Xu Jianguo, Li Hongling, Wu Zai-Sheng, Qian Jun, Xue Chang, Jia Lee
Cancer Metastasis Alert and Prevention Center, and Pharmaceutical Photocatalysis of State Key Laboratory of Photocatalysis on Energy and Environment, College of Chemistry, Fuzhou University, Fuzhou 350002, China.
Theranostics. 2016 Jan 1;6(3):318-27. doi: 10.7150/thno.13533. eCollection 2016.
The development of a versatile biosensing platform to screen specific DNA sequences is still an essential issue of molecular biology research and clinic diagnosis of genetic disease. In this work, we for the first time reported a double-stem hairpin probe (DHP) that was simultaneously engineered to incorporate a DNAzyme, DNAzyme's complementary fragment and nicking enzyme recognition site. The important aspect of this hairpin probe is that, although it is designed to have a long ds DNA fragment, no intermolecular interaction occurs, circumventing the sticky-end pairing-determined disadvantages encountered by classic molecular beacon. For the DHP-based colorimetric sensing system, as a model analyte, cancer-related DNA sequence can trigger a cascade polymerization/nicking cycle on only one oligonucleotide probe. This led to the dramatic accumulation of G-quadruplexes directly responsible for colorimetric signal conversion without any loss. As a result, the target DNA is capable of being detected to 1 fM (six to eight orders of magnitude lower than that of catalytic molecular beacons) and point mutations are distinguished by the naked eye. The described DHP as a-proof-of-concept would not only promote the design of colorimetric biosensors but also open a good way to promote the diagnosis and treatment of genetic diseases.
开发一种通用的生物传感平台来筛选特定的DNA序列仍然是分子生物学研究和遗传疾病临床诊断的一个重要问题。在这项工作中,我们首次报道了一种双茎发夹探针(DHP),它同时被设计为包含一种脱氧核酶、脱氧核酶的互补片段和切口酶识别位点。这种发夹探针的重要之处在于,尽管它被设计为具有一个长的双链DNA片段,但不会发生分子间相互作用,避免了经典分子信标所遇到的由粘性末端配对决定的缺点。对于基于DHP的比色传感系统,作为模型分析物,癌症相关的DNA序列可以仅在一个寡核苷酸探针上触发级联聚合/切口循环。这导致了直接负责比色信号转换的G-四链体的急剧积累而没有任何损失。结果,目标DNA能够被检测到低至1 fM(比催化分子信标低六到八个数量级),并且点突变可以通过肉眼区分。所描述的DHP作为一种概念验证,不仅将促进比色生物传感器的设计,而且还为促进遗传疾病的诊断和治疗开辟了一条良好的途径。