MacLean J J, Chrin L R, Berger C L
Department of Molecular Physiology and Biophysics, University of Vermont College of Medicine, Burlington, Vermont 05405-0068, USA.
Biophys J. 2000 Mar;78(3):1441-8. doi: 10.1016/S0006-3495(00)76697-5.
Lys-553 of skeletal muscle myosin subfragment 1 (S1) was specifically labeled with the fluorescent probe FHS (6-[fluorescein-5(and 6)-carboxamido]hexanoic acid succinimidyl ester) and fluorescence quenching experiments were carried out to determine the accessibility of this probe at Lys-553 in both the strongly and weakly actin-bound states of the MgATPase cycle. Solvent quenchers of varying charge [nitromethane, (2,2,6, 6-tetramethyl-1-piperinyloxy) (TEMPO), iodide (I(-)), and thallium (Tl(+))] were used to assess both the steric and electrostatic accessibilities of the FHS probe at Lys-553. In the strongly bound rigor (nucleotide-free) and MgADP states, actin offered no protection from solvent quenching of FHS by nitromethane, TEMPO, or thallium, but did decrease the Stern-Volmer constant by almost a factor of two when iodide was used as the quencher. The protection from iodide quenching was almost fully reversed with the addition of 150 mM KCl, suggesting this effect is ionic in nature rather than steric. Conversely, actin offered no protection from iodide quenching at low ionic strength during steady-state ATP hydrolysis, even with a significant fraction of the myosin heads bound to actin. Thus, the lower 50 kD subdomain of myosin containing Lys-553 appears to interact differently with actin in the weakly and strongly bound states.
骨骼肌肌球蛋白亚片段1(S1)的赖氨酸-553用荧光探针FHS(6-[荧光素-5(和6)-羧酰胺基]己酸琥珀酰亚胺酯)进行特异性标记,并进行荧光猝灭实验,以确定在MgATPase循环的强肌动蛋白结合态和弱肌动蛋白结合态下该探针在赖氨酸-553处的可及性。使用不同电荷的溶剂猝灭剂[硝基甲烷、(2,2,6,6-四甲基-1-哌啶氧基)(TEMPO)、碘化物(I(-))和铊(Tl(+))]来评估FHS探针在赖氨酸-553处的空间和静电可及性。在强结合的僵直(无核苷酸)和MgADP状态下,肌动蛋白对硝基甲烷、TEMPO或铊引起的FHS溶剂猝灭没有保护作用,但当使用碘化物作为猝灭剂时,肌动蛋白确实使斯特恩-沃尔默常数降低了近两倍。加入150 mM KCl后,对碘化物猝灭的保护作用几乎完全逆转,表明这种效应本质上是离子性的而非空间性的。相反,在稳态ATP水解过程中,即使有相当一部分肌球蛋白头部与肌动蛋白结合,在低离子强度下肌动蛋白对碘化物猝灭也没有保护作用。因此,含有赖氨酸-553的肌球蛋白较低的50 kD亚结构域在弱结合态和强结合态下与肌动蛋白的相互作用似乎有所不同。