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Increasing gene dosage greatly enhances recombinant expression of aquaporins in Pichia pastoris

机译:基因剂量的增加大大增强了水通道蛋白在毕赤酵母中的重组表达

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Background When performing functional and structural studies, large quantities of pure protein are desired. Most membrane proteins are however not abundantly expressed in their native tissues, which in general rules out purification from natural sources. Heterologous expression, especially of eukaryotic membrane proteins, has also proven to be challenging. The development of expression systems in insect cells and yeasts has resulted in an increase in successful overexpression of eukaryotic proteins. High yields of membrane protein from such hosts are however not guaranteed and several, to a large extent unexplored, factors may influence recombinant expression levels. In this report we have used four isoforms of aquaporins to systematically investigate parameters that may affect protein yield when overexpressing membrane proteins in the yeast Pichia pastoris . Results By comparing clones carrying a single gene copy, we show a remarkable variation in recombinant protein expression between isoforms and that the poor expression observed for one of the isoforms could only in part be explained by reduced transcript levels. Furthermore, we show that heterologous expression levels of all four aquaporin isoforms strongly respond to an increase in recombinant gene dosage, independent of the amount of protein expressed from a single gene copy. We also demonstrate that the increased expression does not appear to compromise the protein folding and the membrane localisation. Conclusions We report a convenient and robust method based on qPCR to determine recombinant gene dosage. The method is generic for all constructs based on the pPICZ vectors and offers an inexpensive, quick and reliable means of characterising recombinant P. pastoris clones. By using this method we show that: (1) heterologous expression of all aquaporins investigated respond strongly to an increase in recombinant gene dosage (2) expression from a single recombinant gene copy varies in an isoform dependent manner (3) the poor expression observed for AtSIP1;1 is mainly caused by posttranscriptional limitations. The protein folding and membrane localisation seems to be unaffected by increased expression levels. Thus a screen for elevated gene dosage can routinely be performed for identification of P. pastoris clones with high expression levels of aquaporins and other classes of membrane proteins.
机译:背景技术在进行功能和结构研究时,需要大量的纯蛋白质。然而,大多数膜蛋白在其天然组织中并未充分表达,这通常排除了从天然来源纯化的可能性。异源表达,尤其是真核膜蛋白的表达,也被证明具有挑战性。昆虫细胞和酵母菌中表达系统的发展导致真核蛋白成功过量表达的增加。然而,不能保证从这类宿主中获得高产量的膜蛋白,并且在很大程度上尚未探索的几种因素可能影响重组表达水平。在本报告中,我们使用了水通道蛋白的四种同工型来系统地研究在酵母毕赤酵母中过表达膜蛋白时可能影响蛋白产量的参数。结果通过比较携带单个基因拷贝的克隆,我们显示了同工型之间重组蛋白表达的显着变化,并且观察到的其中一种同工型表达不佳只能部分由降低的转录水平来解释。此外,我们显示所有四个水通道蛋白同工型的异源表达水平强烈响应重组基因剂量的增加,而与从单个基因拷贝表达的蛋白质的量无关。我们还证明增加的表达似乎并不影响蛋白质折叠和膜定位。结论我们报道了一种基于qPCR的简便,可靠的方法来确定重组基因的剂量。该方法对于基于pPICZ载体的所有构建体都是通用的,并提供了一种廉价,快速和可靠的方法来表征重组巴斯德毕赤酵母克隆。通过使用这种方法,我们表明:(1)所有研究的水通道蛋白的异源表达均强烈响应重组基因剂量的增加(2)来自单个重组基因拷贝的表达以同工型依赖性方式变化(3)观察到的不良表达AtSIP1; 1主要是由转录后限制引起的。蛋白质折叠和膜定位似乎不受表达水平提高的影响。因此,可以常规地进行基因剂量升高的筛选,以鉴定具有高表达水通道蛋白和其他类型的膜蛋白水平的巴斯德毕赤酵母克隆。

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