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IRES-Mediated Translation of Membrane Proteins and Glycoproteins in Eukaryotic Cell-Free Systems.

机译:IRES介导的真核无细胞系统中膜蛋白和糖蛋白的翻译。

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摘要

Internal ribosome entry site (IRES) elements found in the 5' untranslated region of mRNAs enable translation initiation in a cap-independent manner, thereby representing an alternative to cap-dependent translation in cell-free protein expression systems. However, IRES function is largely species-dependent so their utility in cell-free systems from different species is rather limited. A promising approach to overcome these limitations would be the use of IRESs that are able to recruit components of the translation initiation apparatus from diverse origins. Here, we present a solution to this technical problem and describe the ability of a number of viral IRESs to direct efficient protein expression in different eukaryotic cell-free expression systems. The IRES from the intergenic region (IGR) of the Cricket paralysis virus (CrPV) genome was shown to function efficiently in four different cell-free systems based on lysates derived from cultured Sf21, CHO and K562 cells as well as wheat germ. Our results suggest that the CrPV IGR IRES-based expression vector is universally applicable for a broad range of eukaryotic cell lysates. Sf21, CHO and K562 cell-free expression systems are particularly promising platforms for the production of glycoproteins and membrane proteins since they contain endogenous microsomes that facilitate the incorporation of membrane-spanning proteins and the formation of post-translational modifications. We demonstrate the use of the CrPV IGR IRES-based expression vector for the enhanced synthesis of various target proteins including the glycoprotein erythropoietin and the membrane proteins heparin-binding EGF-like growth factor receptor as well as epidermal growth factor receptor in the above mentioned eukaryotic cell-free systems. CrPV IGR IRES-mediated translation will facilitate the development of novel eukaryotic cell-free expression platforms as well as the high-yield synthesis of desired proteins in already established systems.
机译:在mRNA的5'非翻译区中发现的内部核糖体进入位点(IRES)元件能够以不依赖帽的方式启动翻译,从而代表了无细胞蛋白表达系统中不依赖帽的翻译的替代方法。但是,IRES的功能在很大程度上取决于物种,因此它们在不同物种的无细胞系统中的应用受到很大限制。克服这些局限性的一种有前途的方法是使用能够从不同来源招募翻译起始装置组件的IRES。在这里,我们提出了对这一技术问题的解决方案,并描述了许多病毒IRES指导不同的真核细胞表达系统中有效蛋白质表达的能力。来自板球麻痹病毒(CrPV)基因组的基因间区域(IGR)的IRES已显示在基于培养的Sf21,CHO和K562细胞以及小麦胚芽的裂解物的四种不同的无细胞系统中有效运行。我们的结果表明,基于CrPV IGR IRES的表达载体普遍适用于广泛的真核细胞裂解液。 Sf21,CHO和K562无细胞表达系统是生产糖蛋白和膜蛋白的特别有前途的平台,因为它们包含内源性微粒体,可促进跨膜蛋白的掺入和翻译后修饰的形成。我们展示了基于CrPV IGR IRES的表达载体在上述真核生物中各种糖蛋白促红细胞生成素和膜蛋白结合肝素的EGF样生长因子受体以及表皮生长因子受体的各种靶蛋白的增强合成无细胞系统。 CrPV IGR IRES介导的翻译将有助于开发新的无真核细胞表达平台,以及在已经建立的系统中高产量合成所需蛋白质。

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