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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Caldesmon tethers myosin V to actin and facilitates in vitro motility.
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Caldesmon tethers myosin V to actin and facilitates in vitro motility.

机译:Caldesmon将肌球蛋白V束缚于肌动蛋白,并促进体外运动。

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The current study examines the hypothesis that caldesmon can facilitate the interaction of myosin V with actin filaments by tethering myosin V to actin. Myosin V, purified from bovine brain stem, translocated actin filaments in an in vitro motility assay at a velocity of 0.30+/-0.05 microm/s in the absence of caldesmon at a myosin concentration of 50 microg/ml (ionic strength=110 mM). Filament binding and motility was absent when the myosin concentration applied to the coverslip was reduced to 5 microg/ml, however, the addition of 0.4 microM caldesmon restored binding and motility (0.28+/-0.06 microm/s). This restoration of motility in the presence of caldesmon was blocked by an N-terminal fragment of caldesmon that competitively inhibits the binding of intact caldesmon to myosin. Similar to previous findings with both smooth muscle myosin and platelets (Haeberle et al., 1992; Hemric et al., 1994), these results demonstrate that caldesmon can form a mobile tether that maintains the proximity of myosin V with actin filaments without restricting filament sliding.
机译:当前的研究检验了一种假说,即卡尔德斯蒙可以通过将肌球蛋白V与肌动蛋白束缚来促进肌球蛋白V与肌动蛋白丝的相互作用。从牛脑干中纯化的肌球蛋白V在体外运动测定中以0.30 +/- 0.05 microm / s的速度在不存在卡尔德斯蒙的情况下以50 microg / ml的肌球蛋白浓度(离子强度= 110 mM)移动)。当施加到盖玻片上的肌球蛋白浓度降低到5 microg / ml时,丝束的结合力和运动力就消失了,但是,添加0.4 microM caldesmon可以恢复结合力和运动力(0.28 +/- 0.06 microm / s)。在Caldesmon存在的情况下,这种运动性恢复被Caldesmon的N末端片段阻断,该片段竞争性抑制完整的Caldesmon与肌球蛋白的结合。与先前关于平滑肌肌球蛋白和血小板的发现相似(Haeberle等人,1992; Hemric等人,1994),这些结果表明,caldesmon可以形成可移动的系链,从而维持肌球蛋白V与肌动蛋白丝的接近而不限制丝束。滑动。

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