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Dynamics of DNA-based molecular motors measured with 1-bp resolution

机译:用1-BP分辨率测量的DNA的分子电机的动态

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Single-molecule studies are revolutionizing broad areas of science in general and the studies of molecular motors in particular. The pioneering experiments with optical traps focused on the traditional motors myosin and kinesin, which have step sizes of 8 and 5 nm, respectively. In particular, DNA-based molecular motors take steps as small as 0.34 nm or 1 base pair (bp). In the last few years, a number of key technical advances have improved the resolution of optical traps to 0.1 nm. These advances include use of He as a buffer gas to reduce laser pointing noise, dual-beam optical-trapping assays to decouple the assays from mechanical perturbations, novel trapping geometries to improve mechanical sensitivity, and differential detection to increase spatio-temporal resolution. Concluding with recent advances in active reduction of laser noise and mechanical vibration that bring base-pair resolution to the most widely used single-molecule assays, those coupled to surfaces.
机译:单分子研究彻底改变了广泛的科学领域,特别是分子电机的研究。光学陷阱的开拓实验集中在传统的电动机肌球蛋白和Kinesin上,分别具有8和5nm的步进尺寸。特别地,基于DNA的分子马达将小于0.34nm或1个碱基对(BP)的步骤。在过去的几年中,许多关键的技术进步改善了光学陷阱的分辨率至0.1nm。这些进步包括使用他作为缓冲气体来减少激光指向噪声,双光束光学捕获的测定从机械扰动中解耦,新的捕获几何形状以提高机械灵敏度和差分检测来增加时空分辨率。结论是最近的激光噪声和机械振动的主动降低的进步,将碱基对分辨率带到最广泛使用的单分子测定,与表面相连的那些。

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