxing conditions) to a disordered structure with randomly arranged myosin heads together with subfragments-2 (S-2) seen at a distance of up to 50 nm from the filament backbone. This order/disorder transition is much more pronounced in filaments formed of unphosphorylated myosin, since a substantial fraction of phosphorylated filaments in the relaxing solution is already disordered due to phosphorylation. Under rigor conditions some of the filaments of unphosphorylated and phosphorylated myosin retain a certain degree of order resembling those under relaxing conditions, while most of them have a substantially disordered appearance. The results indicate that Ca2+-induced movement of myosin heads away from the filament backbone is an inherent property of smooth muscle myosin, like molluscan muscle myosin regulated exclusively by Ca2+ binding, and can play a modulatory role in smooth muscle contraction.
我们采用电子显微镜和负染色技术,在弗拉多和克雷格(1989年)用于证明Ca2+对扇贝横纹肌肌球蛋白合成丝结构影响的条件下,研究了Ca2+对鸡砂囊平滑肌肌球蛋白合成丝结构的影响。结果表明,Ca2+诱导细丝紧凑、有序的结构发生转变,这种结构中靠近细丝主干的肌球蛋白头部轴向重复距离为14.5nm(这是松弛条件下的特征),转变为无序结构,其中肌球蛋白头部随机排列,并且在距离细丝主干达50nm处可见亚片段-2(S-2)。这种有序/无序转变在由未磷酸化肌球蛋白形成的细丝中更为明显,因为在松弛溶液中相当一部分磷酸化细丝由于磷酸化已经处于无序状态。在严格条件下,一些未磷酸化和磷酸化肌球蛋白的细丝保留了一定程度的有序性,类似于松弛条件下的情况,而大多数细丝呈现出明显的无序外观。结果表明,Ca2+诱导肌球蛋白头部远离细丝主干的运动是平滑肌肌球蛋白的固有特性,就像仅由Ca2+结合调节的软体动物肌肉肌球蛋白一样,并且可以在平滑肌收缩中发挥调节作用。