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首页> 外文期刊>The Journal of Biochemistry >Expression, purification and characterization of soluble recombinant periostin protein produced by Escherichia coli.
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Expression, purification and characterization of soluble recombinant periostin protein produced by Escherichia coli.

机译:大肠埃希氏菌产生的可溶性重组骨膜素蛋白的表达,纯化和鉴定。

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摘要

Periostin is a matricellular protein participating in the tissue remodelling of damaged cardiac tissue after acute myocardial infarction and of the periodontal ligament in mice. However, further studies on the periostin protein have been limited by the intrinsic difficulty of purifying this protein produced in Escherichia coli due to its insolubility. Here, we demonstrate the expression of recombinant periostin protein with high solubility and monodispersity in E. coli. Periostin is composed of an amino-terminal EMI domain, a tandem repeat of 4 fas1 domains (RD1-4), and a carboxyl-terminal region (CTR). We expressed the RD4-CTR region tagged with GST at amino-terminal and 6x Histidine at carboxyl-terminal end in E. coli. The recombinant protein was purified by using GSH-Sepharose and nickel chelation affinity chromatography, followed by gel filtration chromatography. The RD4-CTR protein exhibited high solubility and monodispersity. On average, 9.1 mg of purified RD4-CTR was routinely obtained from 1 L of culture media. Furthermore, the RD4-CTR was biochemically active, because it bound to the RD1-4, the same as intact periostin protein that had been purified from mammalian cells. Our results should enable us to produce the periostin recombinant protein in large quantities and facilitate future studies on functional and structural analyses of periostin.
机译:骨膜素是一种基质细胞蛋白,参与急性心肌梗死后受损心脏组织的组织重塑以及小鼠的牙周膜。然而,由于其不溶性,纯化Periostin蛋白的进一步研究一直受限于纯化在大肠杆菌中产生的该蛋白的固有困难。在这里,我们证明了重组periostin蛋白在大肠杆菌中具有高溶解度和单分散性的表达。骨膜素由氨基末端EMI域,4个fas1域的串联重复序列(RD1-4)和羧基末端区域(CTR)组成。我们在大肠杆菌中表达了在氨基末端标记有GST和在羧基末端标记有6x组氨酸的RD4-CTR区。通过使用GSH-Sepharose和镍螯合亲和层析,然后进行凝胶过滤层析,纯化重组蛋白。 RD4-CTR蛋白表现出高溶解度和单分散性。平均而言,通常从1 L培养基中常规获得9.1 mg纯化的RD4-CTR。此外,RD4-CTR具有生化活性,因为它与RD1-4结合,与从哺乳动物细胞中纯化的完整的骨膜蛋白相同。我们的结果将使我们能够大量生产骨膜素重组蛋白,并促进将来对骨膜素功能和结构分析的研究。

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