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首页> 外文期刊>Journal of combinatorial chemistry >Selection of Modified Oligonucleotides with Increased Target Affinity via MALDI-Monitored Nuclease Survival Assays
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Selection of Modified Oligonucleotides with Increased Target Affinity via MALDI-Monitored Nuclease Survival Assays

机译:通过MALDI监测的核酸酶生存分析选择具有增加的目标亲和力的修饰寡核苷酸。

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Reported here is how modified oligonucleotides with increased affinity for DNA or RNA target strands can be selected from small combinatorial libraries via spectrometrically monitored selection experiments (SMOSE). The extent to which target strands retard the degradation of 5'-acyl-, 5'-aminoacyl-, and 5'-dipeptidyl-oligodeoxyribonucleotides by phosphodiesterase I (EC 3.1.4.1) was measured via quantitative MALDI-TOF mass spectrometry. Oligonucleotide hybrids were prepared on solid support, and nuclease selections were performed with up to 10 modified oligonucleotides in one solution. The mass spectrometrically monitored experiments required between 120 and 300 pmol of each modified oligonucleotide, depending on whether HPLC-purified or crude compounds were employed. Data acquisition and analysis were optimized to proceed in semiautomated fashion, and functions correcting for incomplete degradation during the monitoring time were developed. Integration of the degradation kinetics provided "protection factors" that correlate well with melting points obtained with traditional UV melting curves employing single, pure compounds. Among the components of the five libraries tested, three were found to contain 5'-substituents that strongly stabilize Watson-Crick duplexes. Selecting and optimizing modified oligonucleotides via monitored nuclease assays may offer a more efficient way to search for new antisense agents, hybridization probes, and biochemical tools.
机译:本文报道了如何通过光谱监测选择实验(SMOSE)从小型组合文库中选择对DNA或RNA目标链亲和力增强的修饰寡核苷酸。经由磷酸二酯酶I(EC 3.1.4.1),通过定量MALDI-TOF质谱法测量靶链延迟5'-酰基-,5'-氨基酰基-和5'-二肽基-寡脱氧核糖核苷酸降解的程度。在固相支持物上制备寡核苷酸杂合体,并在一种溶液中用多达10个修饰的寡核苷酸进行核酸酶选择。质谱监测的实验需要每种修饰的寡核苷酸在120至300 pmol之间,具体取决于采用的是HPLC纯化的化合物还是粗化合物。优化了数据采集和分析,以半自动化的方式进行,并开发了在监视时间内纠正不完全退化的功能。降解动力学的综合提供了“保护因子”,该保护因子与采用单一纯化合物的传统UV熔解曲线获得的熔点密切相关。在所测试的五个文库的组成部分中,发现三个包含能强烈稳定Watson-Crick双链体的5'取代基。通过监测的核酸酶分析选择和优化修饰的寡核苷酸可能会提供一种更有效的方法来寻找新的反义剂,杂交探针和生化工具。

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