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Smooth Muscle Heavy Meromyosin Phosphorylated on One of Its Two Heads Supports Force and Motion

机译:磷酸化的平滑肌重肌球蛋白其两个头部之一可支持力和运动

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摘要

Smooth muscle myosin is activated by regulatory light chain (RLC) phosphorylation. In the unphosphorylated state the activity of both heads is suppressed due to an asymmetric, intramolecular interaction between the heads. The properties of myosin with only one of its two RLCs phosphorylated, a state likely to be present both during the activation and the relaxation phase of smooth muscle, is less certain despite much investigation. Here we further characterize the mechanical properties of an expressed heavy meromyosin (HMM) construct with only one of its RLCs phosphorylated (HMM-1P). This construct was previously shown to have more than 50% of the ATPase activity of fully phosphorylated myosin (HMM-2P) and to move actin at the same speed in a motility assay as HMM-2P (Rovner, A. S., Fagnant, P. M., and Trybus, K. M. (2006) Biochemistry 45, 5280–5289). Here we show that the unitary step size and attachment time to actin of HMM-1P is indistinguishable from that of HMM-2P. Force-velocity measurements on small ensembles show that HMM-1P can generate approximately half the force of HMM-2P, which may relate to the observed duty ratio of HMM-1P being approximately half that of HMM-2P. Therefore, single-phosphorylated smooth muscle HMM molecules are active species, and the head associated with the unphosphorylated RLC is mechanically competent, allowing it to make a substantial contribution to both motion and force generation during smooth muscle contraction.
机译:平滑肌肌球蛋白通过调节性轻链(RLC)磷酸化激活。在未磷酸化状态下,由于头部之间的不对称分子内相互作用而抑制了两个头部的活性。尽管进行了很多研究,但肌球蛋白的两个RLC中只有一个被磷酸化(在活化和平滑肌松弛阶段均可能存在),肌球蛋白的特性尚不确定。在这里,我们进一步表征了表达的重肌球蛋白(HMM)构建体的机械性能,其中只有其RLC之一被磷酸化(HMM-1P)。先前已证明此构建体具有完全磷酸化的肌球蛋白(HMM-2P)的ATPase活性的50%以上,并且在运动性测定中以与HMM-2P相同的速度移动肌动蛋白(Rovner,AS,Fagnant,PM和特里布斯(KM)(2006)生物化学45,5280-5289)。在这里我们表明,HMM-1P的肌动蛋白的单位步长和附着时间与HMM-2P没有区别。在小型集合体上进行力速度测量表明,HMM-1P可以产生HMM-2P力的大约一半,这可能与观察到的HMM-1P占空比约为HMM-2P的一半有关。因此,单磷酸化的平滑肌HMM分子是活性物质,与未磷酸化的RLC相关的头部具有机械能力,从而使其在平滑肌收缩过程中既对运动产生作用,又对产生力做出了重大贡献。

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