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Insight into factors directing high production of eukaryotic membrane proteins; production of 13 human AQPs in Pichia pastoris.

机译:洞察指导真核膜蛋白高产的因素;在巴斯德毕赤酵母中生产13种人类AQP。

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Membrane proteins are key players in all living cells. To achieve a better understanding of membrane protein function, significant amounts of purified protein are required for functional and structural analyses. Overproduction of eukaryotic membrane proteins, in particular, is thus an essential yet non-trivial task. Hence, improved understanding of factors which direct a high production of eukaryotic membrane proteins is desirable. In this study we have compared the overproduction of all human aquaporins in the eukaryotic host Pichia pastoris. We report quantitated production levels of each homologue and the extent of their membrane localization. Our results show that the protein production levels vary substantially, even between highly homologous aquaporins. A correlation between the extents of membrane insertion with protein function also emerged, with a higher extent of membrane insertion for pure water transporters compared to aquaporin family members with other substrate specificity. Nevertheless, the nucleic acid sequence of the second codon appears to play an important role in overproduction. Constructs containing guanine at the first position of this codon (being part of the mammalian Kozak sequence) are generally produced at a higher level, which is confirmed for hAQP8. In addition, mimicking the yeast consensus sequence (ATGTCT) apparently has a negative influence on the production level, as shown for hAQP1. Moreover, by mutational analysis we show that the yield of hAQP4 can be heavily improved by directing the protein folding pathway as well as stabilizing the aquaporin tetramer.
机译:膜蛋白是所有活细胞的关键角色。为了更好地了解膜蛋白的功能,功能和结构分析需要大量的纯化蛋白。因此,特别是真核细胞膜蛋白的过度生产是一项必不可少的重要任务。因此,需要更好地理解指导真核膜蛋白高产量的因素。在这项研究中,我们比较了真核宿主巴斯德毕赤酵母中所有人类水通道蛋白的过量生产。我们报告每个同系物的定量生产水平及其膜定位的程度。我们的结果表明,即使在高度同源的水通道蛋白之间,蛋白质的生产水平也有很大差异。还出现了膜插入程度与蛋白质功能之间的相关性,与具有其他底物特异性的水通道蛋白家族成员相比,纯水转运蛋白的膜插入程度更高。然而,第二个密码子的核酸序列似乎在过量生产中起重要作用。通常在较高水平上产生在该密码子的第一位置(作为哺乳动物的Kozak序列的一部分)包含鸟嘌呤的构建体,这对于hAQP8是证实的。此外,模仿酵母共有序列(ATGTCT)显然会对生产水平产生负面影响,如hAQP1所示。此外,通过突变分析,我们表明,通过指导蛋白质折叠途径以及稳定水通道蛋白四聚体,可以大大提高hAQP4的产量。

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