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首页> 外文期刊>Molecular Plant-Microbe Interactions >Expression of the Baculovirus p35 Protein in Tobacco Affects Cell Death Progression and Compromises N Gene-Mediated Disease Resistance Response to Tobacco mosaic virus
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Expression of the Baculovirus p35 Protein in Tobacco Affects Cell Death Progression and Compromises N Gene-Mediated Disease Resistance Response to Tobacco mosaic virus

机译:杆状病毒p35蛋白在烟草中的表达影响细胞死亡进程并损害N基因介导的对烟草花叶病毒的抗病性

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摘要

The p35 protein from baculovirus is a broad-range caspase inhibitor and suppresses programmed cell death in animals. We report here the effects of transgenic expression in tobacco of the p35 protein during the hypersensitive response (HR). Expression of p35 causes partial inhibition of nonhost HR triggered by bacteria and gene-for-gene HR triggered by virus. Infection of p35-expressing tobacco plants with Tobacco mosaic virus (TMV) disrupts N -mediated disease resistance, causing systemic spreading of the virus within a resistant background. Mutant variants altered in aspartate residues within the loop region of p35 are inefficient substrates for caspases in vitro, and they do not suppress caspase proteolytic activity in animal systems. Tobacco plants expressing these mutant variants of the p35 protein do not show inhibition of HR cell death or enhanced virus systemic movement. Thus, HR inhibition and TMV systemic spreading phenotype in p35-expressing plants correlate with the ability of the p35 protein to suppress caspase activity in animal systems. In addition, a C-terminal truncated variant of p35 is unable to suppress cell death in animals as well as HR cell death in transgenic tobacco. Our results provide evidence for the participation of caspase-like proteases during the HR. In addition, they suggest that timely activation of cell death is necessary for effective TMV containment within the primary infection site.
机译:杆状病毒的p35蛋白是一种广泛的半胱天冬酶抑制剂,可抑制动物的程序性细胞死亡。我们在这里报告了过敏反应(HR)过程中p35蛋白在烟草中转基因表达的影响。 p35的表达可部分抑制细菌触发的非宿主HR和病毒触发的基因对基因HR。用烟草花叶病毒(TMV)感染表达p35的烟草植物会破坏N介导的抗病性,从而导致该病毒在抗性背景中的系统性传播。 p35环状区域内天冬氨酸残基中发生改变的突变变体在体外不能有效用于胱天蛋白酶,并且它们在动物系统中不抑制胱天蛋白酶的蛋白水解活性。表达这些p35蛋白突变体的烟草植株未显示出对HR细胞死亡的抑制或病毒全身运动的增强。因此,在表达p35的植物中HR抑制和TMV全身性传播表型与p35蛋白在动物系统中抑制胱天蛋白酶活性的能力有关。另外,p35的C末端截短变体不能抑制动物中的细胞死亡以及转基因烟草中的HR细胞死亡。我们的结果提供了证据表明在心律失常期间胱天蛋白酶样蛋白酶的参与。此外,他们建议及时激活细胞死亡对于有效地将TMV遏制在原发感染位点是必要的。

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