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首页> 外文期刊>Plant Physiology >Lectin Receptor Kinases Participate in Protein-Protein Interactions to Mediate Plasma Membrane-Cell Wall Adhesions in Arabidopsis
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Lectin Receptor Kinases Participate in Protein-Protein Interactions to Mediate Plasma Membrane-Cell Wall Adhesions in Arabidopsis

机译:凝集素受体激酶参与蛋白-蛋白质相互作用,以介导拟南芥中的质膜细胞壁粘附。

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摘要

Interactions between plant cell walls and plasma membranes are essential for cells to function properly, but the molecules that mediate the structural continuity between wall and membrane are unknown. Some of these interactions, which are visualized upon tissue plasmolysis in Arabidopsis (Arabidopsis thaliana), are disrupted by the RGD (arginine-glycine-aspartic acid) tripeptide sequence, a characteristic cell adhesion motif in mammals. In planta induced-O (IPI-O) is an RGD-containing protein from the plant pathogen Phytophthora infestans that can disrupt cell wall-plasma membrane adhesions through its RGD motif. To identify peptide sequences that specifically bind the RGD motif of the IPI-O protein and potentially play a role in receptor recognition, we screened a heptamer peptide library displayed in a filamentous phage and selected two peptides acting as inhibitors of the plasma membrane RGD-binding activity of Arabidopsis. Moreover, the two peptides also disrupted cell wall-plasma membrane adhesions. Sequence comparison of the RGD-binding peptides with the Arabidopsis proteome revealed 12 proteins containing amino acid sequences in their extracellular domains common with the two RGD-binding peptides. Eight belong to the receptor-like kinase family, four of which have a lectin-like extracellular domain. The lectin domain of one of these, At5g60300, recognized the RGD motif both in peptides and proteins. These results imply that lectin receptor kinases are involved in protein-protein interactions with RGD-containing proteins as potential ligands, and play a structural and signaling role at the plant cell surfaces.
机译:植物细胞壁与质膜之间的相互作用对于细胞正常运行至关重要,但是介导壁与膜之间结构连续性的分子尚不清楚。这些相互作用中的一些在拟南芥(Arabidopsis thaliana)的组织溶质作用后可见,但被RGD(精氨酸-甘氨酸-天冬氨酸)三肽序列(哺乳动物的特征性细胞粘附基序)破坏。在植物中,诱导型O(IPI-O)是来自植物病原疫病疫霉的含RGD蛋白质,可通过其RGD图案破坏细胞壁与质膜的粘附。为了鉴定特异性结合IPI-O蛋白的RGD基序并可能在受体识别中发挥作用的肽序列,我们筛选了在丝状噬菌体中展示的七聚体肽库,并选择了两种作为质膜RGD结合抑制剂的肽拟南芥的活性。此外,这两种肽还破坏了细胞壁-质膜的粘附。 RGD结合肽与拟南芥蛋白质组的序列比较发现,在12种蛋白质的胞外域中含有两个RGD结合肽共有的氨基酸序列。八个属于受体样激酶家族,其中四个具有凝集素样细胞外结构域。其中之一At5g60300的凝集素结构域可识别肽和蛋白质中的RGD基序。这些结果暗示凝集素受体激酶参与与作为潜在配体的含RGD的蛋白质的蛋白质-蛋白质相互作用,并在植物细胞表面起结构和信号传导作用。

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