Kurzawa-Goertz S E, Perreault-Micale C L, Trybus K M, Szent-Györgyi A G, Geeves M A
Max-Planck-Institut für Molekulare Physiologie, Dortmund, Germany.
Biochemistry. 1998 May 19;37(20):7517-25. doi: 10.1021/bi972844+.
The striated muscle myosin of Placopecten moves actin faster in in vitro motility assays and has a higher actin-activated ATPase turnover rate than the myosin of the catch muscle. The heavy chain sequences of the two PlacoS1s are almost identical except at the surface loop 1 near the nucleotide binding pocket, where the two sequences vary significantly. Argopecten striated muscle myosin is 96% identical to Placopecten striated myosin, and both move actin with a similar velocity. To identify the individual kinetic steps which differ between these myosins, we completed a transient kinetic characterization of the three myosin S1s. The two striated S1s have similar rates of nucleotide binding to S1 and to acto.S1. The largest differences between the two are in the rate of ADP dissociation from S1 and affinity of ADP to S1, which differ by a factor of 2. The rates of nucleotide binding, nucleotide dissociation and affinity to nucleotides of the two Placopecten S1s are similar and agree within a factor of 2. In contrast, the affinity of acto.S1 for ADP is nine times weaker for the striated acto.S1 than for the catch acto.S1, compatible with the differences in motility of the Placopectenmyosins. Thus the differences in ADP affinity to acto.S1 and in the in vitro motility can be attributed to the differences in surface loop 1.
在体外运动分析中,扇贝横纹肌肌球蛋白使肌动蛋白移动得更快,并且其肌动蛋白激活的ATP酶周转率比闭壳肌的肌球蛋白更高。两种扇贝S1的重链序列几乎相同,只是在靠近核苷酸结合口袋的表面环1处,这两个序列有显著差异。海湾扇贝横纹肌肌球蛋白与扇贝横纹肌肌球蛋白有96%的同源性,二者使肌动蛋白移动的速度相似。为了确定这些肌球蛋白之间不同的各个动力学步骤,我们完成了对三种肌球蛋白S1的瞬态动力学表征。两种横纹肌S1与S1以及与肌动蛋白- S1的核苷酸结合速率相似。二者之间最大的差异在于ADP从S1解离的速率以及ADP对S1的亲和力,相差2倍。两种扇贝S1的核苷酸结合速率、核苷酸解离速率以及对核苷酸的亲和力相似,相差在2倍以内。相比之下,横纹肌肌动蛋白- S1对ADP的亲和力比对闭壳肌肌动蛋白- S1弱9倍,这与扇贝肌球蛋白运动性的差异相符。因此,ADP对肌动蛋白- S1亲和力的差异以及体外运动性的差异可归因于表面环1的差异。