Cheah Joleen S, Yamada Soichiro
Biomedical Engineering Department, University of California, Davis, United States.
Biomedical Engineering Department, University of California, Davis, United States.
Biochem Biophys Res Commun. 2017 Dec 2;493(4):1522-1527. doi: 10.1016/j.bbrc.2017.09.168. Epub 2017 Oct 3.
Protein-protein interactions are the molecular basis of cell signaling. Recently, proximity based biotin identification (BioID) has emerged as an alternative approach to traditional co-immunoprecipitation. In this protocol, a mutant biotin ligase promiscuously labels proximal binding partners with biotin, and resulting biotinylated proteins are purified using streptavidin conjugated beads. This approach does not require preservation of protein complexes in vitro, making it an ideal approach to identify transient or weak protein complexes. However, due to the high affinity bond between streptavidin and biotin, elution of biotinylated proteins from streptavidin conjugated beads requires harsh denaturing conditions, which are often incompatible with downstream processing. To effectively release biotinylated proteins bound to streptavidin conjugated beads, we designed a series of experiments to determine optimal binding and elution conditions. Interestingly, the concentrations of SDS and IGEPAL-CA630 during the incubation with streptavidin conjugated beads were the key to effective elution of biotinylated proteins using excess biotin and heating. This protocol provides an alternative method to isolate biotinylated proteins from streptavidin conjugated beads that is suitable for further downstream analysis.
蛋白质-蛋白质相互作用是细胞信号传导的分子基础。最近,基于邻近性的生物素识别(BioID)已成为传统免疫共沉淀的一种替代方法。在本方案中,一种突变型生物素连接酶会随意地用生物素标记近端结合伴侣,然后使用与链霉亲和素偶联的磁珠纯化产生的生物素化蛋白。这种方法不需要在体外保存蛋白质复合物,使其成为鉴定瞬时或弱蛋白质复合物的理想方法。然而,由于链霉亲和素与生物素之间的高亲和力结合,从与链霉亲和素偶联的磁珠上洗脱生物素化蛋白需要苛刻的变性条件,而这些条件通常与下游处理不兼容。为了有效释放与链霉亲和素偶联磁珠结合的生物素化蛋白,我们设计了一系列实验来确定最佳结合和洗脱条件。有趣的是,在与链霉亲和素偶联磁珠孵育期间,SDS和IGEPAL-CA630的浓度是使用过量生物素和加热有效洗脱生物素化蛋白的关键。本方案提供了一种从与链霉亲和素偶联磁珠中分离生物素化蛋白的替代方法,该方法适用于进一步的下游分析。