Faculty of Health and Life Sciences, Biosciences, University of Exeter, Exeter, Devon, UK.
Methods Mol Biol. 2023;2643:345-357. doi: 10.1007/978-1-0716-3048-8_24.
Organelles physically interact with each other via protein tethering complexes that bridge the opposing membranes. Organelle membrane contacts are highly dynamic, implying dynamism of the tethering complexes. Alterations in the binding of the tethering proteins can be assessed by immunoprecipitation. Antibody-conjugated beads allow for purification of the target protein with its binding partners, which can subsequently be examined by western blot analysis. We present immunoprecipitation methods and strategies to examine protein interaction domains, and for the identification of residues important for the regulation of the interaction, here focusing on phosphorylation. We use the peroxisomal membrane protein ACBD5 and its paralog ACBD4, which both bind ER membrane protein VAPB to mediate peroxisome-ER contacts, as example. However, this method can be applied to other peroxisomal and non-peroxisomal (membrane) proteins.
细胞器通过连接相邻膜的蛋白 tethering 复合物相互物理作用。细胞器膜接触是高度动态的,这意味着 tethering 复合物也具有动态性。可以通过免疫沉淀来评估 tethering 蛋白的结合改变。抗体偶联珠允许目标蛋白与其结合伙伴的纯化,随后可以通过 western blot 分析进行检查。我们介绍了免疫沉淀方法和策略,用于研究蛋白质相互作用结构域,并确定对于调节相互作用重要的残基,这里重点关注磷酸化。我们使用过氧化物酶体膜蛋白 ACBD5 和其同源物 ACBD4,它们都与 ER 膜蛋白 VAPB 结合以介导过氧化物酶体-ER 接触,作为示例。然而,该方法可以应用于其他过氧化物酶体和非过氧化物酶体(膜)蛋白。