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恰加斯病:克氏锥虫核糖体P0抗原蛋白三维结构的同源模型

Chagas disease: a homology model for the three-dimensional structure of the Trypanosoma cruzi ribosomal P0 antigenic protein.

作者信息

Gomez Barroso Juan Arturo, Aguilar Carlos Fernando

机构信息

Laboratorio de Biología Molecular Estructural; Facultad de Química, Bioquímica y Farmacia, Universidad Nacional de San Luis, San Luis, Argentina,

出版信息

Eur Biophys J. 2014 Sep;43(8-9):361-6. doi: 10.1007/s00249-014-0967-8. Epub 2014 Jul 2.

Abstract

Ribosomal P proteins form a "stalk" complex in the large subunit of the ribosomes. In Trypanosoma cruzi, the etiological agent of Chagas disease, the complex is formed by five P protein members: TcP0, TcP1α, TcP1β, TcP2α and TcP2β. The TcP0 protein has 34 kDa, and TcP1 and TcP2 proteins have 10 kDa. The structure of T. cruzi P0 and the stalk complex TcP0-TcP1α-TcP1β-TcP2α-TcP2β have not been solved to date. In this work, we constructed a three-dimensional molecular model for TcP0 using homology modeling as implemented in the MODELLER 9v12 software. The model was constructed using different templates: the X-ray structures of the protein P0 from Pirococcus horikoshii, a segment from the Danio renio Ca(+2)/K(+) channel and the C-terminal peptide (C13) from T. cruzi ribosomal P2 protein; the Cryo-EM structure of Triticum aestivum P0 protein and the NMR structure of Homo sapiens P1 ribosomal protein. TcP0 has a 200-residue-long N-terminal, which is an α/β globular stable domain, and a flexible C-terminal, 120-residue-long domain. The molecular surface electrostatic potential and hydrophobic surface were calculated. The surface properties are important for the C-terminal's antigenic properties. They are also responsible for P0-specific binding to RNA26S and the binding to the P1-P2 proteins. We explored and identified protein interactions that may be involved in conformational stability. The structure proposed in this work represents a first structural report for the TcP0 protein.

摘要

核糖体P蛋白在核糖体大亚基中形成一个“柄”状复合体。在恰加斯病的病原体克氏锥虫中,该复合体由五个P蛋白成员组成:TcP0、TcP1α、TcP1β、TcP2α和TcP2β。TcP0蛋白分子量为34 kDa,TcP1和TcP2蛋白分子量为10 kDa。迄今为止,克氏锥虫P0以及柄状复合体TcP0-TcP1α-TcP1β-TcP2α-TcP2β的结构尚未得到解析。在这项研究中,我们使用MODELLER 9v12软件中实现的同源建模方法构建了TcP0的三维分子模型。该模型构建使用了不同的模板:来自堀越氏火球菌的P0蛋白的X射线结构、斑马鱼Ca(+2)/K(+)通道的一个片段以及克氏锥虫核糖体P2蛋白的C末端肽(C13);普通小麦P0蛋白的冷冻电镜结构以及智人核糖体P1蛋白的核磁共振结构。TcP0有一个由200个残基组成的N末端,它是一个α/β球状稳定结构域,还有一个灵活的C末端,由120个残基组成。计算了分子表面静电势和疏水表面。表面性质对C末端的抗原性质很重要。它们还负责P0与26S RNA的特异性结合以及与P1-P2蛋白的结合。我们探索并确定了可能参与构象稳定性的蛋白质相互作用。这项工作中提出的结构代表了关于TcP0蛋白的首个结构报告。

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