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A dual-amplification fluorescent sensing platform for ultrasensitive assay of nuclease and ATP based on rolling circle replication and exonuclease III-aided recycling

机译:基于滚环复制和核酸外切酶III辅助回收的双扩增荧光传感平台,用于核酸酶和ATP的超灵敏测定

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A robust fluorescent sensing platform for ultrasensitive assay of nuclease has been established based on rolling circle amplification and exonuclease III-aided recycling amplification. Rolling circle amplification (RCA) is an isothermal DNA amplification process that can convert a short DNA primer into a long single-stranded DNA containing a large amount of tandem repeats. In this work, the substrate DNA (sDNA) of S1 nuclease was designed as the primer to generate RCA products that can hybridize with the prequenched TaqMan probes and form recessed 30 terminus double-stranded DNAs. In the presence of exonuclease III (Exo III), the TaqMan probes were digested from the 3 '-hydroxyltermini, releasing the fluorophore and generating enhanced fluorescence signals. Meanwhile, the RCA products with 3' protruding ends were liberated and hybridized with other TaqMan probes, triggering another cycles and obtaining remarkablely increasing fluorescence. However, in the presence of S1 nuclease, sDNA was cleaved into mono- or short-oligonucleotides pieces, which could not cause the RCA reaction and subsequent Exo III-aided recycling amplification reaction, resulting in extremely weak fluorescence. The fluorescence intensity gradually reduced with increasing concentration of S1 nuclease. Due to the double signal amplification, the developed method was demonstrated to exhibit exceedingly excellent sensitivity with a detection limit of 5 x 10(-7) U mu L-1. The system was also used to establish a turn-on biosensor of ATP since ATP can prevent the S1 nuclease from digesting the sDNA. ATP can be detected in a range of 5 x 10(-4) to 0.2 mM with a detection limit of 5 x 10(-4) mu M and good selectivity. Moreover, the sensing system was used for the real sample analysis with satisfied results.
机译:基于滚环扩增和核酸外切酶III辅助的循环扩增,已经建立了用于核酸酶超灵敏测定的强大荧光传感平台。滚环扩增(RCA)是一种等温DNA扩增过程,可以将短的DNA引物转换为包含大量串联重复序列的长的单链DNA。在这项工作中,S1核酸酶的底物DNA(sDNA)被设计为引物,以产生RCA产物,该产物可以与预先淬灭的TaqMan探针杂交并形成30末端的凹入式双链DNA。在存在核酸外切酶III(Exo III)的情况下,TaqMan探针从3'-hydroxyltermini中消化,释放出荧光团并产生增强的荧光信号。同时,具有3'突出末端的RCA产物被释放并与其他TaqMan探针杂交,触发另一个循环并获得显着增加的荧光。但是,在存在S1核酸酶的情况下,sDNA会被切割成单或短寡核苷酸片段,这不会引起RCA反应和随后的Exo III辅助的循环扩增反应,导致荧光极弱。随着S1核酸酶浓度的增加,荧光强度逐渐降低。由于双信号放大,因此开发的方法被证明具有极佳的灵敏度,检测极限为5 x 10(-7)UμL-1。该系统还用于建立ATP的开启式生物传感器,因为ATP可以阻止S1核酸酶消化sDNA。 ATP的检测范围为5 x 10(-4)到0.2 mM,检测限为5 x 10(-4)μM,选择性很好。此外,该传感系统用于真实样品分析,结果令人满意。

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