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首页> 外文期刊>Frontiers in Molecular Biosciences >Phosphorylation and Alternative Translation on Wheat Germ Cell-Free Protein Synthesis of the DHBV Large Envelope Protein
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Phosphorylation and Alternative Translation on Wheat Germ Cell-Free Protein Synthesis of the DHBV Large Envelope Protein

机译:DHBV大包膜蛋白的小麦胚无细胞蛋白合成的磷酸化和替代翻译

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Wheat-germ cell-free protein synthesis (WG-CFPS) is a potent platform for the high-yield production of proteins. It is especially of interest for difficult-to-express eukaryotic proteins, such as toxic and transmembrane proteins, and presents an important tool in high-throughput protein screening. Until recently, an assumed drawback of WG-CFPS was a reduced capacity for post-translational modifications. Meanwhile, phosphorylation has been observed in WG-CFPS; yet, authenticity of the respective phosphorylation sites remained unclear. Here we show that a viral membrane protein, the duck hepatitis B virus (DHBV) large envelope protein (DHBs L), produced by WG-CFPS, is phosphorylated upon translation at the same sites as DHBs L produced during DHBV infection of primary hepatocytes. Furthermore, we show that alternative translation initiation of the L protein, previously identified in virus-producing hepatic cells, occurs on WG-CFPS as well. Together, these findings further strengthen the high potential of WG-CFPS to include the reproduction of specific modifications proteins experience in vivo.
机译:小麦胚无细胞蛋白质合成(WG-CFPS)是高效生产蛋白质的有效平台。它对于难于表达的真核蛋白质(例如有毒和跨膜蛋白质)特别感兴趣,并且在高通量蛋白质筛选中提供了重要的工具。直到最近,WG-CFPS的一个假定缺点是翻译后修饰的能力降低。同时,在WG-CFPS中已经观察到磷酸化。然而,各个磷酸化位点的真实性仍不清楚。在这里,我们显示了由WG-CFPS产生的病毒膜蛋白,鸭乙型肝炎病毒(DHBV)大包膜蛋白(DHBs L)在与原代肝细胞DHBV感染期间产生的DHBs L相同的位点翻译后被磷酸化。此外,我们表明,先前在产病毒的肝细胞中确定的L蛋白的替代翻译起始也发生在WG-CFPS上。在一起,这些发现进一步增强了WG-CFPS的高潜力,包括在体内经历的特定修饰蛋白的再生。

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