首页> 外文会议>International Conference on Processing amp; Manufacturing of Advanced Materials; 20060704-08; Vancouver(CA) >MOLECULAR AND NANOMETER-SCALE SELF-ORGANIZED SYSTEM GENERATED BY PROTEIN MOTOR FUNCTIONS
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MOLECULAR AND NANOMETER-SCALE SELF-ORGANIZED SYSTEM GENERATED BY PROTEIN MOTOR FUNCTIONS

机译:蛋白质运动功能产生的分子和纳米尺度的自组织系统

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Creatures have evolved extremely intelligent and complex adaptive systems for conducting their movements. They are protein motors with typical sizes of a few tens of nanometers. Protein motors include three major protein families, myosin, kinesin and dynein, which participate in a wide range of cellular processes, using energy from the hydrolysis of adenosinetriphosphate ATP. To harness these protein motors to power nanometer-scale devices, we have investigated effective and non-destructive methods for immobilizing protein motors on surfaces and to arrange the output of these motors, e.g. force and movement, to be in a defined direction. We found NEB-22 to be useful for retaining the abilities of protein motors to support the movement of protein filaments. We fabricated various patterns of tracks of NEB-22 on coverslips and protein motors were introduced and immobilized on glass surface. The trajectories of protein polymers were confined to these tracks. Simple patterns readily biased and guide polymer movement confining it to be unidirectional. In addition, having used dynein c purified from Chlamydomonas flagellar axoneme, we showed that microtubules driven by surface-bound dynein were self-organized into dynamic streams through collisions between the microtubules and their subsequent joining.
机译:生物已经进化出极其智能和复杂的自适应系统来进行运动。它们是蛋白质马达,典型尺寸为几十纳米。蛋白马达包括三个主要的蛋白家族,即肌球蛋白,驱动蛋白和动力蛋白,它们利用三磷酸腺苷三磷酸腺苷水解产生的能量参与广泛的细胞过程。为了利用这些蛋白质马达为纳米级设备提供动力,我们研究了有效且无损的方法来将蛋白质马达固定在表面上并安排这些马达的输出,例如力和运动,以确保方向正确。我们发现NEB-22可用于保留蛋白质马达支持蛋白质细丝运动的能力。我们在盖玻片上制作了各种图案的NEB-22轨道,并引入了蛋白质马达并将其固定在玻璃表面上。蛋白质聚合物的轨迹仅限于这些轨迹。简单的图案容易产生偏斜,并引导聚合物运动,将其限制为单向的。此外,使用从鞭毛衣原体轴蛋白纯化的动力蛋白c后,我们发现由表面结合的动力蛋白驱动的微管通过微管之间的碰撞和随后的结合而自动组织成动态流。

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