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首页> 外文期刊>Journal of Chemical Education >Evaluating the Relationship between FRET Changes and Distance Changes Using DNA Length and Restriction Enzyme Specificity
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Evaluating the Relationship between FRET Changes and Distance Changes Using DNA Length and Restriction Enzyme Specificity

机译:使用DNA长度和限制酶特异性评估FRET变化和距离变化之间的关系

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摘要

FRET (Forster resonance energy transfer) involves the transfer of energy from an excited donor fluorophore to an acceptor molecule in a manner that is dependent on the distance between the two. A biochemistry laboratory experiment is described that teaches students how to use FRET to evaluate distance changes in biological molecules. Students measured the apparent FRET between donor and acceptor fluorophores located on the ends of several DNAs of unknown lengths, enabling them to order the DNAs according to size. In addition, students investigated site-specific DNA cleavage by restriction endonucleases, using loss of apparent FRET to determine which enzyme cut sites were present in each of the DNAs. After completing this experiment, students understood the inverse relationship between changes in FRET and changes in distance, and understood how changes in FRET could be used to monitor a conformational change in a molecule. As an extension to the experiment, a tutorial is included that uses the same DNAs to illustrate the ability of single molecule FRET measurements to resolve heterogeneity in a sample, which cannot be done via more traditional ensemble measurements.
机译:FRET(Forster共振能量转移)涉及以依赖于两者之间的距离的方式,将能量从激发的供体荧光团转移至受体分子。描述了一个生物化学实验室实验,该实验教学生如何使用FRET评估生物分子中的距离变化。学生测量了位于长度未知的几个DNA末端的供体和受体荧光团之间的表观FRET,从而使他们能够根据大小对DNA进行排序。此外,学生利用限制性内切核酸酶研究了位点特异性DNA的切割,利用表观FRET的丢失来确定每个DNA中存在哪些酶切位点。完成此实验后,学生们了解了FRET变化与距离变化之间的反比关系,并了解了如何将FRET变化用于监测分子的构象变化。作为实验的扩展,其中包括一个使用相同DNA的教程来说明单分子FRET测量解决样品异质性的能力,这是无法通过更传统的整体测量来完成的。

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