Root D D, Cheung P, Reisler E
Molecular Biology Institute, University of California, Los Angeles 90024.
Biochemistry. 1991 Jan 8;30(1):286-94. doi: 10.1021/bi00215a039.
Modifications of SH1 groups on isolated myosin subfragment 1 (S-1) and myosin in muscle fibers affect differently the acto-S-1 ATPase and the fiber properties. Consistent with the findings of earlier work on fibers, the modification of SH1 groups in relaxed myofibrils with phenylmaleimide caused a loss of their shortening. This loss paralleled the decrease in the Vmax of extracted myosin but was not linear with the extent of SH1 labeling. Strikingly, the decrease in Vmax of S-1 prepared from the modified myofibrils was directly proportional to the extent of SH1 labeling. The specificity of SH1 labeling in myofibrils was verified by ATPase activities, thiol titrations, radiolabeling experiments, and comparisons to myosin labeled on SH1 in solution. To test for intermolecular interactions in the myosin filaments and their contribution to the differences between S-1 and myosin, the catalytic properties of copolymers of myosin were examined. Copolymers of myosin and rod minifilaments were formed in 5 mM citrate-Tris (pH 8.0) buffer, and their homogeneity was verified by sedimentation velocity analysis. The inhibition of actomyosin ATPase by rod particles was related to the decrease in the Km value. When rod particles were replaced in these minifilaments by SH1-modified myosin, the ATPase of the copolymers was increased over that of the combined ATPases of the individual filaments. The actomyosin ATP turnover rates on the unmodified heads were increased severalfold by the modified heads.(ABSTRACT TRUNCATED AT 250 WORDS)
对分离出的肌球蛋白亚片段1(S-1)和肌纤维中的肌球蛋白上的SH1基团进行修饰,对肌动蛋白-S-1 ATP酶和纤维特性的影响有所不同。与早期对纤维的研究结果一致,用苯基马来酰亚胺修饰松弛肌原纤维中的SH1基团会导致其缩短能力丧失。这种丧失与提取的肌球蛋白Vmax的降低平行,但与SH1标记程度并非呈线性关系。令人惊讶的是,由修饰后的肌原纤维制备的S-1的Vmax降低与SH1标记程度直接成正比。通过ATP酶活性、硫醇滴定、放射性标记实验以及与溶液中SH1标记的肌球蛋白进行比较,验证了肌原纤维中SH1标记的特异性。为了测试肌球蛋白丝中的分子间相互作用及其对S-1和肌球蛋白之间差异的贡献,研究了肌球蛋白共聚物的催化特性。肌球蛋白和杆状微丝的共聚物在5 mM柠檬酸- Tris(pH 8.0)缓冲液中形成,通过沉降速度分析验证了它们的均一性。杆状颗粒对肌动球蛋白ATP酶的抑制与Km值的降低有关。当在这些微丝中用SH1修饰的肌球蛋白取代杆状颗粒时,共聚物的ATP酶活性比单个丝的组合ATP酶活性有所增加。修饰后的头部使未修饰头部的肌动球蛋白ATP周转速率提高了几倍。(摘要截短于250字)