Bofinger D P, Fucile N W, Spaulding S W
Department of Medicine, State University of New York, Buffalo.
Anal Biochem. 1988 Apr;170(1):9-18. doi: 10.1016/0003-2697(88)90083-8.
While clear evidence exists for the regulation of the phosphorylation of the very basic high mobility group (HMG) and histone chromatin proteins, the physiological role of their phosphorylation remains poorly understood. Elucidation of these roles has been difficult, in part, because of the inability to obtain sufficient quantities of purified phosphorylated derivatives. We have used Mono S cation-exchange chromatography to prepare milligram quantities of pure Ser 6-phosphorylated HMG 14 (Ser 6-PO4-HMG) from unphosphorylated Mono S-purified calf thymus HMG 14 following in vitro phosphorylation with cAMP-dependent protein kinase (A-kinase). In one step, this technique separates the phosphorylated derivative from A-kinase, ATP, unphosphorylated HMG 14, and a minor phosphorylated by-product which evidence suggests may be the previously reported Ser 6, 24-diphospho-HMG 14. Mono S chromatography also enhances the purity of calf thymus HMG 14 prepared by perchloric acid extraction, acetone and ethanol precipitations, and CM-Sephadex chromatography. In addition, it permits the detection of apparent microheterogenous forms of both unphosphorylated and Ser 6-PO4-HMG 14. The significant reductions in binding affinity resulting from the incorporation of phosphate groups into HMG 14 suggest that Mono S chromatography could have more general application in the isolation of phosphorylated derivatives of other basic proteins, including other chromatin-associated DNA-binding proteins which are known to undergo specific phosphorylation. It would especially be useful when the proteins and their phosphorylated derivatives bind more tightly to Mono S than the kinases used for their phosphorylation.
虽然已有明确证据表明极碱性的高迁移率族(HMG)和组蛋白染色质蛋白的磷酸化受到调控,但其磷酸化的生理作用仍知之甚少。部分原因在于难以获得足够量的纯化磷酸化衍生物,所以阐明这些作用颇具难度。我们利用单磺酸阳离子交换色谱法,通过依赖环磷酸腺苷的蛋白激酶(A激酶)进行体外磷酸化后,从未磷酸化的经单磺酸纯化的小牛胸腺HMG 14中制备出了毫克量的纯6位丝氨酸磷酸化HMG 14(Ser 6-PO4-HMG)。此技术一步即可将磷酸化衍生物与A激酶、三磷酸腺苷、未磷酸化的HMG 14以及一种少量的磷酸化副产物分离,有证据表明该副产物可能是先前报道的6位丝氨酸、24位二磷酸化HMG 14。单磺酸色谱法还提高了通过高氯酸提取、丙酮和乙醇沉淀以及CM - 葡聚糖凝胶色谱法制备的小牛胸腺HMG 14的纯度。此外,它能检测未磷酸化的和Ser 6-PO4-HMG 14的明显微异质性形式。由于磷酸基团掺入HMG 14导致结合亲和力显著降低,这表明单磺酸色谱法在分离其他碱性蛋白的磷酸化衍生物方面可能有更广泛的应用,包括其他已知会发生特异性磷酸化的与染色质相关的DNA结合蛋白。当蛋白质及其磷酸化衍生物比用于其磷酸化的激酶更紧密地结合到单磺酸上时,它将特别有用。