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苜蓿花叶病毒基因组在非转基因植物和原生质体中被病毒外壳蛋白激活。对保护模型进行了生化测试。

Activation of the alfalfa mosaic virus genome by viral coat protein in non-transgenic plants and protoplasts. The protection model biochemically tested.

作者信息

Houwing C J, Jaspars E M

机构信息

Institute of Molecular Plant Sciences, Gorlaeus Laboratories, Leiden University, The Netherlands.

出版信息

Arch Virol. 2000;145(1):13-35. doi: 10.1007/s007050050002.

DOI:10.1007/s007050050002
PMID:10664403
Abstract

In non-transgenic host plants and protoplasts alfalfa mosaic virus displays a strong need for coat protein when starting an infection cycle. The "protection model" states that the three viral RNAs must have a few coat protein subunits at their 3' termini in order to protect them in the host cell against degradation by 3'- to- 5' exoribonucleases [Neeleman L, Van der Vossen EAG, Bol JF (1993) Virology 196: 883-887]. We demonstrated that the naked genome RNAs are slightly infectious, if the inoculation is done at very high concentrations, or if it is preceded by an additional inoculation with the RNAs 1 and 2 (encoding subunits for the viral RNA polymerase). This could mean that the necessity for protection by coat protein is lost if the RNAs in large quantities can overcome the activity of the degrading enzymes, or are protected by association with the RNA polymerase, respectively. However, after having tested in protoplasts the survival of separately preinoculated naked RNA 1 during several hours before RNA 2 was inoculated, on the one hand, or of simultaneously inoculated RNAs 1 and 2, with cycloheximide in the medium during the first hours after inoculation, on the other hand, we had to conclude that the viral genome RNAs are quite stable in the cell in the absence of coat protein or RNA polymerase, respectively. This invalidates the protection model. Accommodation of the above findings by our published "messenger release model" for genome activation [Houwing CJ, Jaspars EMJ (1993) Biochimie 75: 617-621] is discussed.

摘要

在非转基因宿主植物和原生质体中,苜蓿花叶病毒在开始感染周期时对衣壳蛋白有强烈需求。“保护模型”指出,三种病毒RNA在其3'末端必须有一些衣壳蛋白亚基,以便在宿主细胞中保护它们免受3'至5'外切核糖核酸酶的降解[Neeleman L, Van der Vossen EAG, Bol JF (1993) Virology 196: 883 - 887]。我们证明,如果以非常高的浓度进行接种,或者在接种之前先用RNA 1和RNA 2(编码病毒RNA聚合酶的亚基)进行额外接种,那么裸露的基因组RNA具有轻微的感染性。这可能意味着,如果大量的RNA能够克服降解酶的活性,或者分别与RNA聚合酶结合而受到保护,那么衣壳蛋白保护的必要性就会丧失。然而,一方面,在原生质体中测试了在接种RNA 2之前分别预先接种的裸露RNA 1在几个小时内的存活情况;另一方面,在接种后的最初几个小时内在培养基中加入放线菌酮测试了同时接种的RNA 1和RNA 2的存活情况,我们不得不得出结论,在分别不存在衣壳蛋白或RNA聚合酶的情况下,病毒基因组RNA在细胞中相当稳定。这使保护模型无效。讨论了我们已发表的用于基因组激活的“信使释放模型”[Houwing CJ, Jaspars EMJ (1993) Biochimie 75: 617 - 621]如何适应上述发现。

相似文献

1
Activation of the alfalfa mosaic virus genome by viral coat protein in non-transgenic plants and protoplasts. The protection model biochemically tested.苜蓿花叶病毒基因组在非转基因植物和原生质体中被病毒外壳蛋白激活。对保护模型进行了生化测试。
Arch Virol. 2000;145(1):13-35. doi: 10.1007/s007050050002.
2
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In vitro evidence that the coat protein of alfalfa mosaic virus plays a direct role in the regulation of plus and minus RNA synthesis: implications for the life cycle of alfalfa mosaic virus.体外证据表明苜蓿花叶病毒的外壳蛋白在正链和负链RNA合成调控中起直接作用:对苜蓿花叶病毒生命周期的影响
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A genome-activating N-terminal coat protein peptide of alfalfa mosaic virus is able to activate infection by RNAs 1, 2 and 3 but not by RNAs 1 and 2. Further support for the messenger release hypothesis.苜蓿花叶病毒的一种基因组激活型N端衣壳蛋白肽能够激活RNA 1、2和3介导的感染,但不能激活RNA 1和2介导的感染。这为信使释放假说提供了进一步的支持。
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Cis-acting functions of alfalfa mosaic virus proteins involved in replication and encapsidation of viral RNA.苜蓿花叶病毒蛋白在病毒RNA复制和衣壳化过程中的顺式作用功能。
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7
Natural minus-strand RNAs of alfalfa mosaic virus as in vitro templates for viral RNA polymerase. 3'-terminal non-coded guanosine and coat protein are insufficient factors for full-size plus-strand synthesis.苜蓿花叶病毒的天然负链RNA作为病毒RNA聚合酶的体外模板。3'-末端非编码鸟苷和衣壳蛋白对于全长正链合成而言是不充分的因素。
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High-affinity RNA-binding domains of alfalfa mosaic virus coat protein are not required for coat protein-mediated resistance.苜蓿花叶病毒外壳蛋白的高亲和力RNA结合结构域对于外壳蛋白介导的抗性并非必需。
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Genome activation in alfamo- and ilarviruses.苜蓿花叶病毒属和等轴不稳环斑病毒属中的基因组激活
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Coat protein stimulates replication complexes of alfalfa mosaic virus to produce virion RNAs in vitro.
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引用本文的文献

1
Alfalfa mosaic virus coat protein bridges RNA and RNA-dependent RNA polymerase in vitro.苜蓿花叶病毒外壳蛋白在体外连接RNA与RNA依赖的RNA聚合酶。
Virology. 2007 Jul 20;364(1):214-26. doi: 10.1016/j.virol.2007.02.026. Epub 2007 Apr 2.
2
Coat protein activation of alfalfa mosaic virus replication is concentration dependent.苜蓿花叶病毒复制的外壳蛋白激活是浓度依赖性的。
J Virol. 2005 May;79(9):5752-61. doi: 10.1128/JVI.79.9.5752-5761.2005.
3
Spatial determinants of the alfalfa mosaic virus coat protein binding site.苜蓿花叶病毒外壳蛋白结合位点的空间决定因素。
RNA. 2004 Jan;10(1):48-58. doi: 10.1261/rna.5154104.
4
Translation of a nonpolyadenylated viral RNA is enhanced by binding of viral coat protein or polyadenylation of the RNA.病毒衣壳蛋白的结合或RNA的聚腺苷酸化可增强非聚腺苷酸化病毒RNA的翻译。
Proc Natl Acad Sci U S A. 2001 Dec 4;98(25):14286-91. doi: 10.1073/pnas.251542798. Epub 2001 Nov 20.