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首页> 外文期刊>Plant Physiology and Biochemistry >Cloning and expression of pathogenesis-related protein 4 from jelly fig (Ficus awkeotsang Makino) achenes associated with ribonuclease, chitinase and anti-fungal activities
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Cloning and expression of pathogenesis-related protein 4 from jelly fig (Ficus awkeotsang Makino) achenes associated with ribonuclease, chitinase and anti-fungal activities

机译:与核糖核酸酶,几丁质酶和抗真菌活性相关的果冻无花果中与病程相关的蛋白4的克隆和表达

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摘要

A cDNA fragment (FaPR4) encoding a class I pathogenesis-related protein 4 (PR-4) from Ficus awkeotsang was obtained by PCR cloning. Plant PR-4s were grouped into class I and II, differing by the presence of ChtBD and hinge. The predicted mature FaPR4 comprises N-terminal chitin-binding domain (ChtBD), hinge, Barwin domain and C-terminal extension. FaPR4-C, an N-terminal truncated form of FaPR4, was designed to mimic the structural feature of class II PR-4s. FaPR4 and FaPR4-C were over-expressed in yeast Pichia pastoris, and both recombinants exhibited RNase and anti-fungal activities. To our knowledge, it is the first report that FaPR4, a member of class I PR-4s has RNase activity as class II. FaPR4 possesses better anti-fungal activities toward Fusarium oxysporum and Sclerotium rolfsii than FaPR4-C. Heat-treated FaPR4 remained RNase and anti-fungal activities; while heat-treated FaPR4-C lost those activities. Therefore, ChtBD of FaPR4 may not only contribute to its anti-fungal but also improve the thermal stability of protein. It also implied the correlation of RNase activity with anti-fungal activity of FaPR4-C. Furthermore, FaPR4 was detected to have weak but significant chitinase activity, and its chitinase activity was reduced after heat treatment. The chitinase activity by FaPR4-C was much lower than FaPR4.
机译:通过PCR克隆获得了来自Ficus awkeotsang的编码I类致病相关蛋白4(PR-4)的cDNA片段(FaPR4)。植物PR-4分为I类和II类,不同之处在于存在ChtBD和铰链。预测的成熟FaPR4包含N端几丁质结合结构域(ChtBD),铰链,Barwin域和C端延伸。 FaPR4-C是FaPR4的N端截短形式,旨在模拟II类PR-4s的结构特征。 FaPR4和FaPR4-C在酵母毕赤酵母中过度表达,并且两个重组体均显示RNase和抗真菌活性。据我们所知,这是第一份报告,I类PR-4s成员FaPR4具有RNase活性作为II类。与FaPR4-C相比,FaPR4对尖孢镰刀菌和小球菌具有更好的抗真菌活性。热处理过的FaPR4仍具有RNase和抗真菌活性。而经过热处理的FaPR4-C失去了这些活性。因此,FaPR4的ChtBD可能不仅有助于其抗真菌作用,而且还可以改善蛋白质的热稳定性。这也暗示了RNase活性与FaPR4-C的抗真菌活性之间的相关性。此外,检测到FaPR4具有弱但显着的几丁质酶活性,并且在热处理后其几丁质酶活性降低。 FaPR4-C的几丁质酶活性远低于FaPR4。

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