用茎环DNA信标检测RNA中的一个基本位点:应用于蓖麻毒素a链的活性测定

Setu Roday , Matthew B. Sturm, Dukagjin M. Blakaj, Vern L. Schramm
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引用次数: 19

摘要

利用蓖麻毒素a链(Ricin Toxin a - chain, RTA)在14-mer茎四环RNA中产生碱基位点的催化能力进行检测。RTA催化水解茎环RNA的GAGA四环中特定腺苷的n -糖苷键。因此,含有完整“GAGA”序列的14-mer茎环RNA底物与含有基本“GabGA”序列的产物可以通过与14-mer DNA茎环探针序列杂交并遵循异源双工的荧光反应来区分。介绍了三种DNA信标探针的设计。Beacon 1探针是茎环结构,具有一个荧光团和一个共价连接到5 '和3 '端的猝灭剂。在这种格式中,探针-衬底异质双工发出荧光信号,而探针-产物信号保持淬灭。Beacon 2是1的修改版本,并包含一个芘脱氧核苷以识别基本位点。在这种形式下,底物和产物异质双工都有荧光反应。Beacon 3采用了一种设计,其中荧光团位于底物RNA序列的5 '端,而猝灭剂位于探针DNA序列的3 '端。在这种形式下,底物-探针异质双工的荧光被猝灭,而产物-探针异质双工的荧光被增强。信标检测RTA的下限为14 ng/mL。
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Detection of an abasic site in RNA with stem-loop DNA beacons: Application to an activity assay for Ricin Toxin A-Chain

The catalytic ability of Ricin Toxin A-Chain (RTA) to create an abasic site in a 14-mer stem-tetraloop RNA is exploited for its detection. RTA catalyzes the hydrolysis of the N-glycosidic bond of a specific adenosine in the GAGA tetraloop of stem-loop RNA. Thus, a 14-mer stem-loop RNA substrate containing an intact “GAGA” sequence can be discriminated from the product containing an abasic “GabGA” sequence by hybridization with a 14-mer DNA stem-loop probe sequence and following the fluorescent response of the heteroduplexes. Three DNA beacon probe designs are described. Beacon 1 probe is a stem-loop structure and has a fluorophore and a quencher covalently linked to the 5′- and 3′-ends. In this format the probe–substrate heteroduplex gives a fluorescent signal while the probe–product one remains quenched. Beacon 2 is a modified version of 1 and incorporates a pyrene deoxynucleoside for recognition of the abasic site. In this format both the substrate and product heteroduplexes give a fluorescent response. Beacon 3 utilizes a design where the fluorophore is on the substrate RNA sequence at its 5′-end while the quencher is on the probe DNA sequence at its 3′-end. In this format the fluorescence of the substrate–probe heteroduplex is quenched while that of the product–probe one is enhanced. The lower limit of detection with beacons is 14 ng/mL of RTA.

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