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丙型肝炎病毒结构蛋白在毕赤酵母中的表达与加工

Expression and processing of hepatitis C virus structural proteins in Pichia pastoris yeast.

作者信息

Martinez-Donato Gillian, Acosta-Rivero Nelson, Morales-Grillo Juan, Musacchio Alexis, Vina Ariel, Alvarez Catalina, Figueroa Nelvis, Guerra Ivis, Garcia Jose, Varas Laura, Muzio Verena, Dueñas-Carrera Santiago

机构信息

Division of Vaccines, Center for Genetic Engineering and Biotechnology, P.O. Box 6162, C.P. 10600, City of Havana, Cuba.

出版信息

Biochem Biophys Res Commun. 2006 Apr 7;342(2):625-31. doi: 10.1016/j.bbrc.2006.01.157. Epub 2006 Feb 8.

Abstract

Development of heterologous systems to produce useful HCV vaccine candidates is an important part of HCV research. In this study different HCV structural region variants were designed to express the first 120 aa, 176 aa, 339 aa, and 650 aa of HCV polyprotein, and aa 384 to 521, or aa 384-605 or aa 384-746 of HCV E2 protein fused to the leader sequence of sucrose invertase 2 allowing the secretion of recombinant E2 proteins. Low expression levels were observed for HCV core protein (HCcAg) variants expressing the first 120 aa and 176 aa (HCcAg.120 and HCcAg.176, respectively). Higher expression levels were observed when HCcAg was expressed as a polypeptide with either E1 or E1 and E2 proteins. In addition, HCcAg was processed to produce two antigenic bands with 21 and 23kDa (P21 and P23, respectively) when expressed as a polypeptide with HCV E1 and E2 proteins. Results also suggest E1 processing in the context of HCcAg.E1.E2 polyprotein. On the other hand, E2.521, E2.605, and E2.680 were efficiently excreted to the culture medium. However, the entire E2.746 variant predominantly localized in the insoluble fraction of ruptured cells. Results suggest that the hydrophobic C-terminal E2 region from aa 681 to 746 is critical for intracellular retention of recombinant E2.746 protein in Pichia pastoris cells. Endo H or PNGase F treatment suggests that E2.746 was modified with high-mannose type oligosaccharides in P. pastoris. These data justify the usefulness of P. pastoris expression system to express HCV structural viral proteins which may be useful targets for HCV vaccine candidates.

摘要

开发用于生产有用的丙型肝炎病毒(HCV)候选疫苗的异源系统是HCV研究的重要组成部分。在本研究中,设计了不同的HCV结构区变体,以表达HCV多聚蛋白的前120个氨基酸、176个氨基酸、339个氨基酸和650个氨基酸,以及与蔗糖转化酶2的前导序列融合的HCV E2蛋白的384至521位氨基酸、384 - 605位氨基酸或384 - 746位氨基酸,从而使重组E2蛋白得以分泌。表达前120个氨基酸和176个氨基酸的HCV核心蛋白(HCcAg)变体(分别为HCcAg.120和HCcAg.176)观察到低表达水平。当HCcAg与E1或E1和E2蛋白一起作为多肽表达时,观察到更高的表达水平。此外,当HCcAg与HCV E1和E2蛋白一起作为多肽表达时,HCcAg被加工产生两条分别为21 kDa和23 kDa的抗原条带(分别为P21和P23)。结果还表明在HCcAg.E1.E2多聚蛋白的背景下E1被加工。另一方面,E2.521、E2.605和E2.680被有效地分泌到培养基中。然而,整个E2.746变体主要定位于破裂细胞的不溶性部分。结果表明,从681至746位氨基酸的疏水E2 C末端区域对于重组E2.746蛋白在毕赤酵母细胞中的细胞内保留至关重要。内切糖苷酶H或肽-N-糖苷酶F处理表明E2.746在毕赤酵母中被高甘露糖型寡糖修饰。这些数据证明了毕赤酵母表达系统用于表达HCV结构病毒蛋白的有用性,这些蛋白可能是HCV候选疫苗的有用靶点。

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