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A method that enables selective and specific recognition by changing the functional state of mRNA

机译:通过改变mRNA的功能状态实现选择性和特异性识别的方法

摘要

The present invention relates to methods that alter the functional state of any mRNA to allow its selective and specific recognition and subsequent selective manipulation. The present invention describes a universal principle for increasing the specificity and selectivity of molecular target recognition at the nucleic acid level. The principle of specific and selective recognition of nucleic acids is based on the simultaneous recognition of two or more sequences of a target nucleic acid that must be separated from each other by a certain defined distance. Such a method of nucleic acid recognition by specifically recognizing a well-defined sequence of nucleic acids that are separated from each other by a defined distance would allow for stable binding of the interfering construct to the unexpected nucleic acid. Minimizing the possibilities, thereby dramatically increasing the selectivity of target nucleic acid recognition. Specific recognition of a defined sequence of nucleic acids localized at a defined distance from each other is the simultaneous complementary interference of short sequence-specific oligonucleotides interconnected by size-specific polymer linking moieties Achieved by:
机译:本发明涉及改变任何mRNA的功能状态以允许其选择性和特异性识别以及随后的选择性操作的方法。本发明描述了在核酸水平上增加分子靶标识别的特异性和选择性的通用原理。核酸特异性和选择性识别的原理是基于同时识别必须彼此隔开一定定义距离的两个或多个靶核酸序列。通过特异性识别彼此分开限定距离的核酸的良好定义的序列的这种核酸识别方法将允许干扰构建体与意外核酸的稳定结合。使可能性最小化,从而显着提高靶核酸识别的选择性。对彼此之间限定距离的核酸定义序列的特异性识别是通过大小特异性聚合物连接部分相互连接的短序列特异性寡核苷酸的同时互补干扰,其实现方式是:

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