首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Structure comparison of human glioma pathogenesis-related protein GliPR and the plant pathogenesis-related protein P14a indicates a functional link between the human immune system and a plant defense system
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Structure comparison of human glioma pathogenesis-related protein GliPR and the plant pathogenesis-related protein P14a indicates a functional link between the human immune system and a plant defense system

机译:人脑胶质瘤发病相关蛋白GliPR和植物发病相关蛋白P14a的结构比较表明人免疫系统与植物防御系统之间的功能联系

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摘要

The human glioma pathogenesis-related protein (GliPR) is highly expressed in the brain tumor glioblastoma multiforme and exhibits 35% amino acid sequence identity with the tomato pathogenesis-related (PR) protein P14a, which has an important role for the plant defense system. A molecular model of GliPR was computed with the distance geometry program diana on the basis of a P14a–GliPR sequence alignment and a set of 1,200 experimental NMR conformational constraints collected with P14a. The GliPR structure is represented by a group of 20 conformers with small residual diana target function values, low amber-energies after restrained energy-minimization with the program opal, and an average rms deviation relative to the mean of 1.6 Å for the backbone heavy atoms. Comparison of the GliPR model with the P14a structure lead to the identification of a common partially solvent-exposed spatial cluster of four amino acid residues, His-69, Glu-88, Glu-110, and His-127 in the GliPR numeration. This cluster is conserved in all known plant PR proteins of class 1, indicating a common putative active site for GliPR and PR-1 proteins and thus a functional link between the human immune system and a plant defense system.
机译:人神经胶质瘤发病相关蛋白(GliPR)在多种形式的脑肿瘤胶质母细胞瘤中高表达,与番茄发病相关蛋白(PR)蛋白P14a具有35%的氨基酸序列同一性,这对植物防御系统具有重要作用。根据距离几何程序diana,基于P14a–GliPR序列比对和一组由P14a收集的1,200个实验NMR构象约束条件,计算出了GliPR分子模型。 GliPR结构由一组20个构象异构体表示,这些构象异构体具有较小的残留diana目标功能值,在使用程序蛋白石进行约束的能量最小化后具有较低的琥珀色能量以及相对于主链重原子的平均值1.6Å的均方根偏差。 GliPR模型与P14a结构的比较导致鉴定出在GliPR计数中常见的部分溶剂暴露的四个氨基酸残基的空间簇,即His-69,Glu-88,Glu-110和His-127。该簇在所有已知的1类植物PR蛋白中都是保守的,表明GliPR和PR-1蛋白具有共同的假定活性位点,因此是人类免疫系统与植物防御系统之间的功能联系。

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