Swartz D R, Greaser M L, Marsh B B
University of Wisconsin, Muscle Biology Laboratory, Madison 53706.
J Cell Biol. 1990 Dec;111(6 Pt 2):2989-3001. doi: 10.1083/jcb.111.6.2989.
A steric-hindrance model has been used to explain the regulation of muscle contraction by tropomyosin-troponin complex. The regulation of binding was studied by microscopic observation of mixtures of fluorescent subfragment 1 (S1) with rigor myofibrils at different actin-to-S1 ratios and in the presence and absence of calcium. Procedures were adapted to protect the critical thiols of S1 before conjugation to thiol-specific fluorochromes, this giving fluorescent S1 with unaltered enzyme activity. S1 binding was greatest in the I band (except at the Z-lines) in the presence of calcium regardless of the [S1]. The patterns in the absence of calcium depended on the actin-to-S1 ratios: low [S1], binding in the myosin-actin overlap region; intermediate [S1], highest binding at the A-I junction; high [S1], greatest binding in the I-band. The two distinct binding patterns observed at low [S1] were demonstrated by dual-channel fluorescence microscopy when myofibrils were sequentially incubated with fluorescent S1 without calcium followed by a different fluorescent S1 with calcium. These observations support the concept of rigor activation of actin sites. The change in the pattern upon increasing [S1] without calcium demonstrate cooperative interactions along the thin filament. However, these interactions (under the conditions used without calcium) do not appear to extend over greater than 2-3 tropomyosin-troponin-7 actin functional units.
一种空间位阻模型已被用于解释原肌球蛋白 - 肌钙蛋白复合物对肌肉收缩的调节作用。通过在不同肌动蛋白与S1比例下以及有无钙存在的情况下,对荧光亚片段1(S1)与僵直肌原纤维混合物进行显微镜观察,研究了结合的调节情况。在将S1与硫醇特异性荧光染料偶联之前,调整了实验步骤以保护S1的关键硫醇,从而得到酶活性未改变的荧光S1。无论[S1]如何,在有钙存在的情况下,S1在I带(Z线处除外)的结合最强。在无钙情况下的模式取决于肌动蛋白与S1的比例:低[S1]时,在肌球蛋白 - 肌动蛋白重叠区域结合;中等[S1]时,在A - I交界处结合最高;高[S1]时,在I带结合最强。当肌原纤维先在无钙情况下与荧光S1孵育,然后再与不同的含钙荧光S1孵育时,双通道荧光显微镜显示了在低[S1]时观察到的两种不同结合模式。这些观察结果支持肌动蛋白位点僵直激活的概念。在无钙情况下增加[S1]时模式的变化表明沿着细肌丝存在协同相互作用。然而,这些相互作用(在无钙使用的条件下)似乎不会延伸超过2 - 3个原肌球蛋白 - 肌钙蛋白 - 7肌动蛋白功能单位。