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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >In silico prediction of active site and in vitro DNase and RNase activities of Helicoverpa-inducible pathogenesis related-4 protein from Cicer arietinum
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In silico prediction of active site and in vitro DNase and RNase activities of Helicoverpa-inducible pathogenesis related-4 protein from Cicer arietinum

机译:来自Cicer Arietinum的Helicoverpa-Invucience致病症相关-4蛋白的硅硅预测和Helicoverpa-Invucibes致病的RNase活性

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摘要

Plants are endowed with an innate immune system, which enables them to protect themselves from pest and pathogen. The participation of pathogenesis-related (PR) proteins is one of the most crucial events of inducible plant defense response. Herein, we report the characterization of CaHaPR-4, a Helicoverpa-inducible class II PR-4 protein from chickpea. Bioinformatic analysis of CaHaPR-4 protein indicated the presence of a signal peptide, barwin domain but it lacks the chitin-binding site/hevein domain. The recombinant CaHaPR-4 is bestowed with RNase and bivalent ion-dependent DNase activity. Further, the RNA and DNA binding sites were identified and confirmed by analyzing interactions between mutated CaHaPR-4 with the altered active site and ribonuclease inhibitor, 5'ADP and DNase inhibitor, 2 nitro 5 thiocyanobenzoic acid (NTCB) using 3D modeling and docking studies. Moreover, CaHaPR-4 shows antifungal activity as well as growth inhibiting properties against neonatal podborer larvae. To the best of our knowledge, this is the first report of a PR-4 showing RNase, DNase, antifungal and most importantly insect growth inhibiting properties against Helicoverpa armigera simultaneously. (C) 2018 Elsevier B.V. All rights reserved.
机译:植物赋予了一个天生的免疫系统,使他们能够保护自己免受害虫和病原体。致病相关(PR)蛋白的参与是诱导型植物防御反应最重要的事件之一。在此,我们报告了CaHAPR-4的表征,来自鹰嘴豆的Helicoverpa-Imcible II类PR-4蛋白。 CaHAPR-4蛋白的生物信息分析表明存在信号肽,Barwin结构域,但它缺乏几丁质结合位点/ Hevein结构域。重组CaHAPR-4被RNase和二价离子依赖性DNase活性赋予。此外,通过使用3D建模和对接研究分析突变的CaHAPR-4之间的相互作用,通过使用3D建模和对接研究分析突变的CaHaPR-4之间的相互作用,通过改变的活性位点和核糖核酸酶抑制剂,5'ADP和DNA酶抑制剂(NTCB)来鉴定并证实RNA和DNA结合位点。 。此外,CaHAPR-4显示抗真菌活性以及对新生殖民甜菊幼虫的生长抑制性能。据我们所知,这是PR-4的第一个报告,显示RNase,DNase,抗真菌和最重要的昆虫生长抑制与Helicoverpa Armigera的抑制性能。 (c)2018年elestvier b.v.保留所有权利。

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