Peled Michael, Strazza Marianne, Mor Adam
Pulmonary Department, The Chaim Sheba Medical Center.
Columbia Center for Translational Immunology, Department of Medicine, Columbia University Medical Center.
J Vis Exp. 2018 Sep 28(139):58433. doi: 10.3791/58433.
Receptor-associated enzymes are the major mediators of cellular activation. These enzymes are regulated, at least in part, by physical interactions with cytoplasmic tails of the receptors. The interactions often occur through specific protein domains and result in activation of the enzymes. There are several methods to study interactions between proteins. While co-immunoprecipitation is commonly used to study domains that are required for protein-protein interactions, there are no assays that document the contribution of specific domains to activity of the recruited enzymes at the same time. Accordingly, the method described here combines co-immunoprecipitation and an on-bead enzymatic activity assay for simultaneous evaluation of interactions between proteins and associated enzymatic activation. The goal of this protocol is to identify the domains that are critical for physical interactions between a protein and enzyme and the domains that are obligatory for complete activation of the enzyme. The importance of this assay is demonstrated, as certain receptor protein domains contribute to the binding of the enzyme to the cytoplasmic tail of the receptor, while other domains are necessary to regulate the function of the same enzyme.
受体相关酶是细胞激活的主要介质。这些酶至少部分地通过与受体细胞质尾巴的物理相互作用来调节。这种相互作用通常通过特定的蛋白质结构域发生,并导致酶的激活。有几种方法可用于研究蛋白质之间的相互作用。虽然免疫共沉淀常用于研究蛋白质-蛋白质相互作用所需的结构域,但目前尚无同时记录特定结构域对所募集酶活性贡献的检测方法。因此,本文所述方法将免疫共沉淀与珠上酶活性检测相结合,用于同时评估蛋白质之间的相互作用以及相关的酶激活。本方案的目的是确定对蛋白质与酶之间物理相互作用至关重要的结构域以及对酶完全激活必不可少的结构域。由于某些受体蛋白结构域有助于酶与受体细胞质尾巴的结合,而其他结构域对于调节同一酶的功能是必需的,因此该检测的重要性得以体现。