Institute of Molecular Cell Biology, Westfalian Wilhelms-University, Muenster, Germany.
PLoS One. 2014 Jan 9;9(1):e84874. doi: 10.1371/journal.pone.0084874. eCollection 2014.
Although class IX myosins are single-headed, they demonstrate characteristics of processive movement along actin filaments. Double-headed myosins that move processively along actin filaments achieve this by successive binding of the two heads in a hand-over-hand mechanism. This mechanism, obviously, cannot operate in single-headed myosins. However, it has been proposed that a long class IX specific insertion in the myosin head domain at loop2 acts as an F-actin tether, allowing for single-headed processive movement. Here, we tested this proposal directly by analysing the movement of deletion constructs of the class IX myosin from Caenorhabditis elegans (Myo IX). Deletion of the large basic loop2 insertion led to a loss of processive behaviour, while deletion of the N-terminal head extension, a second unique domain of class IX myosins, did not influence the motility of Myo IX. The processive behaviour of Myo IX is also abolished with increasing salt concentrations. These observations directly demonstrate that the insertion located in loop2 acts as an electrostatic actin tether during movement of Myo IX along the actin track.
虽然 IX 类肌球蛋白是单头的,但它们表现出沿肌动蛋白丝进行连续运动的特征。通过两个头部逐个结合的手拉手机制,双头肌球蛋白沿着肌动蛋白丝进行连续运动。这种机制显然不能在单头肌球蛋白中运行。然而,有人提出,肌球蛋白头部结构域环 2 中的长特异性 IX 类插入作为肌动蛋白的系绳,允许单头连续运动。在这里,我们通过分析秀丽隐杆线虫(Myo IX)IX 类肌球蛋白的缺失构建体的运动直接测试了这一假设。删除大碱性环 2 插入导致连续运动行为丧失,而删除 N 端头部延伸(IX 类肌球蛋白的第二个独特结构域)则不影响 Myo IX 的运动性。随着盐浓度的增加,Myo IX 的连续运动行为也被消除。这些观察结果直接证明,位于环 2 中的插入物在 Myo IX 沿着肌动蛋白轨道运动时充当静电肌动蛋白系绳。