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Interaction Sites of Tropomyosin in Muscle Thin Filament as Identified by Site-Directed Spin-Labeling

机译:通过定点自旋标签确定肌细丝中肌球蛋白的相互作用位点

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摘要

To identify interaction sites we measured the rotational motion of a spin label covalently bound to the side chain of a cysteine genetically incorporated into rabbit skeletal muscle tropomyosin (Tm) at positions 13, 36, 146, 160, 174, 190, 209, 230, 271, and 279. Upon the addition of F-actin, the mobility of all the spin labels, especially at position 13, 271, or 279, of Tm was inhibited significantly. Slow spin-label motion at the C-terminus (at the 230th and 271st residues) was observed upon addition of troponin. The binding of myosin-head S1 fragments without troponin immobilized Tm residues at 146, 160, 190, 209, 230, 271, and 279, suggesting that these residues are involved in a direct interaction between Tm and actin in its open state. As immobilization occurred at substoichiometric amounts of S1 binding to actin (a 1:7 molar ratio), the structural changes induced by S1 binding to one actin subunit must have propagated and influenced interaction sites over seven actin subunits.
机译:为了确定相互作用位点,我们测量了共价结合到遗传掺入兔骨骼肌原肌球蛋白(Tm)中的半胱氨酸侧链的自旋标记在13、36、146、160、174、190、209、230, 271和279。添加F-肌动蛋白后,所有自旋标记物(特别是在Tm的13、271或279位)的迁移率均受到显着抑制。加入肌钙蛋白后,观察到C末端(第230和271位残基)的自旋标记运动缓慢。在146、160、190、209、230、271和279处没有肌钙蛋白固定的Tm残基的肌球蛋白头S1片段的结合,表明这些残基参与了处于开放状态的Tm和肌动蛋白之间的直接相互作用。由于固定化发生在S1与肌动蛋白结合的亚化学计量量(摩尔比为1:7)下,由S1结合至一个肌动蛋白亚基引起的结构变化必须已经传播并影响了七个肌动蛋白亚基的相互作用位点。

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