首页> 外文期刊>The Analyst: The Analytical Journal of the Royal Society of Chemistry: A Monthly International Publication Dealing with All Branches of Analytical Chemistry >A general fluorescent sensor design strategy for 'turn-on' activity detection of exonucleases and restriction endonucleases based on graphene oxide
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A general fluorescent sensor design strategy for 'turn-on' activity detection of exonucleases and restriction endonucleases based on graphene oxide

机译:基于“氧化石墨烯”的核酸外切酶和限制性核酸内切酶“开启”活性检测的通用荧光传感器设计策略

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Using graphene oxide (GO) as a nanoquencher, a universal sensor design strategy was developed on the basis of significantly different binding affinities of GO to single-stranded DNAs (ss-DNAs) with different lengths. The proposed sensors could be used for the activity detection of both exonucleases and restriction endonucleases. To achieve this, a single-labeled fluorescent oligonucleotide probe, which had a single-stranded structure or a hairpin structure with a long single-stranded loop, was used. Such a probe could be efficiently absorbed on the surface of GO, resulting in the quenching of the fluorescent signal. Excision of the single-stranded probe by exonucleases or site-specific cleavage at the double-stranded stem of the hairpin probe by restriction endonuclease released fluorophore-labeled nucleotide, which could not be efficiently absorbed by GO, thus leading to increase in fluorescence of the corresponding sensing system. As examples, three sensors, which were used for activity detection of the exonuclease Exo 1 and the restriction endonucleases EcoR I and Hind III, were developed. These three sensors could specifically and sensitively detect the activities of Exo 1, EcoR I and Hind III with detection limits of 0.03 U mL~(-1), 0.06 U mL~(-1) and 0.04 U mL~(-1), respectively. Visual detection was also possible.
机译:使用氧化石墨烯(GO)作为纳米猝灭剂,在GO与不同长度的单链DNA(ss-DNA)的结合亲和力显着不同的基础上,开发了一种通用的传感器设计策略。所提出的传感器可用于核酸外切酶和限制性核酸内切酶的活性检测。为了实现这一点,使用具有单链结构或具有长单链环的发夹结构的单标记荧光寡核苷酸探针。这样的探针可以被有效地吸收在GO的表面上,导致荧光信号的猝灭。核酸外切核酸酶切割单链探针或发夹探针双链茎上的位点特异性切割被限制性核酸内切酶释放的荧光团标记的核苷酸,其不能被GO有效吸收,从而导致其荧光增强。相应的传感系统。作为示例,开发了三种用于核酸外切酶Exo 1和限制性核酸内切酶EcoR I和Hind III活性检测的传感器。这三个传感器可以特异性和灵敏地检测Exo 1,EcoR I和Hind III的活性,检测限为0.03 U mL〜(-1),0.06 U mL〜(-1)和0.04 U mL〜(-1),分别。视觉检测也是可能的。

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