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A method for changing the functional state of mRNA, providing its selective and specific recognition

机译:一种改变mRNA功能状态,提供其选择性和特异性识别的方法

摘要

A method of altering the functional state of any mRNA enabling its selective and specific recognition and subsequent selective manipulation and a universal principle for increasing the specificity and selectivity of molecular target recognition at the level of nucleic acids. The principle of the specific and selective recognition of nucleic acids is based on simultaneous recognition of two or more sequences of the target nucleic acid, whereas these have to be spaced from each other by a certain defined distance. Such method of nucleic acid recognition through specific recognition of well-defined sequences of the nucleic acid that are spaced from each other by a defined distance, minimizes the probability of stable binding of the interfering construct to inadvertent nucleic acids, thereby dramatically increasing the selectivity of recognition of the targeted nucleic acid. Specific recognition of defined sequences of a nucleic acid localized at a certain defined distance from each other is achieved by simultaneous complementary interference of short sequence-specific oligonucleotides being mutually interconnected by size-specific polymeric linking moiety.
机译:一种改变任何mRNA功能状态的方法,使其能够进行选择性和特异性识别以及随后的选择性操作,以及在核酸水平上提高分子靶标识别的特异性和选择性的通用原理。核酸的特异性和选择性识别的原理是基于同时识别靶核酸的两个或多个序列,而这些序列必须彼此隔开一定的定义距离。通过特异性识别彼此隔开一定距离的明确定义的核酸序列的这种核酸识别方法,使干扰构建体与无意核酸稳定结合的可能性减至最小,从而显着提高了核酸的选择性。靶向核酸的识别。通过以大小特异性的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,可以实现对彼此之间相距一定定义距离的核酸的定义序列的特异性识别。

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