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单元操作——氧化还原体系的跨尺度研究。

Unit Operation-Spanning Investigation of the Redox System.

机构信息

IBD Group, Institute of Chemical, Environmental and Bioscience, TU Wien, Vienna, Austria.

出版信息

Methods Mol Biol. 2023;2617:165-176. doi: 10.1007/978-1-0716-2930-7_11.

Abstract

Cytoplasmic expression of recombinant proteins requiring disulfide bridges in Escherichia coli usually leads to the formation of insoluble inclusion bodies (IBs). The reason for this phenomenon is found in the reducing environment of the cytoplasm, preventing the formation of disulfide bridges and therefore resulting in inactive protein aggregates. However, IBs can be refolded in vitro to obtain the protein in its active conformation. In order to correctly form the required disulfide bridges, cystines are fully reduced during solubilization and, with the help of an oxidizing agent, the native disulfide bridges are formed during the refolding step. Here, a protocol to identify suitable redox conditions for solubilization and refolding is presented. For this purpose, a multivariate approach spanning the unit operations solubilization and refolding is used.

摘要

在大肠杆菌中表达需要二硫键的重组蛋白时,细胞质中通常会形成不溶性包涵体(IB)。这种现象的原因在于细胞质的还原环境,阻止了二硫键的形成,从而导致了无活性的蛋白质聚集。然而,包涵体可以在体外进行复性,以获得具有活性构象的蛋白质。为了正确形成所需的二硫键,半胱氨酸在溶解过程中被完全还原,并且在氧化还原试剂的帮助下,在复性步骤中形成天然的二硫键。这里,介绍了一种用于鉴定溶解和复性合适氧化还原条件的方案。为此,使用了一种跨越溶解和复性单元操作的多变量方法。

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Development of Solubilization and Refolding Buffers.增溶和复性缓冲液的开发。
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Solubilization and Refolding of Inclusion Body Proteins.包涵体蛋白的溶解与复性。
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