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Instrumentation and metrology for single RNA counting in biological complexes or nanoparticles by a single-molecule dual-view system

机译:通过单分子双视图系统对生物复合物或纳米颗粒中的单个RNA进行计数的仪器和计量学

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Limited by the spatial resolution of optical microscopy, direct detection or counting of single components in biological complexes or nanoparticles is challenging, especially for RNA, which is conformationally versatile and structurally flexible. We report here the assembly of a customized single-molecule dual-viewing total internal reflection fluorescence imaging system for direct counting of RNA building blocks. The RNA molecules were labeled with a single fluorophore by in vitro transcription in the presence of a fluorescent AMP. Precise calculation of identical or mixed pRNA building blocks of one, two, three, or six copies within the bacteriophage phi29 DNA packaging motor or other complexes was demonstrated by applying a photobleaching assay and evaluated by binomial distribution. The dual-viewing system for excitation and recording at different wavelengths simultaneously will enable the differentiation of different complexes with different labels or relative motion of each labeled component in motion machines.
机译:受光学显微镜的空间分辨率的限制,直接检测或计数生物复合物或纳米颗粒中的单个成分具有挑战性,尤其是对于RNA而言,RNA的构象用途广泛且结构灵活。我们在这里报告为直接计算RNA构件的定制的单分子双视图全内反射荧光成像系统的组装。在荧光AMP的存在下,通过体外转录用单个荧光团标记RNA分子。通过应用光漂白测定法并通过二项式分布评估,可以准确计算出噬菌体phi29 DNA包装马达或其他复合物中1个,2个,3个或6个拷贝的相同或混合的pRNA构建单元。用于同时激发和记录不同波长的双视图系统将能够区分具有不同标记的不同复合物或运动机器中每个标记成分的相对运动。

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