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Preparative refolding of small monomeric outer membrane proteins

机译:小单体外膜蛋白的制备重折叠

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The outer membrane of gram-negative bacteria constitutes an important hurdle for the transport of hydrophobic molecules into the cell. Mass flux is often facilitated by various outer membrane proteins. These proteins are of biotechnological importance because they could help to improve the performance of whole-cell biocatalysts or be incorporated into artificial cell-like systems. The characterization and understanding of their transport properties greatly benefits from the possibility to express and purify these proteins. We investigated folding parameters for the refolding of four small monomeric outer membrane proteins from Escherichia coil (OmpW) and different pseudomonads (AlkL, OprG and TodX). To this aim we screened a number of inexpensive detergents and detergent concentrations, folding additives as well as protein concentrations. Interestingly, detergents with a C-12 chain were most effective in promoting the folding reaction, particularly the negatively charged N-Lauroylsarcosine for OmpW, OprG and TodX as well as the zwitterionic N,N-Dimethyl-n-dodecylamine N-oxide (LDAO) for AlkL. The addition of 1 M urea (AIkL, OmpW), 0.1 M glutamate (OprG) or 0.1 M glycine (TodX) could further improve the folding efficiency. In order to be able to reproducibly produce larger amounts of the proteins, we then established the folding in a miniaturized stirred-tank reactor system combined with a liquid handler. This approach led to a near-complete refolding of OprG (96%), a very good folding of AIkL (84%) and OmpW (71%), only TodX folding was more variable with a final folding efficiency of 52%, all obtained at a final protein concentration of 0.5 g/L. (C) 2017 Elsevier Inc. All rights reserved.
机译:革兰氏阴性细菌的外膜构成了将疏水分子传输到细胞中的重要障碍。各种外膜蛋白通常促进质量焊剂。这些蛋白质具有生物技术重要性,因为它们可以有助于改善全细胞生物催化剂的性能或被掺入人造细胞样系统中。对其运输性质的表征和理解从表达和纯化这些蛋白质的可能性大大受益。我们研究了从大肠杆菌卷(OMPW)和不同假单胞菌(AlK1,OPRG和TODX)的四个小单体外膜蛋白的重折叠的折叠参数。为此目的,我们筛选了许多廉价的洗涤剂和洗涤剂浓度,折叠添加剂以及蛋白质浓度。有趣的是,具有C-12链的洗涤剂在促进折叠反应方面最有效,特别是用于OMPW,OPRG和TODX的带负电荷的N-月桂酰库,以及两性离子N,N-二甲基-N-十二烷基胺N-氧化物(LDAO )对于Alkl。添加1M尿素(Aik1,OMPW),0.1M谷氨酸(OPRG)或0.1M甘氨酸(TODX)可以进一步提高折叠效率。为了能够可重复地产生较大量的蛋白质,然后我们在小型化的搅拌罐反应器系统中建立了与液体处理器的折叠。这种方法导致OPRG(96%)的近乎完全重叠,Aikl(84%)和OMPW(71%)的非常好的折叠,只有ToDx折叠更具变化,最终折叠效率为52%,所有以0.5g / L的最终蛋白质浓度。 (c)2017年Elsevier Inc.保留所有权利。

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