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首页> 外文期刊>Biosensors & Bioelectronics: The International Journal for the Professional Involved with Research, Technology and Applications of Biosensers and Related Devices >Highly sensitive detection of telomerase activity in tumor cells by cascade isothermal signal amplification based on three-way junction and base-stacking hybridization
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Highly sensitive detection of telomerase activity in tumor cells by cascade isothermal signal amplification based on three-way junction and base-stacking hybridization

机译:基于三向连接和碱基堆积杂交的级联等温信号放大高灵敏度检测肿瘤细胞中的端粒酶活性

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摘要

Herein, We report a simple and highly sensitive telomerase activity assay that integrates two consecutive isothermal signal amplification processes, namely, three-way junction triggered DNA-machine (3WJ-DNAM), and base-stacking hybridization assisted "biological circuit" DNA-machine (BSHBC-DNAM). In the presence of telomerase, the 3WJ are formed by the hybridization between the telomerase product and 3WJ-probes (3WJ-primer and 3WJ-template), which will initiate an autonomous 3WJ-DNAM by multiple processes of replication, nicking, and strand displacement, continuously generating short oligonucleotides as "triggers". These "triggers" will then provide additional stability for another two primers with a shared 5-bp complementary sequence at each 3'-end via base-stacking hybridization. And the BSHBC-DNAM are subsequently carried out by the strand-displacement induced circular utilization of "Trigger". Eventually, the single-stranded DNA (ssDNA) is generated in large quantities, and a significant fluorescence enhancement is observed due to the hybridization between the ssDNA and molecular beacons (MBs). In this way, per telomerase-mediated elongation event is efficiently and specifically converted into the greatly amplified fluorescence signals. This novel sensing strategy permits measurement of telomerase activity in cell extracts over the range of 3-5000 Hela cells, which is comparable or even superior to most previously reported methods. Using somatic and tumor cell lines, the selectivity and generality of the assay are investigated with satisfactory results. Furthermore, the inhibition effect of 3'-azido-3'-deoxythymidine (AZT) is also investigated, indicating its excellent performance in telomerase inhibitor screening.
机译:在此,我们报告了一种简单且高度灵敏的端粒酶活性测定法,该测定法整合了两个连续的等温信号放大过程,即三向结点触发的DNA机器(3WJ-DNAM)和碱基堆叠杂交辅助的“生物回路” DNA机器(BSHBC-DNAM)。在端粒酶存在的情况下,3WJ由端粒酶产物与3WJ探针(3WJ引物和3WJ模板)之间的杂交形成,这将通过复制,切刻和链置换的多个过程引发自主的3WJ-DNAM ,连续产生短的寡核苷酸作为“触发器”。然后,这些“触发”将通过碱基堆积杂交为另外两个在每个3'末端具有共享5 bp互补序列的引物提供额外的稳定性。然后通过链转移引起的“触发”循环利用来进行BSHBC-DNAM。最终,大量产生单链DNA(ssDNA),并且由于ssDNA和分子信标(MBs)之间的杂交,观察到了显着的荧光增强。以这种方式,每个端粒酶介导的延伸事件被有效地且特异性地转化为大大扩增的荧光信号。这种新颖的传感策略可以测量3-5000 Hela细胞范围内细胞提取物中端粒酶的活性,这与大多数以前报道的方法相当甚至更好。使用体细胞和肿瘤细胞系,对测定的选择性和通用性进行了研究,结果令人满意。此外,还研究了3'-叠氮基3'-脱氧胸苷(AZT)的抑制作用,表明其在端粒酶抑制剂筛选中的优异性能。

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