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Interactions between cargo-carrying biomolecular shuttles

机译:载运生物分子航天飞机之间的相互作用

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Microtubule shuttles propelled by the motor protein kinesin embedded in self-assembled monolayers are being developed for active transport functions in artificial microfluidic systems. As a model system, biotinylated microtubules have been laden with streptavidin-coated particles as cargo. The behaviour of cargo-laden microtubules has been observed using fluorescence microscopy upon activation of kinesin-driven transport processes. Collisions between mobile microtubules and their paniculate cargo result in six distinct behaviours: bypass, microtubule bending, particle knock-off, particle transfers between microtubules, co-joining of microtubules to a common particle, and particle-induced severing of microtubules. The distribution of observed events can be described qualitatively on the basis of the mechanics of motor proteins and microtubules, the geometry of the collision events, and the loading rate dependence of the strength of microtubule-particle binding. Implications of the results for the use of motor proteins in active transport and cargo-handling systems for nanomaterials are described.
机译:正在开发由嵌入自组装单层的运动蛋白驱动蛋白推动的微管穿梭,以在人工微流体系统中发挥主动转运功能。作为模型系统,生物素化的微管中已装载了链霉亲和素包被的颗粒作为货物。在驱动驱动蛋白的运输过程激活后,使用荧光显微镜观察了载货微管的行为。移动微管与其颗粒货物之间的碰撞会导致六种不同的行为:旁路,微管弯曲,颗粒脱落,微管之间的颗粒转移,微管与普通颗粒的共同结合以及颗粒诱导的微管切断。观察到的事件的分布可以根据运动蛋白和微管的力学,碰撞事件的几何形状以及微管与粒子结合强度的加载速率依赖性来定性描述。描述了在纳米材料的主动运输和货物装卸系统中使用运动蛋白的结果的含义。

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