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风疹病毒包膜糖蛋白在细胞内的翻译、加工及转运

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摘要 包膜糖蛋白是风疹病毒的主要结构蛋白,在病毒致病及机体的免疫反应过程中发挥重要作用。作为风疹病毒属的唯一成员,风疹病毒包膜糖蛋白的合成加工与披膜病毒科的其它成员相比有其独特之处。本文对其在细胞中的翻译、加工、转运等特点作一综述。
出处 《国际病毒学杂志》 2008年第1期1-4,共4页 International Journal of Virology
基金 国家自然科学基金(No.30570065) 山东大学创新团队项目资助
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参考文献15

  • 1Qiu Z, Yao J, Cao H, et al. Mutations in the E1 hydrophobic domain of rubella virus impair virus infectivity but not virus assembly. J Virol, 2000, 74(14): 6637-6642.
  • 2Yao J, Gillam S. A single-amino-acid substitution of a tyrosine residue in the rubella virus E1 cytoplasmic domain blocks virus release. J Virol, 2000,74(7) :3029-3036.
  • 3Yao J, Gillam S. Mutational analysis, using a full-length rubella virus eDNA clone, of rubella virus E1 transmembrane and cytoplasmic domains required for virus release. J Virol, 1999,73 (6) : 4622-4630.
  • 4Gros C, Linder M, Wengler G, et al. Analyses of disulfides present in the rubella virus E1 glycoprotein. Virology , 1997,230(2):179- 186.
  • 5Pappas CL, Tzeng WP, Frey TK. Evaluation of cis-acting elements in the rubella virus subgenomic RNA that play a role in its translation. Arch Virol, 2006,151(2) :327-346.
  • 6Beatch MD, Everitt JC, Law LJ, et al. Interactions between rubella virus capsid and host protein p32 are important for virus replication. J Virol, 2005,79 (16) : 10807-10820.
  • 7Claus C, Haofmann J, Uberla K, et al. Rubella virus pseudotypes and a cell-cell fusion assay as tools for functional analysis of the rubella virus E2 and E1 envelope glycoproteins. J Gen Virol, 2006,87 (Pt10) :3029-3037.
  • 8Law LM, Duncan R, Esmaili A, et al. Rubella virus E2 signal peptide is required for perinuclear localization of capsid protein and virus assembly. J Virol,2001, 75(4) :1978-1983.
  • 9Yang D, Hwang D, Qiu Z, et al. Effects of mutations in the rubella virus E1 glycoprotein on E1-E2 interaction and membrane fusion activity. J Virol, 1998,72(11) : 8747-8755.
  • 10Ramanujam M, Hofmann J, Nakhasi HL, et al. Effect of site-directed asparagines to isoleucine substitutions at the N-linked E1 glycosylation sites on rubella virus viability. Virus Res, 2001, 81 (1- 2):151-156.

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