deBeer E L, Sontrop A M, Kellermayer M S, Galambos C, Pollack G H
Center for Bioengineering, University of Washington, Seattle, USA.
Cell Motil Cytoskeleton. 1997;38(4):341-50. doi: 10.1002/(SICI)1097-0169(1997)38:4<341::AID-CM4>3.0.CO;2-6.
The interaction between actin and myosin can be studied in the in vitro motility assay, where fluorescently labelled actin filaments are observed to move over a lawn of myosin heads. To examine details of this movement, we measured systematically the velocities of the front end, rear end, and centroid of the actin filament as the filament translated over the assay surface. We found that these velocities exhibited an unexpectedly periodic component, alternating regularly between high and low values, superimposed on the steady velocity component. The period of the oscillatory component was approximately 380 ms. When translation was stopped by an increase in osmolarity, the filaments wiggled with a periodicity similar to the translating filament, implying that wiggling and translation may be related. Rigor filaments showed no periodicity. From the frequency content of the auto- and cross-correlation functions derived from the velocities of the front end, rear end, and centroid of the actin filament, we infer a deterministic, possibly wave-like process travelling along the actin filament. Potential molecular mechanisms underlying this phenomenon are considered.
肌动蛋白与肌球蛋白之间的相互作用可以在体外运动分析中进行研究,在该分析中,可以观察到荧光标记的肌动蛋白丝在肌球蛋白头部的“草坪”上移动。为了研究这种运动的细节,我们系统地测量了肌动蛋白丝在分析表面平移时前端、后端和质心的速度。我们发现,这些速度呈现出意想不到的周期性成分,在稳定速度成分之上,有规律地在高值和低值之间交替。振荡成分的周期约为380毫秒。当渗透压增加导致平移停止时,肌动蛋白丝会以与平移时相似的周期性摆动,这意味着摆动和平移可能有关。僵直丝没有周期性。从肌动蛋白丝前端、后端和质心速度的自相关和互相关函数的频率内容中,我们推断出一个沿肌动蛋白丝传播的确定性的、可能类似波的过程。我们还考虑了这种现象潜在的分子机制。