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首页> 外文期刊>Plant physiology >Tomato S1SnRK1 protein interacts with and phosphorylates βC1, a Pathogenesis protein encoded by a geminivirus β-satellite
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Tomato S1SnRK1 protein interacts with and phosphorylates βC1, a Pathogenesis protein encoded by a geminivirus β-satellite

机译:番茄S1SnRK1蛋白与双子叶病毒β卫星编码的致病蛋白βC1相互作用并使其磷酸化

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摘要

The βC1 protein of tomato yellow leaf curl China b-satellite functions as a pathogenicity determinant. To better understand the molecular basis of βC1 in pathogenicity, a yeast two-hybrid screen of a tomato (Solanum lycopersicum) cDNA library was carried out using βC1 as bait. βC1 interacted with a tomato SUCROSE-NONFERMENTING1-related kinase designated as SlSnRK1. Their interaction was confirmed using a bimolecular fluorescence complementation assay in Nicotiana benthamiana cells. Plants overexpressing SnRK1 were delayed for symptom appearance and contained lower levels of viral and satellite DNA, while plants silenced for SnRK1 expression developed symptoms earlier and accumulated higher levels of viral DNA. In vitro kinase assays showed that βC1 is phosphorylated by SlSnRK1 mainly on serine at position 33 and threonine at position 78. Plants infected with βC1 mutants containing phosphorylation-mimic aspartate residues in place of serine-33 and/or threonine-78 displayed delayed and attenuated symptoms and accumulated lower levels of viral DNA, while plants infected with phosphorylation-negative alanine mutants contained higher levels of viral DNA. These results suggested that the SlSnRK1 protein attenuates geminivirus infection by interacting with and phosphorylating the βC1 protein
机译:番茄黄叶卷曲中国b卫星的βC1蛋白起着致病性的作用。为了更好地了解βC1的致病性分子基础,使用βC1作为诱饵对番茄(Solanum lycopersicum)cDNA酵母进行了双杂交筛选。 βC1与番茄SUCROSE-NONFERMENTING1相关的激酶(称为SlSnRK1)相互作用。使用双分子荧光互补测定法在本氏烟草细胞中证实了它们的相互作用。过度表达SnRK1的植物出现症状的时间被延迟,并且含有较低水平的病毒和卫星DNA,而因SnRK1表达而沉默的植物则出现了较早的症状并积累了较高水平的病毒DNA。体外激酶测定法显示,S1SnRK1主要在33位的丝氨酸和78位的苏氨酸上使βC1磷酸化。用含有磷酸化模拟天冬氨酸残基代替丝氨酸33和/或苏氨酸78的βC1突变体感染的植物表现出延迟和减弱。症状和病毒DNA的积累水平较低,而感染了磷酸化阴性的丙氨酸突变体的植物中病毒DNA的水平较高。这些结果表明,SlSnRK1蛋白通过与βC1蛋白相互作用并使其磷酸化来减弱双生病毒的感染。

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