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首页> 外文期刊>Biochemistry and Biophysics Reports >Functional expression of human prostaglandin E2 receptor 4 (EP4) in E. coli and characterization of the binding property of EP4 with G α proteins
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Functional expression of human prostaglandin E2 receptor 4 (EP4) in E. coli and characterization of the binding property of EP4 with G α proteins

机译:人前列腺素E2受体4(EP4)在 E中的功能表达。 COLI EP4与G α蛋白质的表征

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Human prostaglandin E2 receptor 4 (EP4) is one of the four subtypes of prostaglandin E2(PGE2) receptors and belongs to the rhodopsin-type G protein-coupled receptor (GPCR) family. Particularly, EP4 is expressed in various cancer cells and is involved in cancer-cell proliferation by a G protein signaling cascade. To prepare an active form of EP4 for biochemical characterization and pharmaceutical application, this study designed a recombinant protein comprising human EP4 fused to the P9 protein (a major envelope protein of phi6 phage) and overexpressed the P9-EP4 fusion protein in the membrane fraction ofE. coli.The solubilized P9-EP4 with sarkosyl (a strong anionic detergent) was purified by affinity chromatography. The purified protein was stabilized with amphiphilic polymers derived from poly-γ-glutamate. The polymer-stabilized P9-EP4 showed specific interaction with the alpha subunits of Gsor Giproteins, and a high content of α-helical structure by a circular dichroism spectroscopy. Furthermore, the polymer-stabilized P9-EP4 showed strong heat resistance compared with P9-EP4 in detergents. The functional preparation of EP4 and its stabilization with amphiphilic polymers could facilitate both the biochemical characterization and pharmacological applications targeting EP4.
机译:人前列腺素E2受体4(EP4)是前列腺素E2(PGE2)受体的四个亚型之一,属于罗多双蛋白型G蛋白偶联受体(GPCR)家族。特别地,EP4在各种癌细胞中表达,并且通过G蛋白信号传导级联参与癌细胞增殖。为了制备生化特征和药物应用的活性形式的EP4,该研究设计了一种重组蛋白,其包含与P9蛋白(PHI6噬菌体的主要包络蛋白)融合的人EP4并在膜分数中过表达P9-EP4融合蛋白。 Coli.通过亲和层析纯化具有甲糖基(强阴离子洗涤剂)的溶解的P9-EP4。用来自聚γ-谷氨酸衍生的两亲聚合物稳定纯化的蛋白质。聚合物稳定的P9-EP4显示出与GSOR Giproteins的α亚基的特异性相互作用,并通过圆形二色性光谱与α-螺旋结构的高含量。此外,与洗涤剂中的P9-EP4相比,聚合物稳定的P9-EP4显示出强烈的耐热性。 EP4的功能性制备及其与两亲性聚合物的稳定化可以促进靶向EP4的生物化学表征和药理学应用。

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