首页> 外文会议>Optical Trapping and Optical Micromanipulation IV; Proceedings of SPIE-The International Society for Optical Engineering; vol.6644 >High-resolution, single-molecule optical trapping measurements of transcription with basepair accuracy: Instrumentation and methods
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High-resolution, single-molecule optical trapping measurements of transcription with basepair accuracy: Instrumentation and methods

机译:具有碱基对精度的高分辨率单分子光学捕获转录测量:仪器和方法

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Optical traps allow the single-molecule investigation of the chemo-mechanical properties of biomolecules. We have developed an ultra-stable optical trapping system capable of angstrom-level position resolution and used it to monitor transcriptional elongation by single molecules of E. coli RNAP polymerase (RNAP). This optical trapping system uses the anharmonic region of the trapping potential, where differential stiffness vanishes, to generate a force-clamp that operates without feedback-associated noise. We demonstrate methods of calibrating this anharmonic trapping region and strategies to eliminate common sources of noise associated with air currents. Records of transcriptional elongation obtained with this device showed discrete steps averaging ~3.7 A, a distance equivalent to the mean rise per base found in B-DNA. To determine the absolute position of the RNAP on the DNA template, we monitored transcription under conditions in which a single nucleotide species was held rate-limiting and then aligned the resulting transcriptional pauses with the occurrence of this rate-limiting species in the underlying template. The aligned pause patterns recorded from four molecules, each measured with a different rate-limiting nucleotide species, were used to determine the sequence of a short region of unknown DNA, demonstrating that the motion of a single processive nucleic acid enzyme may be used to extract sequence information directly from DNA.
机译:捕光器允许对生物分子的化学机械性质进行单分子研究。我们已经开发了一种能够达到埃级位置分辨率的超稳定光学捕获系统,并使用它来监控大肠杆菌RNAP聚合酶(RNAP)单分子的转录延伸。该光学陷波系统利用陷波势的非谐波区域(差刚度消失)来生成一个不会产生与反馈相关的噪声的力夹。我们演示了校准此非谐波陷波区域的方法和消除与气流相关的常见噪声源的策略。用该装置获得的转录伸长记录显示平均约3.7 A的离散步长,该距离相当于B-DNA中每个碱基的平均升高。为了确定RNAP在DNA模板上的绝对位置,我们在保持单个核苷酸物种限速的条件下监测转录,然后将产生的转录停顿与基础模板中此限速物种的出现进行比对。从四个分子记录的对齐的停顿模式,分别用不同的限速核苷酸种类进行测量,用于确定未知DNA短区域的序列,表明单个过程性核酸酶的运动可用于提取直接从DNA获得序列信息。

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