...
首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >Matrix-assisted refolding of autoprotease fusion proteins on an ion exchange column
【24h】

Matrix-assisted refolding of autoprotease fusion proteins on an ion exchange column

机译:自身蛋白酶融合蛋白在离子交换柱上的基质辅助重折叠

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

Refolding of proteins must be performed under very dilute conditions to overcome the competing aggregation reaction. which has a high reaction order. Refolding on a chromatography column partially prevents formation of the intermediate form prone to aggregation. A chromatographic refolding procedure was developed using an autoprotease fusion protein with the mutant EDDIE from the N-pro autoprotease of pestivirus. Upon refolding, self-cleavage generates a target peptide with an authentic N-terminus. The refolding process was developed using the basic 1.8-kDa peptide sSNEVi-C fused to the autoprotease EDDIE or the acidic peptide pep6His, applying cation and anion exchange chromatography, respectively. Dissolved inclusion bodies were loaded on cation exchange chromatographic resins (Capto S, POROS HS, Fractogel EMD SO3-, UNOsphere S, SP Sepharose FF, CM Sepharose FF, S Ceramic HyperD F, Toyopearl SP-650, and Toyopearl MegaCap II SP-550EC). A conditioning step was introduced in order to reduce the urea concentration prior to the refolding step. Refolding was initiated by applying an elution buffer containing a high concentration of Tris-HCI plus common refolding additives. The actual refolding process occurred concurrently with the elution step and was completed in the collected fraction. With Capto S. POROS HS, and Fractogel SO3-, refolding could be performed at column loadings of 50 mg fusion protein/ml gel, resulting in a final eluate concentration of around 10-15 mg/ml, with refolding and cleavage step yields of around 75%. The overall yield of recovered peptide reached 50%. Similar yields were obtained using the anion exchange system and the pep6His fusion peptide. This chromatographic refolding process allows processing of fusion peptides at a concentration range 10- to 100-fold higher than that observed for common refolding systems.
机译:蛋白质的重折叠必须在非常稀的条件下进行,以克服竞争性聚集反应。反应顺序高在色谱柱上重新折叠部分地防止了易于聚集的中间体形式的形成。使用自蛋白酶融合蛋白和瘟病毒N-pro自蛋白酶的突变体EDDIE开发了色谱重折叠程序。重新折叠后,自我切割产生具有真实N端的目标肽。使用与自动蛋白酶EDDIE或酸性肽pep6His融合的基本1.8-kDa肽sSNEVi-C,分别采用阳离子和阴离子交换色谱法,开发了重折叠过程。将溶解的包涵体加载到阳离子交换色谱树脂上(Capto S,POROS HS,Fractogel EMD SO3-,UNOsphere S,SP Sepharose FF,CM Sepharose FF,S Ceramic HyperD F,Toyopearl SP-650和Toyopearl MegaCap II SP-550EC )。为了降低再折叠步骤之前的尿素浓度,引入了调节步骤。通过应用含有高浓度的Tris-HCl和常见重折叠添加剂的洗脱缓冲液来启动重折叠。实际的重折叠过程与洗脱步骤同时进行,并在收集的馏分中完成。使用Capto S. POROS HS和Fractogel SO3-,可以在柱载量为50 mg融合蛋白/ ml凝胶时进行重折叠,最终洗脱液浓度约为10-15 mg / ml,重折叠和裂解步骤的收率为大约75%。回收的肽的总产率达到50%。使用阴离子交换系统和pep6His融合肽获得了相似的收率。这种色谱重折叠过程允许以比常见重折叠系统所观察到的浓度高10到100倍的浓度处理融合肽。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号