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Nucleotide Modification and Polymerase Engineering for Creating a Novel Class of Artificial Nucleic Acid Aptamers

机译:核苷酸改性和聚合酶工程,用于创造一种新型人工核酸适体

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Enzymatic transcription and reverse transcription of artificial nucleic acids would be an important technique to allow the application of artificial nucleic acids to random screening methods of nucleic acids such as system-atic evolution of ligands by exponential enrichment (SELEX), Non-SELEX selection, one-step selection etc. These random scree aing methods would be able to identify various functional nucleic acids such as aptamers and ribozymes with functions similar to antibodies and enzymes, which could be useful not only as research tools for molecular biology but also as diag-nostic agents, therapeutic drugs etc. Recently, KOD and its related DNA polymerases have been used for preparing various modified nucleic acids, including not only base-modified nucleic acids, but also sugar-modified ones and phosphate-modified ones. However, thus far, reasons for the effectiveness of KOD DNA polymerase for such purposes have not been clearly elucidated. Therefore, using mutated KOD DNA polymerases, we studied here their catalytic properties upon enzymatic incorporation of nucleotide analogues with base/sugar/ phosphate modifications. Experimental data indicate that their characteristic kinetic properties enabled recognition of various modified nucleotides. Among those KOD mutants, one achieved efficient successive incorporation of bridged nucleotides with a 2'-ONHCH2CH2-4' linkage, which would be promising candidates for nucleic acid drugs. In this study, the characteristic kinetic properties of KOD DNA polymerase for modified nucleoside triphosphates were shown, and the effectiveness of genetic engineering in improvement of the enzyme for modified nucleotide polymerization has been demonstrated.
机译:人工核酸的酶转录和逆转录是允许人工核酸在核酸的随机筛选方法中施加核酸的随机筛选方法,例如通过指数富集(SELEX),非SELEX选择,一个-Step选择等。这些随机速率AING方法能够鉴定各种功能性核酸,例如适体和核酶,其具有与抗体和酶类似的功能,这不仅可以作为分子生物学的研究工具,而且作为诊断最近,kod及其相关的DNA聚合酶已用于制备各种改性核酸的Kod及其相关的DNA聚合酶,包括碱改性核酸,而且包括糖改性的核酸和磷酸盐改性的核酸。然而,到目前为止,没有明确阐明Kod DNA聚合酶的有效性的原因。因此,使用突变的KOD DNA聚合酶,我们在这里研究了它们在酶促掺入具有碱/糖/磷酸盐修饰的核苷酸类似物上的催化性质。实验数据表明其特征性动力学能够识别各种修饰的核苷酸。在那些KOD突变体中,一个达到与2'-ONHCH2CH2-4'联系的桥接核苷酸的高效掺入,这将是核酸药物的承诺候选者。在该研究中,示出了用于改性核苷三磷酸三核的KOD DNA聚合酶的特征动力学性质,并证明了基因工程改善改性核苷酸聚合的酶的有效性。

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