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Functionally active rat S100A4 from a polymerase chain reaction-synthesized gene expressed in soluble form in Escherichia coli

机译:来自聚合酶链反应合成基因的功能活性大鼠S100A4以可溶形式在大肠杆菌中表达

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S100A4 protein is associated with Ca2+-dependent regulation of intracellular activities and is significant in the invasion, growth and metastasis of cancer. In order to express rat S100A4 functionally and identify its biological activity following purification, an S100A4 gene fragment was optimized and fully synthesized via overlapping polymerase chain reaction. The gene was inserted into the prokaryotic expression vector, pBV220, with phage λ PRPL promoters following confirmation by DNA sequencing. The pBV220-S100A4 plasmid was constructed and transformed into Escherichia coli DH5α. Following temperature induction, rat S100A4 was overexpressed and the protein was observed to be located in the supernatant of the lysates, which was ~30-40% of the total protein within the host. The protein was isolated and purified by metal-chelate affinity chromatography. High purity protein (98% purity) was obtained and in vitro western blot analysis identified that the recombinant S100A4 was able to bind to the antibody against wild-type S100A4. The bioactivity of the recombinant protein was detected via Transwell migration and invasion assays. The polyclonal antibody of rat S100A4 protein was prepared for rabbit immunization and exhibited similar efficacies when compared with commercial S100A4. Therefore, rat S100A4 was functionally expressed in E. coli; thus, the production of active recombinant S100A4 protein in E. coli may further aid with the investigation and application of S100A4.
机译:S100A4蛋白与细胞内活性的Ca2 +依赖性调节有关,在癌症的侵袭,生长和转移中具有重要意义。为了表达大鼠S100A4的功能并纯化后鉴定其生物学活性,对S100A4基因片段进行了优化,并通过重叠聚合酶链反应完全合成。在通过DNA测序确认后,将该基因与噬菌体λPRPL启动子一起插入原核表达载体pBV220中。构建了pBV220-S100A4质粒,并将其转化到大肠杆菌DH5α中。诱导温度后,大鼠S100A4过表达,观察到该蛋白质位于裂解物的上清液中,约占宿主内总蛋白质的30-40%。通过金属螯合亲和色谱法分离并纯化蛋白质。获得了高纯度的蛋白质(纯度> 98%),并且体外Western印迹分析确定重组S100A4能够与针对野生型S100A4的抗体结合。重组蛋白的生物活性通过Transwell迁移和侵袭试验进行检测。制备了大鼠S100A4蛋白的多克隆抗体用于兔免疫,与市售S100A4相比,具有相似的功效。因此,大鼠S100A4在大肠杆菌中功能性表达。因此,在大肠杆菌中生产活性重组S100A4蛋白可能进一步有助于S100A4的研究和应用。

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