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首页> 外文期刊>Biotechnology Progress >Quantitative Evaluation of His-Tag Purification and Immunoprecipitation of Tristetraprolin and its Mutant Proteins from Transfected Human Cells
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Quantitative Evaluation of His-Tag Purification and Immunoprecipitation of Tristetraprolin and its Mutant Proteins from Transfected Human Cells

机译:从转染的人类细胞中Tristetraprolin及其突变蛋白的His-tag纯化和免疫沉淀的定量评估

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Histidine (His)-tag is widely used for affinity purification of recombinant proteins, but the yield and purity of expressed proteins are quite different. Little information is available about quantitative evaluation of this procedure. The objective of this study was to evaluate His-tag procedure quantitatively and to compare it with immunoprecipitation using radiolabeled tristetraprolin (TTP), a zinc finger protein with anti-inflammatory property. Human embryonic kidney 293 cells were transfected with wild-type and nine mutant plasmids with single or multiple phosphorylation site mutation(s) in His-TTP. These proteins were expressed and mainly localized in the cytosol of transfected cells by immunocytochemistry and confocal microscopy. His-TTP proteins were purified by Ni-NTA beads with imidazole elution or precipitated by TTP antibodies from transfected cells after being labeled with [~(32)P]-orthophosphate. The results showed that (1) His-tag purification was more effective than immunoprecipitation for TTP purification; (2) mutations in TTP increased the yield of His-TTP by both purification procedures; and (3) mutations in TTP increased the binding affinity of mutant proteins for Ni-NTA beads. These findings suggest that bioengineering phosphorylation sites in proteins can increase the production of recombinant proteins.
机译:组氨酸(His)标签被广泛用于重组蛋白的亲和纯化,但是表达蛋白的产量和纯度却大不相同。关于此程序的定量评估的信息很少。这项研究的目的是定量评估His-tag程序,并将其与使用放射性标记的tristetraprolin(TTP)(一种具有抗炎特性的锌指蛋白)的免疫沉淀法进行比较。用His-TTP中具有单个或多个磷酸化位点突变的野生型和九种突变质粒转染人胚胎肾293细胞。这些蛋白通过免疫细胞化学和共聚焦显微镜表达并主要定位在转染细胞的细胞质中。 His-TTP蛋白经Ni-NTA珠粒咪唑洗脱纯化,或用[〜(32)P]正磷酸盐标记后由TTP抗体从转染的细胞中沉淀出来。结果表明:(1)His-tag纯化比TTP纯化更有效。 (2)通过两种纯化方法,TTP中的突变均可提高His-TTP的产量; (3)TTP突变增加了突变蛋白对Ni-NTA珠的结合亲和力。这些发现表明蛋白质中的生物工程磷酸化位点可以增加重组蛋白质的产生。

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