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Purification of prenylated proteins by affinity chromatography on cyclodextrin-modified agarose

机译:亲和色谱法在环糊精修饰的琼脂糖上纯化异戊烯基化的蛋白质

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摘要

Although protein prenylation is widely studied, there are few good methods for isolating prenylated proteins from their non-prenylated relatives. We report that crosslinked agarose (e.g., Sepharose) chromatography media that has been chemically functionalized with β-cyclodextrin (β-CD) is extremely effective in affinity chromatography of prenylated proteins. In this study, a variety of proteins with C-terminal prenylation target (“CAAX box”) sequences were enzymatically prenylated in vitro with natural and non-natural prenyl diphosphate substrates. The prenylated protein products could then be isolated from starting materials by gravity chromatography or fast protein liquid chromatography (FPLC) on a β-CD-Sepharose column. One particular prenylation reaction—farnesylation of a mCherry-CAAX fusion construct—was studied in detail. In this case, purified farnesylated product was unambiguously identified by electrospray mass spectrometry. In addition, when mCherry-CAAX was prenylated with a non-natural, functional isoprenoid substrate, the functional group was maintained by chromatography on β-CD-Sepharose, such that the resulting protein could be selectively bound at its C terminus to complementary functionality on a solid substrate. Finally, β-CD-Sepharose FPLC was used to isolate prenylated mCherry-CAAX from crude HeLa cell lysate, as a model for purifying prenylated proteins from cell extracts. We propose that this method could be generally useful to the community of researchers studying protein prenylation.
机译:尽管蛋白质异戊二烯化已得到广泛研究,但从其非异戊二烯化的亲戚中分离出异戊二烯化蛋白的方法很少。我们报道了已被β-环糊精(β-CD)化学功能化的交联琼脂糖(例如Sepharose)色谱介质在异戊二烯化蛋白的亲和色谱中极为有效。在这项研究中,使用天然和非天然异戊二烯基二磷酸酯底物在体外对具有C末端异戊二烯化目标序列(“ CAAX盒”)序列的多种蛋白质进行了酶促异戊二烯化。然后可以通过重力色谱或快速蛋白液相色谱(FPLC)在β-CD-琼脂糖柱上从原料中分离出烯丙基化的蛋白质产物。详细研究了一种特殊的异戊烯化反应-mCherry-CAAX融合构建体的法呢基化。在这种情况下,纯化的法呢基化产物通过电喷雾质谱法明确鉴定。此外,当mCherry-CAAX与非天然功能性类异戊二烯底物进行异戊二烯基化时,通过在β-CD-Sepharose上进行色谱分离可以保留官能团,从而使生成的蛋白质可以在其C末端选择性结合至互补的功能上。固体基质。最后,β-CD-琼脂糖FPLC用于从粗HeLa细胞裂解物中分离出异戊烯化的mCherry-CAAX,作为从细胞提取物中纯化异戊烯化蛋白质的模型。我们建议这种方法通常可用于研究蛋白质异戊二烯化的研究人员社区。

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