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Screening and Characterization of a Novel RNA Aptamer That Specifically Binds to Human Prostatic Acid Phosphatase and Human Prostate Cancer Cells

机译:特异性结合人前列腺酸性磷酸酶和人前列腺癌细胞的新型RNA适体的筛选和表征

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摘要

Prostatic acid phosphatase (PAP) expression increases proportionally with prostate cancer progression, making it useful in prognosticating intermediate to high-risk prostate cancers. A novel ligand that can specifically bind to PAP would be very helpful for guiding prostate cancer therapy. RNA aptamers bind to target molecules with high specificity and have key advantages such as low immunogenicity and easy synthesis. Here, human PAP-specific aptamers were screened from a 2′-fluoropyrimidine (FY)-modified RNA library by SELEX. The candidate aptamer families were identified within six rounds followed by analysis of their sequences and PAP-specific binding. A gel shift assay was used to identify PAP binding aptamers and the 6N aptamer specifically bound to PAP with a Kd value of 118 nM. RT-PCR and fluorescence labeling analyses revealed that the 6N aptamer bound to PAP-positive mammalian cells, such as PC-3 and LNCaP. IMR-90 negative control cells did not bind the 6N aptamer. Systematic minimization analyses revealed that 50 nucleotide sequences and their two hairpin structures in the 6N 2′-FY RNA aptamer were equally important for PAP binding. Renewed interest in PAP combined with the versatility of RNA aptamers, including conjugation of anti-cancer drugs and nano-imaging probes, could open up a new route for early theragnosis of prostate cancer.
机译:前列腺酸磷酸酶(PAP)的表达与前列腺癌的进展成比例地增加,使其可用于预测中度至高危前列腺癌。可以特异性结合PAP的新型配体将对指导前列腺癌治疗非常有帮助。 RNA适体以高特异性与靶分子结合,并具有诸如免疫原性低和易于合成等关键优势。在此,通过SELEX从2'-氟嘧啶(FY)修饰的RNA文库中筛选了人PAP特异性适体。在六个回合中鉴定了候选适体家族,然后分析其序列和PAP特异性结合。使用凝胶迁移测定法来鉴定PAP结合适体和与PAP特异性结合的6N适体,其Kd值为118nM。 RT-PCR和荧​​光标记分析表明6N适体与PAP阳性哺乳动物细胞(如PC-3和LNCaP)结合。 IMR-90阴性对照细胞不结合6N适体。系统的最小化分析表明,6N 2'-FY RNA适体中的50个核苷酸序列及其两个发夹结构对于PAP结合同样重要。对PAP的重新兴趣与RNA适体的多功能性(包括抗癌药和纳米成像探针的结合)相结合,可以为前列腺癌的早期鼻咽癌治疗开辟新途径。

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