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首页> 外文期刊>Proteomics >Uncoupling of bait-protein expression from the prey protein environment adds versatility for cell and tissue interaction proteomics and reveals a complex of CARP-1 and the PKA Cβ1 subunit
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Uncoupling of bait-protein expression from the prey protein environment adds versatility for cell and tissue interaction proteomics and reveals a complex of CARP-1 and the PKA Cβ1 subunit

机译:诱饵蛋白表达与猎物蛋白环境的解偶联增加了细胞和组织相互作用蛋白质组学的多功能性,并揭示了CARP-1和PKACβ1亚基的复合物

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An expression-uncoupled tandem affinity purification assay is introduced which differs from the standard TAP assay by uncoupling the expression of the TAP-bait protein from the target cells. Here, the TAP-tagged bait protein is expressed in Escherichia coli and purified. The two concatenated purification steps of the classical TAP are performed after addition of the purified bait to brain tissue homogenates, cell and nuclear extracts. Without prior genetic manipulation of the target, upscaling, free choice of cell compartments and avoidance of expression triggered heat shock responses could be achieved in one go. By the strategy of separating bait expression from the prey protein environment numerous established, mostly tissue-specific binding partners of the protein kinase A catalytic subunit Cβ1 were identified, including interactions in binary, ternary and quaternary complexes. In addition, the previously unknown small molecule inhibitor-dependent interaction of Cβ1 with the cell cycle and apoptosis regulatory protein-1 was verified. The uncoupled tandem affinity purification procedure presented here expands the application range of the in vivo TAP assay and may serve as a simple strategy for identifying cell- and tissue-specific protein complexes.
机译:引入了一种表达非偶联串联亲和纯化测定法,该测定法与标准TAP测定法的区别在于将TAP诱饵蛋白的表达与靶细胞解偶联。在此,带有TAP标签的诱饵蛋白在大肠杆菌中表达并纯化。在将纯化的诱饵添加到脑组织匀浆,细胞和核提取物中之后,进行经典TAP的两个串联的纯化步骤。如果没有对靶标的事先遗传操作,就可以一口气实现规模扩大,自由选择细胞室和避免表达引发的热休克反应。通过从饵蛋白环境中分离诱饵表达的策略,鉴定了许多已建立的,主要是组织特异性的蛋白激酶A催化亚基Cβ1结合伴侣,包括二元,三元和四元复合物中的相互作用。此外,还证实了Cβ1与细胞周期和凋亡调节蛋白1的未知相互作用。本文介绍的非偶联串联亲和纯化程序扩大了体内TAP分析的应用范围,并可作为鉴定细胞和组织特异性蛋白复合物的简单策略。

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