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首页> 外文期刊>Molecular biotechnology >Cerato-Populin and Cerato-Platanin, Two Non-Catalytic Proteins from Phytopathogenic Fungi, Interact with Hydrophobic Inanimate Surfaces and Leaves
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Cerato-Populin and Cerato-Platanin, Two Non-Catalytic Proteins from Phytopathogenic Fungi, Interact with Hydrophobic Inanimate Surfaces and Leaves

机译:致癌性真菌中的两种非催化蛋白,Cerato-Populin和Cerato-Platanin,与疏水性无生命表面和叶片相互作用

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摘要

Based on sequence homology, several fungal Cys-rich secreted proteins have been grouped in the ceratoplatanin(CP) family, which comprises at least 40 proteins involved mainly in eliciting defense-related responses. The core member of this family is cerato-platanin, a moderately hydrophobic protein with a double ψ-β barrel fold. CP and the recently identified orthologous cerato-populin (Pop1) are involved in host-fungus interaction, and can be considered non-catalytic fungal PAMPs. CP is more active in inducing defense when in an aggregated conformation than in its native form, but little is known about other CP-orthologous proteins. Here, we cloned, expressed, and purified recombinant Pop1, which was used to characterize the protein aggregates. Our results suggest that the unfolded, self-assembled Pop1 is more active in inducing defense, and that the unfolding process can be induced by interaction with hydrophobic inanimate surfaces such as Teflon, treated mica, and gold sheets. In vivo, we found that both CP and Pop1 interact with the hydrophobic cuticle of leaves. Therefore, we propose that the interaction of these proteins with host cuticle waxes could induce unfolding and consequently trigger their PAMP-like activity.
机译:基于序列同源性,在ceratoplatanin(CP)家族中已将几种富含Cys的真菌分泌蛋白分组,该家族包含至少40种主要引起防御相关反应的蛋白。该家族的核心成员是cerato-platanin,一种中等的疏水性蛋白质,具有两倍的ψ-β桶形折叠。 CP和最近确定的直系cerato-populin(Pop1)参与宿主-真菌相互作用,可以被认为是非催化性真菌PAMPs。当以聚集构象比其天然形式时,CP在诱导防御中更活跃,但是对其他CP直系同源蛋白知之甚少。在这里,我们克隆,表达和纯化重组Pop1,用于表征蛋白质聚集体。我们的结果表明,未折叠的,自组装的Pop1在诱导防御中更为活跃,并且可通过与疏水性无生命表面(如聚四氟乙烯,处理过的云母和金片)相互作用来诱导展开过程。在体内,我们发现CP和Pop1都与叶子的疏水性表皮相互作用。因此,我们建议这些蛋白质与宿主表皮蜡的相互作用可以诱导展开,并因此触发其PAMP样活性。

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