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Diversity in Genetic In Vivo Methods for Protein-Protein Interaction Studies: from the Yeast Two-Hybrid System to the Mammalian Split-Luciferase System

机译:蛋白质-蛋白质相互作用研究的遗传体内方法的多样性:从酵母双杂交系统到哺乳动物分裂型荧光素酶系统

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Summary: The yeast two-hybrid system pioneered the field of in vivo protein-protein interaction methods and undisputedly gave rise to a palette of ingenious techniques that are constantly pushing further the limits of the original method. Sensitivity and selectivity have improved because of various technical tricks and experimental designs. Here we present an exhaustive overview of the genetic approaches available to study in vivo binary protein interactions, based on two-hybrid and protein fragment complementation assays. These methods have been engineered and employed successfully in microorganisms such as Saccharomyces cerevisiae and Escherichia coli, but also in higher eukaryotes. From single binary pairwise interactions to whole-genome interactome mapping, the self-reassembly concept has been employed widely. Innovative studies report the use of proteins such as ubiquitin, dihydrofolate reductase, and adenylate cyclase as reconstituted reporters. Protein fragment complementation assays have extended the possibilities in protein-protein interaction studies, with technologies that enable spatial and temporal analyses of protein complexes. In addition, one-hybrid and three-hybrid systems have broadened the types of interactions that can be studied and the findings that can be obtained. Applications of these technologies are discussed, together with the advantages and limitations of the available assays.
机译:简介:酵母双杂交系统开创了体内蛋白质-蛋白质相互作用方法领域的先河,并且毫无疑问地产生了一系列精巧的技术,这些技术不断地推动着原始方法的极限。由于各种技术技巧和实验设计,灵敏度和选择性得到了提高。在此,我们基于两种杂交和蛋白质片段互补检测方法,对可用于研究体内二进制蛋白质相互作用的遗传方法进行详尽的概述。这些方法已被工程设计并成功用于微生物,如啤酒酵母和大肠杆菌,以及高级真核生物。从单个二进制成对相互作用到全基因组相互作用组作图,自重组概念已被广泛采用。创新性研究报道了重组报道分子使用蛋白质如泛素,二氢叶酸还原酶和腺苷酸环化酶。蛋白质片段互补测定法通过能够对蛋白质复合物进行时空分析的技术,扩展了蛋白质-蛋白质相互作用研究的可能性。此外,一混合系统和三混合系统拓宽了可以研究的相互作用类型和可以得到的发现。讨论了这些技术的应用以及可用测定法的优点和局限性。

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