Homma K, Saito J, Ikebe R, Ikebe M
Department of Physiology, University of Massachusetts Medical School, Worcester, Massachusetts 01655-0127, USA.
J Biol Chem. 2001 Sep 7;276(36):34348-54. doi: 10.1074/jbc.M104785200. Epub 2001 Jul 16.
Myosin X is a member of the diverse myosin superfamily that is ubiquitously expressed in various mammalian tissues. Although its association with actin in cells has been shown, little is known about its biochemical and mechanoenzymatic function at the molecular level. We expressed bovine myosin X containing the entire head, neck, and coiled-coil domain and purified bovine myosin X in Sf9 cells. The Mg(2+)-ATPase activity of myosin X was significantly activated by actin with low K(ATP). The actin-activated ATPase activity was reduced at Ca(2+) concentrations above pCa 5 in which 1 mol of calmodulin light chain dissociates from the heavy chain. Myosin X translocates F-actin filaments with the velocity of 0.3 microm/s with the direction toward the barbed end. The actin translocating activity was inhibited at concentrations of Ca(2+) at pCa 6 in which no calmodulin dissociation takes place, suggesting that the calmodulin dissociation is not required for the inhibition of the motility. Unlike class V myosin, which shows a high affinity for F-actin in the presence of ATP, the K(actin) of the myosin X ATPase was much higher than that of myosin V. Consistently nearly all actin dissociated from myosin X in the presence of ATP. ADP did not significantly inhibit the actin-activated ATPase activity of myosin X, suggesting that the ADP release step is not rate-limiting. These results suggest that myosin X is a nonprocessive motor. Consistently myosin X failed to support the actin translocation at low density in an in vitro motility assay where myosin V, a processive motor, supports the actin filament movement.
肌球蛋白X是多样的肌球蛋白超家族的成员,在各种哺乳动物组织中普遍表达。尽管已显示其在细胞中与肌动蛋白相关联,但在分子水平上对其生化和机械酶功能知之甚少。我们表达了包含整个头部、颈部和卷曲螺旋结构域的牛肌球蛋白X,并在Sf9细胞中纯化了牛肌球蛋白X。肌球蛋白X的Mg(2+)-ATP酶活性在低K(ATP)时被肌动蛋白显著激活。在Ca(2+)浓度高于pCa 5时,肌动蛋白激活的ATP酶活性降低,此时1摩尔钙调蛋白轻链从重链解离。肌球蛋白X以0.3微米/秒的速度向肌动蛋白丝的带刺端方向转运F-肌动蛋白丝。在pCa 6的Ca(2+)浓度下,肌动蛋白转运活性受到抑制,此时未发生钙调蛋白解离,这表明钙调蛋白解离不是抑制运动性所必需的。与在ATP存在下对F-肌动蛋白具有高亲和力的V类肌球蛋白不同,肌球蛋白X ATP酶的K(肌动蛋白)远高于肌球蛋白V。一致地,在ATP存在下,几乎所有肌动蛋白都从肌球蛋白X上解离。ADP没有显著抑制肌球蛋白X的肌动蛋白激活的ATP酶活性,这表明ADP释放步骤不是限速步骤。这些结果表明肌球蛋白X是一种非持续性运动蛋白。一致地,在体外运动测定中,肌球蛋白X在低密度下未能支持肌动蛋白转运,而持续性运动蛋白肌球蛋白V则支持肌动蛋白丝运动。