首页> 外文期刊>Journal of Biotechnology >Overproduction of Pichia pastoris or Plasmodium falciparum protein disulfide isomerase affects expression, folding and O-linked glycosylation of a malaria vaccine candidate expressed in P. pastoris
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Overproduction of Pichia pastoris or Plasmodium falciparum protein disulfide isomerase affects expression, folding and O-linked glycosylation of a malaria vaccine candidate expressed in P. pastoris

机译:巴斯德毕赤酵母或恶性疟原虫蛋白质二硫键异构酶的过量生产影响巴斯德毕赤酵母中表达的疟疾疫苗候选物的表达,折叠和O-联糖基化

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Production of recombinant malaria proteins in the methylotrophic yeast Pichia pastoris has been difficult due to constraints in transcription, translation and/or post-translation controls. Use of codon-optimized genes has resolved many of the transcriptional controls; however, efforts to overcome translational and post-translational modifications involving disulfide bond formation and glycosylation have been mostly restricted to knocking-out putative N-linked glycosylation sites. We report now on the effect of overproduction of P. pastoris protein disulfide isomerase (PpPDI) and Plasmodium falciparum (PfPDI) on production of a disulfide-rich P. falciparum transmission-blocking vaccine candidate, Pfs25. Pfs25 is expressed in P. pastoris as two isoforms (A and B); the A form has been selected for Phase I human studies. Overproduction of PpPDI in the P. pastoris Pfs25 production clone markedly enhanced the expression level of Pfs25(A) and (B) by 3-fold, while overproduction of PfPDI increased the proportion of Pfs25(A) compared to (B). The resultant Pfs25 products were purified and fully characterized biochemically. In addition to differences in production levels, the mass spectra of PpPDI-Pfs25(A) compared to Pfs25(A) and PfPDI-Pfs25(A) were different due to the pattern and level of O-linked glycosylation. The overproduction of PpPDI or PfPDI provides new platforms for expression of disulfide-rich malaria proteins.
机译:由于转录,翻译和/或翻译后对照的限制,在甲基营养型酵母巴斯德毕赤酵母中生产重组疟疾蛋白质是困难的。使用密码子优化的基因已解决了许多转录控制问题。然而,克服涉及二硫键形成和糖基化的翻译和翻译后修饰的努力大部分限于敲除假定的N-连接的糖基化位点。我们现在报告关于过量生产的巴斯德毕赤酵母蛋白二硫键异构酶(PpPDI)和恶性疟原虫(PfPDI)对富含二硫键的恶性疟原虫传播阻止疫苗候选物Pfs25的生产的影响。 Pfs25在巴斯德毕赤酵母中表达为两种亚型(A和B);已为第一阶段人体研究选择了A表格。巴斯德毕赤酵母Pfs25生产克隆中PpPDI的过量生产显着提高了Pfs25(A)和(B)的表达水平3倍,而PfPDI过量生产则与(B)相比增加了Pfs25(A)的比例。纯化所得的Pfs25产物,并进行生化充分表征。除了生产水平上的差异外,由于O联糖基化的方式和水平不同,与Pfs25(A)和PfPDI-Pfs25(A)相比,PpPDI-Pfs25(A)的质谱也不同。 PpPDI或PfPDI的过量生产为表达富含二硫键的疟疾蛋白提供了新的平台。

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