Department of Physiology, Pennsylvania Muscle Institute, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
Proc Natl Acad Sci U S A. 2010 Jan 12;107(2):698-702. doi: 10.1073/pnas.0911426107. Epub 2009 Dec 22.
Myosin-Is are molecular motors that link cellular membranes to the actin cytoskeleton, where they play roles in mechano-signal transduction and membrane trafficking. Some myosin-Is are proposed to act as force sensors, dynamically modulating their motile properties in response to changes in tension. In this study, we examined force sensing by the widely expressed myosin-I isoform, myo1b, which is alternatively spliced in its light chain binding domain (LCBD), yielding proteins with lever arms of different lengths. We found the actin-detachment kinetics of the splice isoforms to be extraordinarily tension-sensitive, with the magnitude of tension sensitivity to be related to LCBD splicing. Thus, in addition to regulating step-size, motility rates, and myosin activation, the LCBD is a key regulator of force sensing. We also found that myo1b is substantially more tension-sensitive than other myosins with similar length lever arms, indicating that different myosins have different tension-sensitive transitions.
肌球蛋白-Is 是将细胞膜与肌动蛋白细胞骨架连接的分子马达,在机械信号转导和膜运输中发挥作用。一些肌球蛋白-Is 被认为是力传感器,可根据张力变化动态调节其运动特性。在这项研究中,我们研究了广泛表达的肌球蛋白-I 同工型 myo1b 的力感应,该同工型在其轻链结合域(LCBD)中进行选择性剪接,产生具有不同长度杠杆臂的蛋白质。我们发现,拼接同工型的肌动蛋白脱离动力学对张力极为敏感,张力敏感性的大小与 LCBD 拼接有关。因此,除了调节步长、运动速度和肌球蛋白激活外,LCBD 还是力感应的关键调节因子。我们还发现,myo1b 比具有相似长度杠杆臂的其他肌球蛋白更敏感,这表明不同的肌球蛋白具有不同的张力敏感转变。