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植物致病细菌中III型依赖性harpin蛋白的淀粉样蛋白生成

Amyloidogenesis of type III-dependent harpins from plant pathogenic bacteria.

作者信息

Oh Jonghee, Kim Jung-Gun, Jeon Eunkyung, Yoo Chang-Hyuk, Moon Jae Sun, Rhee Sangkee, Hwang Ingyu

机构信息

Department of Agricultural Biotechnology and Center for Agricultural Biomaterials, Seoul National University, Seoul 151-921, Korea.

出版信息

J Biol Chem. 2007 May 4;282(18):13601-9. doi: 10.1074/jbc.M602576200. Epub 2007 Feb 21.

Abstract

Harpins are heat-stable, glycine-rich type III-secreted proteins produced by plant pathogenic bacteria, which cause a hypersensitive response (HR) when infiltrated into the intercellular space of tobacco leaves; however, the biochemical mechanisms by which harpins cause plant cell death remain unclear. In this study, we determined the biochemical characteristics of HpaG, the first harpin identified from a Xanthomonas species, under plant apoplast-like conditions using electron microscopy and circular dichroism spectroscopy. We found that His(6)-HpaG formed biologically active spherical oligomers, protofibrils, and beta-sheet-rich fibrils, whereas the null HR mutant His(6)-HpaG(L50P) did not. Biochemical analysis and HR assay of various forms of HpaG demonstrated that the transition from an alpha-helix to beta-sheet-rich fibrils is important for the biological activity of protein. The fibrillar form of His(6)-HpaG is an amyloid protein based on positive staining with Congo red to produce green birefringence under polarized light, increased protease resistance, and beta-sheet fibril structure. Other harpins, such as HrpN from Erwinia amylovora and HrpZ from Pseudomonas syringae pv. syringae, also formed curvilinear protofibrils or fibrils under plant apoplast-like conditions, suggesting that amyloidogenesis is a common feature of harpins. Missense and deletion mutagenesis of HpaG indicated that the rate of HpaG fibril formation is modulated by a motif present in the C terminus. The plant cytotoxicity of HpaG is unique among the amyloid-forming proteins that occur in several microorganisms. Structural and morphological analogies between HpaG and disease-related amyloidogenic proteins, such as Abeta protein, suggest possible common biochemical characteristics in the induction of plant and animal cell death.

摘要

过敏蛋白是由植物致病细菌产生的热稳定、富含甘氨酸的III型分泌蛋白,当注入烟草叶细胞间隙时会引起超敏反应(HR);然而,过敏蛋白导致植物细胞死亡的生化机制仍不清楚。在本研究中,我们利用电子显微镜和圆二色光谱法,在类植物质外体条件下确定了从一种黄单胞菌属物种中鉴定出的首个过敏蛋白HpaG的生化特性。我们发现His(6)-HpaG形成了具有生物活性的球形寡聚体、原纤维和富含β-折叠的纤维,而无效HR突变体His(6)-HpaG(L50P)则没有。对各种形式的HpaG进行生化分析和HR检测表明,从α-螺旋向富含β-折叠的纤维的转变对蛋白质的生物活性很重要。His(6)-HpaG的纤维形式是一种淀粉样蛋白,基于刚果红阳性染色在偏振光下产生绿色双折射、增加蛋白酶抗性以及β-折叠纤维结构。其他过敏蛋白,如来自梨火疫欧文氏菌的HrpN和来自丁香假单胞菌丁香致病变种的HrpZ,在类植物质外体条件下也形成了曲线状原纤维或纤维,这表明淀粉样蛋白形成是过敏蛋白的一个共同特征。HpaG的错义突变和缺失诱变表明,HpaG纤维形成的速率受C末端存在的一个基序调节。HpaG的植物细胞毒性在几种微生物中出现的形成淀粉样蛋白的蛋白质中是独特的。HpaG与疾病相关的淀粉样蛋白生成蛋白(如β-淀粉样蛋白)之间的结构和形态类比表明,在诱导植物和动物细胞死亡方面可能存在共同的生化特性。

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