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Yeast forward and reverse n-hybrid systems.

机译:酵母正向和反向 n混合系统。

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摘要

Since its original description almost 10 years ago, the yeast two-hybrid system has been used extensively to identify protein-protein interactions from many different organisms. Simultaneously, a number of 'variations on a theme' based on the original concept have been described. In one set of variations, systems were developed to detect other macromolecular interactions: DNA-protein (one-hybrid), RNA-protein (RNA-based three-hybrid) and small molecule-protein interactions (ligand-based three-hybrid). These different versions are collectively referred to here as 'n-hybrid systems'. In another set of variations, the original configuration of the two-hybrid fusion proteins was modified to expand the range of possible protein-protein interactions that could be analyzed. For example, systems were developed to detect trimeric interactions, ligand-receptor interactions or interactions that require particular post-translational modifications. Finally, the original concept was turned upside down and 'reverse n-hybrid systems' were developed to identify mutations, peptides or small molecules that dissociate macromolecular interactions. These reagents can be used to validate, in the relevant biological systems, the potential interactions identified with the 'forward n-hybrid systems'. The powerful genetic selections of the forward and reverse n-hybrid systems are proving useful in proteomic projects aimed at generating macromolecular interaction maps.
机译:自将近十年的最初描述以来,酵母双杂交系统已广泛用于鉴定来自许多不同生物体的蛋白质-蛋白质相互作用。同时,已经描述了许多基于原始概念的“主题变体”。在一组变体中,开发了用于检测其他大分子相互作用的系统:DNA-蛋白质(一种杂交),RNA-蛋白质(基于RNA的三种杂交)和小分子-蛋白质相互作用(基于配体的三种杂交)。这些不同的版本在此统称为“ n混合系统”。在另一组变体中,修改了两个杂交融合蛋白的原始构型,以扩展可能进行分析的蛋白质与蛋白质相互作用的范围。例如,开发了检测三聚体相互作用,配体-受体相互作用或需要特定翻译后修饰的相互作用的系统。最终,最初的概念被颠倒了,开发了“反向n杂交系统”以识别可分离大分子相互作用的突变,肽或小分子。这些试剂可用于在相关的生物系统中验证与“正向n杂交系统”识别的潜在相互作用。正向和反向n杂化系统的强大遗传选择被证明在旨在生成大分子相互作用图谱的蛋白质组学项目中很有用。

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