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鹰嘴豆诱导型病程相关蛋白 4 的活性位点预测及其体外 DNA 酶和 RNA 酶活性研究

In silico prediction of active site and in vitro DNase and RNase activities of Helicoverpa-inducible pathogenesis related-4 protein from Cicer arietinum.

机构信息

Department of Botany, Hans Raj College, University of Delhi, Delhi 110007, India.

Interdisciplinary Centre for Plant Genomics, Department of Plant Molecular Biology, Delhi University South Campus, New Delhi 110021, India.

出版信息

Int J Biol Macromol. 2018 Jul 1;113:869-880. doi: 10.1016/j.ijbiomac.2018.03.027. Epub 2018 Mar 7.

DOI:10.1016/j.ijbiomac.2018.03.027
PMID:29524486
Abstract

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.

摘要

植物具有先天免疫系统,使它们能够保护自己免受害虫和病原体的侵害。病程相关(PR)蛋白的参与是诱导植物防御反应的最重要事件之一。在此,我们报告了鹰嘴豆中一种类 II PR-4 蛋白 CaHaPR-4 的特性。CaHaPR-4 蛋白的生物信息学分析表明存在信号肽、barwin 结构域,但缺乏几丁质结合位点/hevein 结构域。重组 CaHaPR-4 具有 RNase 和二价离子依赖性 DNase 活性。此外,通过分析突变的 CaHaPR-4 与改变的活性位点以及核糖核酸酶抑制剂 5'ADP 和 DNase 抑制剂 2-硝基-5-硫氰基苯甲酸(NTCB)之间的相互作用,鉴定并证实了 RNA 和 DNA 结合位点。使用 3D 建模和对接研究。此外,CaHaPR-4 表现出抗真菌活性以及对幼龄豆荚象幼虫的生长抑制特性。据我们所知,这是首例同时具有 RNase、DNase、抗真菌和最重要的昆虫生长抑制特性的 PR-4 报道。

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