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Analysis of Nucleosome Transcription Using Single-Particle FRET

机译:单粒子尺寸的核小体转录分析

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Many biological reactions including transcription of a gene are too complex and heterogeneous to be understood by studying ensembles of interacting molecules. In these cases analysis of single complexes can clarify structural and dynamic aspects of these processes. Here we report that single-particle F?rster resonance energy transfer (spFRET) microscopy is applicable to investigation of transcription through nucleosomes by an RNA polymerase. Mononucleosomes that support transcription were assembled from core histones and short DNA containing the T7A1 promoter and strong 603 nucleosome-positioning sequence. Fluorophores (Cy3 and Cy5) were introduced in the neighboring coils of nucleosome DNA in spatially close positions without disturbance of nucleosomal structure or transcription. Such labeling allows the changes in the Cy3-Cy5 distance caused by DNA uncoiling from the octamer or DNA looping to be monitored as changes in FRET efficiency. spFRET measurements for freely diffusing single nucleosomes were conducted using a laser scanning confocal microscope equipped with avalanche photodiodes. Nucleosome subpopulations that differ in FRET efficiency (i.e. in nucleosome structure) were revealed. RNA polymerase was stalled in distinct positions on the nucleosomal DNA during transcription, and the structures of these complexes were characterized with spFRET microscopy.
机译:通过研究相互作用分子的合并来理解,包括基因的转录的许多生物反应过于复杂和多均匀。在这些情况下,单个复合物的分析可以阐明这些过程的结构和动态方面。在这里,我们报告单粒子F?脊螺旋共振能量转移(SPFRET)显微镜可用于通过RNA聚合酶通过核体转录的研究。从核心组蛋白和含有T7A1启动子的短DNA组装支持转录的单核糖瓜和含有T7A1启动子的短DNA和强的603核小体定位序列。在空间接近位置的核小体DNA的相邻线圈中引入荧光团(Cy3和Cy5),而不会干扰核致基体结构或转录。这种标记允许从八氧酮或DNA环路未造成的DNA引起的CY3-CY5距离的变化被监测为FRET效率的变化。使用配备有雪崩光电二极管的激光扫描共聚焦显微镜进行自由扩散单个核体的SPFRet测量。揭示了FRET效率(即核小体结构中)不同的核心亚群。在转录期间,在核致组DNA上的不同位置停滞RNA聚合酶,并用SPFRET显微镜表征这些配合物的结构。

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