首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >The NMR solution structure of the 30S ribosomal protein S27e encoded in gene RS27_ARCFU of Archaeoglobus fulgidis reveals a novel protein fold
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The NMR solution structure of the 30S ribosomal protein S27e encoded in gene RS27_ARCFU of Archaeoglobus fulgidis reveals a novel protein fold

机译:细足古细菌RS27_ARCFU基因编码的30S核糖体蛋白S27e的NMR溶液结构揭示了新的蛋白折叠

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摘要

The Archaeoglobus fulgidis gene RS27_ARCFU encodes the 30S ribosomal protein S27e. Here, we present the high-quality NMR solution structure of this archaeal protein, which comprises a C4 zinc finger motif of the CX2CX14-16CX2C class. S27e was selected as a target of the Northeast Structural Genomics Consortium (target ID: GR2), and its three-dimensional structure is the first representative of a family of more than 116 homologous proteins occurring in eukaryotic and archaeal cells. As a salient feature of its molecular architecture, S27e exhibits a β-sandwich consisting of two three-stranded sheets with topology B(↓), A(↑), F(↓), and C(↑), D(↓), E(↑). Due to the uniqueness of the arrangement of the strands, the resulting fold was found to be novel. Residues that are highly conserved among the S27 proteins allowed identification of a structural motif of putative functional importance; a conserved hydrophobic patch may well play a pivotal role for functioning of S27 proteins, be it in archaeal or eukaryotic cells. The structure of human S27, which possesses a 26-residue amino-terminal extension when compared with the archaeal S27e, was modeled on the basis of two structural templates, S27e for the carboxy-terminal core and the amino-terminal segment of the archaeal ribosomal protein L37Ae for the extension. Remarkably, the electrostatic surface properties of archaeal and human proteins are predicted to be entirely different, pointing at either functional variations among archaeal and eukaryotic S27 proteins, or, assuming that the function remained invariant, to a concerted evolutionary change of the surface potential of proteins interacting with S27.
机译:fulglodis古细菌基因RS27_ARCFU编码30S核糖体蛋白S27e。在这里,我们介绍了这种古细菌蛋白质的高质量NMR溶液结构,其中包括CX2CX14-16CX2C类的C4锌指基序。 S27e被选为东北结构基因组学联盟的目标(目标ID:GR2),其三维结构是真核细胞和古细菌细胞中超过116种同源蛋白家族的第一个代表。作为其分子结构的显着特征,S27e表现出由两张三链片组成的β三明治,三张片具有拓扑B(↓),A(↑),F(↓)和C(↑),D(↓), E(↑)。由于股线排列的独特性,发现所得的折叠是新颖的。在S27蛋白中高度保守的残基可以鉴定具有假定功能重要性的结构基序。一个保守的疏水膜很可能在S27蛋白的功能中起关键作用,无论是在古细菌细胞还是真核细胞中。人S27的结构与古细菌S27e相比具有26个残基的氨基末端延伸,是基于两个结构模板(古细菌核糖体的羧基末端核心和氨基末端区段)构建了模型蛋白L37Ae为延伸。值得注意的是,古细菌和人类蛋白质的静电表面性质被预测为完全不同,指向古细菌和真核S27蛋白质之间的功能变异,或者假设功能保持不变,则蛋白质表面电位的协调进化变化与S27互动。

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