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甜菜(Beta vulgaris L.)核糖体失活蛋白BE27对指状青霉绿霉的抗真菌活性。

Antifungal activity of the ribosome-inactivating protein BE27 from sugar beet (Beta vulgaris L.) against the green mould Penicillium digitatum.

作者信息

Citores Lucía, Iglesias Rosario, Gay Carolina, Ferreras José Miguel

机构信息

Department of Biochemistry and Molecular Biology and Physiology, Faculty of Sciences, University of Valladolid, 47011, Valladolid, Spain.

Laboratory of Research on Proteins, Faculty of Exact and Natural Sciences and Surveying, National University of the Northeast (UNNE), 3400, Corrientes, Argentina.

出版信息

Mol Plant Pathol. 2016 Feb;17(2):261-71. doi: 10.1111/mpp.12278. Epub 2015 Jun 18.

Abstract

The ribosome-inactivating protein BE27 from sugar beet (Beta vulgaris L.) leaves is an apoplastic protein induced by signalling compounds, such as hydrogen peroxide and salicylic acid, which has been reported to be involved in defence against viruses. Here, we report that, at a concentration much lower than that present in the apoplast, BE27 displays antifungal activity against the green mould Penicillium digitatum, a necrotrophic fungus that colonizes wounds and grows in the inter- and intracellular spaces of the tissues of several edible plants. BE27 is able to enter into the cytosol and kill fungal cells, thus arresting the growth of the fungus. The mechanism of action seems to involve ribosomal RNA (rRNA) N-glycosylase activity on the sarcin-ricin loop of the major rRNA which inactivates irreversibly the fungal ribosomes, thus inhibiting protein synthesis. We compared the C-terminus of the BE27 structure with antifungal plant defensins and hypothesize that a structural motif composed of an α-helix and a β-hairpin, similar to the γ-core motif of defensins, might contribute to the specific interaction with the fungal plasma membranes, allowing the protein to enter into the cell.

摘要

来自甜菜(Beta vulgaris L.)叶片的核糖体失活蛋白BE27是一种质外体蛋白,可由过氧化氢和水杨酸等信号化合物诱导产生,据报道它参与抗病毒防御。在此,我们报道,在远低于质外体中浓度的情况下,BE27对指状青霉(Penicillium digitatum)这种绿色霉菌表现出抗真菌活性,指状青霉是一种坏死营养型真菌,可在伤口处定殖并在多种可食用植物组织的细胞间和细胞内空间生长。BE27能够进入细胞质溶胶并杀死真菌细胞,从而抑制真菌生长。其作用机制似乎涉及对主要核糖体RNA(rRNA)的肌动蛋白-蓖麻毒素环上的rRNA N-糖基化酶活性,这种活性会不可逆地使真菌核糖体失活,从而抑制蛋白质合成。我们将BE27结构的C末端与抗真菌植物防御素进行了比较,并推测由α-螺旋和β-发夹组成的结构基序,类似于防御素的γ-核心基序,可能有助于与真菌质膜的特异性相互作用,使该蛋白能够进入细胞。

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