Estes J E, Gershman L C
Biochemistry. 1978 Jun 27;17(13):2495-9. doi: 10.1021/bi00606a006.
F-actin monomer (F-monomer) is formed upon the addition of neutral salt to G-actin. Since F-monomer has a digestibility similar to that of F-actin and much lower than that of G-actin, it has been proposed that F-monomer has a conformation different from that of G-actin and similar to the conformation of the subunits in F-actin. To examine whether F-monomer will enhance the magnesium-activated myosin adenosine triphosphatase (Mg2+-ATPase) as much as F-actin, the ability of partially polymerized actin populations at equilibrium to activate the Mg2+-ATPase of heavy meromyosin was investigated. Correlations were made between ATPase activities and the polymerization state of actin as determined by measurements of viscosity and digestibility. No significant activation of the heavy meromyosin ATPase was observed under conditions where G-actin or mixtures of G-actin and F-monomer were present. As polymer formation occurred at higher actin concentrations, or with increased KCl concentrations, substantial activation characteristic of F-actin was observed. The data suggest that F-monomer may undergo a further conformational change as it forms nuclei or joins onto polymers. Alternatively, the site of actin which activates the myosin ATPase may involve the crevice between two adjacent actin subunits.
向G-肌动蛋白中加入中性盐后会形成F-肌动蛋白单体(F-单体)。由于F-单体的消化率与F-肌动蛋白相似,但远低于G-肌动蛋白,因此有人提出F-单体的构象与G-肌动蛋白不同,与F-肌动蛋白中亚基的构象相似。为了研究F-单体是否会像F-肌动蛋白一样增强镁激活的肌球蛋白三磷酸腺苷酶(Mg2+-ATP酶),研究了平衡时部分聚合的肌动蛋白群体激活重酶解肌球蛋白Mg2+-ATP酶的能力。通过测量粘度和消化率确定ATP酶活性与肌动蛋白聚合状态之间的相关性。在存在G-肌动蛋白或G-肌动蛋白与F-单体混合物的条件下,未观察到重酶解肌球蛋白ATP酶有明显激活。随着肌动蛋白浓度升高或氯化钾浓度增加而发生聚合物形成时,观察到了F-肌动蛋白特有的大量激活。数据表明,F-单体在形成核或连接到聚合物上时可能会发生进一步的构象变化。或者,激活肌球蛋白ATP酶的肌动蛋白位点可能涉及两个相邻肌动蛋白亚基之间的缝隙。