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Production of Phosphorylated Ric-8A proteins using protein kinase CK2

机译:使用蛋白激酶CK2生产磷酸化的RIC-8A蛋白

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摘要

Resistance to Inhibitors of Cholinesterase-8 (Ric-8) proteins are molecular chaperones that fold heterotrimeric G protein alpha subunits shortly after biosynthesis. Ric-8 proteins also act as test tube guanine nucleotide exchange factors (GEF) that promote G alpha subunit GDP for GTP exchange. The GEF and chaperoning activities of Ric-8A are regulated by phosphorylation of five serine and threonine residues within protein kinase CK2 consensus sites. The traditional way that Ric-8A proteins have been purified is from Spodoptera frugiperda (Sf9) or Trichoplusia ni (Tni) insect cells. Endogenous insect cell kinases do phosphorylate the critical regulatory sites of recombinant Ric-8A reasonably well, but there is batch-to-batch variability among recombinant Ric-8A preparations. Additionally, insect cell-production of some Ric-8 proteins with phosphosite alanine substitution mutations is proscribed as there seems to be interdependency of multi-site phosphorylation for functional protein production. Here, we present a method to produce wild type and phosphosite mutant Ric-8A proteins that are fully occupied with bound phosphate at each of the regulatory positions. Ric-8A proteins were expressed and purified from E. coli. Purified Ric-8A was phosphorylated in vitro with protein kinase CK2 and then re-isolated to remove kinase. The phosphorylated Ric-8A proteins were similar to 99% pure and the completeness of phosphorylation was verified by chromatography, phos-tag SDS-PAGE mobility shifts, immunoblotting using phospho-site specific antibodies, and mass spectrometry analysis. E. coli-produced Ric-8A that was phosphorylated using this method promoted a faster rate of Ga subunit guanine nucleotide exchange than Ric-8A that was variably phosphorylated during production in insect cells.
机译:对胆碱酯酶-8(RIC-8)蛋白质的抑制剂是分子伴侣,其在生物合成后不久折叠异映上型G蛋白α亚基。 RIC-8蛋白也充当试管鸟嘌呤核苷酸交换因子(GEF),促进GTP交换的G alpha亚基GDP。 RIC-8A的全球环境基金和伴侣活性由蛋白激酶CK2共有位点内的五种丝氨酸和苏氨酸残基进行磷酸化。 RIC-8A蛋白已被纯化的传统方式是来自Spodoptera Rugiperda(SF9)或Trichoplusia Ni(TNI)昆虫细胞。内源性昆虫细胞激酶合理磷酸化重组RIC-8a的临界调节位点,但重组RIC-8A制备中存在分批 - 批量变异性。另外,昆虫细胞 - 产生具有磷丙氨酸取代突变的一些RIC-8蛋白的产生,因为似乎是多位点磷酸化用于功能蛋白质产生的相互依赖性。这里,我们提出了一种制备野生型和磷酸化突变体RIC-8a蛋白的方法,该蛋白质完全占据在每个调节位置的结合磷酸盐。从大肠杆菌中表达并纯化RIC-8A蛋白。纯化的RIC-8A用蛋白激酶CK2体外磷酸化,然后重新分离以除去激酶。磷酸化的RIC 8a蛋白质与99%纯度纯度,通过色谱法,Phos-Tag SDS-Page迁移率验证磷酸化的完整性,使用磷酸位特异性抗体的免疫印迹,以及质谱分析。使用该方法磷酸化的大肠杆菌产生的RIC 8A促进了GA亚基核蝶核苷酸交换的速度比RIC-8a在昆虫细胞中生产过程中可变磷酸化。

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