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Mutational Analysis of Plant Cap-Binding Protein eIF4E Reveals Key Amino Acids Involved in Biochemical Functions and Potyvirus Infection▿

机译:植物帽结合蛋白eIF4E的突变分析揭示了涉及生化功能和杯状病毒感染的关键氨基酸

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摘要

The eukaryotic translation initiation factor 4E (eIF4E) (the cap-binding protein) is involved in natural resistance against several potyviruses in plants. In lettuce, the recessive resistance genes mo11 and mo12 against Lettuce mosaic virus (LMV) are alleles coding for forms of eIF4E unable, or less effective, to support virus accumulation. A recombinant LMV expressing the eIF4E of a susceptible lettuce variety from its genome was able to produce symptoms in mo11 or mo12 varieties. In order to identify the eIF4E amino acid residues necessary for viral infection, we constructed recombinant LMV expressing eIF4E with point mutations affecting various amino acids and compared the abilities of these eIF4E mutants to complement LMV infection in resistant plants. Three types of mutations were produced in order to affect different biochemical functions of eIF4E: cap binding, eIF4G binding, and putative interaction with other virus or host proteins. Several mutations severely reduced the ability of eIF4E to complement LMV accumulation in a resistant host and impeded essential eIF4E functions in yeast. However, the ability of eIF4E to bind a cap analogue or to fully interact with eIF4G appeared unlinked to LMV infection. In addition to providing a functional mutational map of a plant eIF4E, this suggests that the role of eIF4E in the LMV cycle might be distinct from its physiological function in cellular mRNA translation.
机译:真核翻译起始因子4E(eIF4E)(帽结合蛋白)参与了对植物中几种马铃薯病毒的天然抗性。在生菜中,针对生菜花叶病毒(LMV)的隐性抗性基因mo11和mo12是编码eIF4E形式的等位基因,无法或不太有效地支持病毒的积累。从其基因组表达易感生菜品种的eIF4E的重组LMV能够在mo11或mo12品种中产生症状。为了鉴定病毒感染所需的eIF4E氨基酸残基,我们构建了表达eIF4E的重组LMV,其具有影响各种氨基酸的点突变,并比较了这些eIF4E突变体补充抗性植物中LMV感染的能力。为了影响eIF4E的不同生化功能,产生了三种类型的突变:帽结合,eIF4G结合以及与其他病毒或宿主蛋白的推定相互作用。几个突变严重降低了eIF4E补充LMV在抗性宿主中积累的能力,并阻碍了酵母中必需的eIF4E功能。然而,eIF4E结合帽类似物或与eIF4G完全相互作用的能力似乎与LMV感染无关。除了提供植物eIF4E的功能突变图谱外,这还表明eIF4E在LMV循环中的作用可能不同于其在细胞mRNA翻译中的生理功能。

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