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首页> 外文期刊>Biochimica et Biophysica Acta. General Subjects >A mechanistic model may explain the dissimilar biological efficiency of the fungal elicitors cerato-platanin and cerato-populin
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A mechanistic model may explain the dissimilar biological efficiency of the fungal elicitors cerato-platanin and cerato-populin

机译:机械模型可以解释真菌Elictors Cerato-platanin和Cerato-populin的不同生物学效率

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摘要

Among their various functions, the members of the cerato-platanin family can stimulate plants' defense responses and induce resistance against microbial pathogens. Recent results suggest that conserved loops, also involved in chitin binding, might be a structural motif central for their eliciting activity. Here, we focus on cerato-platanin and its orthologous cerato-populin, searching for a rationale of their diverse efficiency to elicit plants' defense and to interact with oligosaccharides. A 3D model of cerato-populin has been generated by homology modeling using the NMR-derived cerato-platanin structure as template, and it has been validated by fitting with residual dipolar couplings. Loops beta 1-beta 2 and beta 2-beta 3 have been indicated as important for some CPPs members to express their biological function. When compared to cerato-platanin, in cerato-populin they present two mutations and an insertion that significantly modify their electrostatic surface. NMR relaxation experiments point to a reduced conformational plasticity of cerato-populin loops with respect to the ones of cerato-platanin. The different electrostatic surface of the loops combined with a distinct network of intra-molecular interactions are expected to be factors that, by leading to a diverse spatial organization and dissimilar collective motions, can regulate the eliciting efficacy of the two proteins and their affinity for oligosaccharides.
机译:在各种功能中,Cerato-Platanin家族的成员可以刺激植物的防御反应并诱导对微生物病原体的抵抗力。最近的结果表明,水平循环,也参与了几丁质结合,这可能是其引发活动的结构主题中心。在这里,我们专注于Cerato-platanin及其彻底单身的Cerato-populin,寻求引发植物防御和与低聚糖相互作用的不同效率的理由。使用NMR衍生的Cerato-Platanin结构作为模板,通过与剩余双极联轴器配合验证,通过与模板进行了同源性建模而产生了Cerato-populin的3D模型。 LOOPSβ1-BETA 2和BETA 2-BETA 3已被表明对某些CPPS成员表明表达其生物学功能。与Cerato-platain相比,在Cerato-populin中,它们存在两个突变和插入,可显着改变它们的静电表面。 NMR弛豫实验点指向Cerato-platain的Cerato-populin循环的减小的构象可塑性。环路的不同静电表面与分子间相互作用的不同网络相结合,预计是因素,即通过导致各种空间组织和不同的集体运动,可以调节两种蛋白质的引发功效及其对寡糖的亲和力。

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