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RNA SNP Detection Method With Improved Specificity Based on Dual-competitive-padlock-probe
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作者 ZHANG Qin-Qin LI Jin-Ze +6 位作者 ZHANG Wei LI Chuan-Yu ZHANG Zhi-Qi YAO Jia DU Hong ZHOU Lian-Qun GUO Zhen 《生物化学与生物物理进展》 SCIE CAS CSCD 北大核心 2024年第11期3021-3033,共13页
Objective The detection of RNA single nucleotide polymorphism(SNP)is of great importance due to their association with protein expression related to various diseases and drug responses.At present,splintR ligase-assist... Objective The detection of RNA single nucleotide polymorphism(SNP)is of great importance due to their association with protein expression related to various diseases and drug responses.At present,splintR ligase-assisted methods are important approaches for RNA direct detection,but its specificity will be limited when the fidelity of ligases is not ideal.The aim of this study was to create a method to improve the specificity of splintR ligase for RNA detection.Methods In this study,a dualcompetitive-padlock-probe(DCPLP)assay without the need for additional enzymes or reactions is proposed to improve specificity of splintR ligase ligation.To verify the method,we employed dual competitive padlock probe-mediated rolling circle amplification(DCPLP-RCA)to genotype the CYP2C9 gene.Results The specificity was well improved through the competition and strand displacement of dual padlock probe,with an 83.26%reduction in nonspecific signal.By detecting synthetic RNA samples,the method demonstrated a dynamic detection range of 10 pmol/L-1 nmol/L.Furthermore,clinical samples were applied to the method to evaluate its performance,and the genotyping results were consistent with those obtained using the qPCR method.Conclusion This study has successfully established a highly specific direct RNA SNP detection method,and provided a novel avenue for accurate identification of various types of RNAs. 展开更多
关键词 RNA single nucleotide polymorphism GENOTYPING rolling circle amplification dual padlock probe
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