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首页> 外文期刊>Analytical and bioanalytical chemistry >In vitro refolding with simultaneous purification of recombinant human parathyroid hormone (rhPTH 1-34) from Escherichia coli directed by protein folding size exclusion chromatography (PF-SEC): implication of solution additives and their role on aggregates and renaturation
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In vitro refolding with simultaneous purification of recombinant human parathyroid hormone (rhPTH 1-34) from Escherichia coli directed by protein folding size exclusion chromatography (PF-SEC): implication of solution additives and their role on aggregates and renaturation

机译:通过蛋白质折叠大小排阻色谱法(PF-SEC)指导从大肠杆菌中同时纯化重组人甲状旁腺激素(rhPTH 1-34)的体外重折叠:溶液添加剂的含义及其在聚集体和复性中的作用

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摘要

Recombinant proteins are frequently hampered by aggregation during the refolding and purification process. A simple and rapid method for in vitro refolding and purification of recombinant human parathyroid hormone (rhPTH 1-34) expressed in Escherichia coli with protein folding size exclusion chromatography (PF-SEC) was developed in the present work. Discrete effects of potential solution additives such as urea, polypolyethylene glycol, proline, and maltose on the refolding with simultaneous purification of rhPTH were investigated. The results of individual additives indicated that both maltose and proline had remarkable influences on the efficiency of refolding with a recovery yield of 65 and 66 % respectively. Further, the synergistic effect of these additives on refolding was also explored. These results demonstrate that the additive combinations are more effective for inhibiting protein aggregation during purification of rhPTH in terms of recovery yield, purity, and specific activity. The maltose and proline combination system achieved the highest renatured rhPTH having a recovery yield of 78 %, a purity of >= 99 %, and a specific activity of 3.31x10(3) cAMP pM/cell respectively, when compared to the classical dilution method yield (41 %) and purity (97 %). In addition, the role of maltose and proline in a combined system on protein aggregation and refolding has been explained. The molecular docking (in silico) scores of maltose (-10.91) and proline (-9.0) support the in vitro results.
机译:重组蛋白经常在重折叠和纯化过程中受到聚集的阻碍。在本工作中,开发了一种简单快速的方法,用于通过蛋白质折叠大小排阻色谱法(PF-SEC)在体外重折叠和纯化在大肠杆菌中表达的重组人甲状旁腺激素(rhPTH 1-34)。研究了潜在溶液添加剂(如尿素,聚乙二醇,脯氨酸和麦芽糖)对重组并同时纯化rhPTH的离散影响。单个添加剂的结果表明,麦芽糖和脯氨酸均对重折叠效率产生显着影响,回收率分别为65%和66%。此外,还研究了这些添加剂对复性的协同作用。这些结果证明,在回收率,纯度和比活性方面,添加剂组合对于rhPTH纯化期间抑制蛋白质聚集更有效。与经典稀释方法相比,麦芽糖和脯氨酸组合系统实现了最高的变性rhPTH,回收率分别为78%,纯度> = 99%和比活性为3.31x10(3)cAMP pM /细胞。产率(41%)和纯度(97%)。另外,已经解释了麦芽糖和脯氨酸在组合系统中对蛋白质聚集和再折叠的作用。麦芽糖(-10.91)和脯氨酸(-9.0)的分子对接(计算机模拟)得分支持体外结果。

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