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棘突蛋白在冠状病毒跨宿主感染中的作用 被引量:5

Roles of spike protein in the interspecies transmission of coronaviruses
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摘要 冠状病毒感染有相对严格的宿主和组织特异性,其中部分病毒在演化中会发生细胞嗜性改变。冠状病毒的跨宿主感染能力主要取决于病毒表面棘突蛋白的变异及其与受体相互作用的特异性改变。棘突蛋白的变异主要集中在受体结合域(RBD),其他区域也与病毒感染的宿主细胞特异性有关。另外,较大的RNA基因组、独特的套氏亚基因组转录、复制过程中模板转换引起的高频率基因重组等使冠状病毒不断出现毒力或宿主变异,而共感染和持续性感染则为病毒重组及跨宿主感染提供了机会。 Coronaviruses generally infect their natural hosts but scarcely infect other species of animals. The interspecies transmission of coronaviruses depends on the interaction of spike protein with the receptor. Receptor binding domains as well as other domains in spike proteins are mainly related to the tropism of coronaviruses. The emergence of new and host-across strains of coronaviruses is due to the huge RNA genome, specific subgenomic RNAs and high recombinant rate between RNAs. And both persist infection and co-infection provide the opportunities for the recombinant events and sequentialhost-shifting.
作者 王玉燕
出处 《微生物与感染》 2013年第1期43-51,共9页 Journal of Microbes and Infections
基金 高等学校博士学科点专项科研基金资助课题(新教师)(20090071120061) 上海市自然科学基金(10ZR1402700)
关键词 冠状病毒 棘突蛋白 受体结合域 受体 跨种属感染 基因重组 Coronavirus Spike protein Receptor binding domain Receptor Interspecies transmissionGene recombination
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  • 1Graham RL, Baric RS. Recombination, reservoirs, and the modular spike: mechanisms of coronavirus cross-speciestransmission [J]. J Virol, 2010, 84(7) : 3134-3146.
  • 2Kuo L, Godeke GJ, Raamsman MJ, Masters PS, Rottier PJ. Retargeting of coronavirus by substitution of the spike glycoprotein ectodomain: crossing the host cell species bar- rier [J]. J Virol, 2000, 74(3): 1393-1406.
  • 3Woo PC, Lau SK, Lam CS, Lau CC, Tsang AK, Lau JH, Bai R, Teng JL, Tsang CC, Wang M, Zheng BJ, Chan KH, Yuen KY. Discovery of seven novel mammalian and a- vian coronaviruses in the genus deltacoronavirus supports bat coronaviruses as the gene source of alphacoronavirus and be- tacoronavirus and avian coronaviruses as the gene source of gammacoronavirus and deltacoronavirus [J]. J Virol, 2012, 86(7) : 3995-4008.
  • 4Perlman S, Zhao J. Human coronavirus EMC is not the same as severe acute respiratory syndrome coronavirus [J]. MBio, 2013, 4(1) : e00002- e00013.
  • 5Belouzard S, Millet JK, Licitra BN, Whittaker GR. Mecha- nisms of coronavirus cell entry mediated by the viral spike protein [J]. Viruses, 2012, 4(6): 1011-1033.
  • 6Woo PC, Lau SK, Huang Y, Yuen KY. Coronavirus diver- sity, phylogeny and interspecies jumping [J]. Exp Biol Med (Maywood), 2009, 234(10) : 1117-1127.
  • 7Heald-Sargent T, Gallagher T. Ready, set, fuse The coro- navirus spike protein and acquisition of fusion competence[J].Viruses, 2012, 4(4): 557-580.
  • 8Yang J, LvJ, Wang Y, Gao S, Yao Q, Qu D, Ye R. Rep- lication of murine coronavirus requires multiple cysteines in the endodomain of spike protein [J]. Virology, 2012, 427 (2) :98-106.
  • 9Bosch BJ, van der Zee R, de Haan CA, Rottier PJ. The coronavirus spike protein is a class I virus fusion protein: structural and functional characterization of the fusion core complex[J]. J Virol, 2003, 77(16): 8801-8811.
  • 10Enjuanes L, Almazdn F, Sola I, Zfifiiga S, Alvarez E, Reguera J, Capiscol C. Biochemical aspects of coronavirus replication [J].Adv Exp Med Biol, 2006, 581:13-24.

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