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Determination of the Persistence Length of Actin Filaments on Micro-contact Printed Myosin Patterns

机译:测定肌动蛋白长丝对微接触印刷肌蛋白图案的持久性长度

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Protein molecular motors, which convert chemical energy into kinetic energy, are prime candidates for use in nanodevice in which active transport is required. To be able to design these devices it is essential that the properties of the cytoskeletal filaments propelled by the molecular motors are well established. Here we used micro-contact printed BSA to limit the amount of HMM that can adsorb creating a tightly confined pathway for the filaments to travel. Both the image and statistical analysis of the movement of the filaments through these structures have been used to new insights into the motility behaviour of actomyosin on topographically homogenous, but motor-heterogeneous planar systems. It will be shown that it is possible to determine the persistence length of the filaments and that it is related to the amount of locally adsorbed HMM. This provides a basis that can be used to optimize the design of future nanodevices incorporating the actomyosin system for the active transport.
机译:将化学能量转化为动能的蛋白质分子电机是用于纳米级的主要候选,其中需要有源运输。为了能够设计这些设备,必须确定由分子电机推进的细胞骨骼长丝的性质。在这里,我们使用微接触印刷BSA来限制可以吸附的HMM的量,以吸收为长丝进行狭窄的局部通道。通过这些结构的长丝运动的图像和统计分析已经用于新的洞察肌动素在拓扑均匀的型肌动素的动力行为中,而是用于多均匀的平面系统。结果表明,可以确定细丝的持久长度,并且它与局部吸附的HMM的量有关。这提供了一种基础,可用于优化包含用于主动运输的肌动酶系统的未来纳米切口的设计。

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