Laboratory of Mechanisms of Cell Motility, Institute of Cytology, Russian Academy of Sciences, 4 Tikhoretsky Avenue, St Petersburg 194064, Russia.
Biochem Biophys Res Commun. 2010 Mar 26;394(1):126-9. doi: 10.1016/j.bbrc.2010.02.128. Epub 2010 Feb 23.
A new evidence on the regulatory function of twitchin, a titin-like protein of molluscan muscles, at muscle contraction has been obtained at studying the movements of IAF-labeled mussel tropomyosin in skeletal ghost fibers during the ATP hydrolysis cycle simulated using nucleotides and non-hydrolysable ATP analogs. For the first time, myosin-induced multistep changes in mobility and in the position of mussel tropomyosin strands on the surface of the thin filament during the ATP hydrolysis cycle have been demonstrated directly. Unphosphorylated twitchin shifts the tropomyosin towards the position typical for muscle relaxation, decreases the tropomyosin affinity to actin and inhibits its movements during the ATPase cycle. Phosphorylation of twitchin by the catalytic subunit of protein kinase A reverses this effect. These data imply that twitchin is a thin filament regulator that controls actin-myosin interaction by "freezing" tropomyosin in the blocked position, resulting in the inhibition of the transformation of weak-binding states into strong-binding ones during ATPase cycle.
在使用核苷酸和非水解型 ATP 类似物模拟 ATP 水解循环的过程中,研究了贻贝原肌球蛋白在骨骼肌“幽灵纤维”中的运动,从而获得了关于肌球蛋白样蛋白 twitchin 在肌肉收缩中的调节功能的新证据。首次直接证明了在 ATP 水解循环中,肌球蛋白诱导的贻贝原肌球蛋白在细丝表面的迁移和位置的多步变化。非磷酸化的 twitchin 将原肌球蛋白向肌肉松弛的典型位置移动,降低原肌球蛋白与肌动蛋白的亲和力,并抑制其在 ATP 酶循环中的运动。蛋白激酶 A 的催化亚基对 twitchin 的磷酸化作用逆转了这一效应。这些数据表明,twitchin 是一种细肌丝调节剂,通过将原肌球蛋白“冻结”在阻断位置来控制肌动球蛋白的相互作用,从而抑制在 ATP 酶循环中弱结合状态向强结合状态的转变。