首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Structure of the human glycogen-associated protein phosphatase 1 regulatory subunit hGM: homology modeling revealed an (alpha/beta)8-barrel-like fold in the multidomain protein.
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Structure of the human glycogen-associated protein phosphatase 1 regulatory subunit hGM: homology modeling revealed an (alpha/beta)8-barrel-like fold in the multidomain protein.

机译:人糖原相关蛋白磷酸酶1调节亚基hGM的结构:同源性建模显示多域蛋白中的(alpha / beta)8桶状折叠。

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摘要

Protein phosphatase 1 (PP1) is widely distributed among tissues and species and acts as a regulator of many important cellular processes. By targeting the catalytic part of PP1 (PP1C) toward particular loci and substrates, regulatory subunits constitute key elements conferring specificity to the holoenzyme. Here, we report the identification of an (alpha/beta)8-barrel-like structure within the N-ter stretch of the human PP1 regulatory subunit hGM, which is part of the family of diverse proteins associated with glycogen metabolism. Protein homology modeling gave rise to a three-dimensional (3D) model for the 381 N-ter residue stretch of hGM, based on sequence similarity with Streptomyces olivochromogenes xylose isomerase, identified by using FASTA. The alignment was subsequently extended by using hydrophobic cluster analysis. The homology-derived model includes the putative glycogen binding area located within the 142-230 domain of hGM as well as a structural characterization of the PP1C interacting domain (segment 51-67). Refinement of the latter by molecular dynamics afforded a topology that is in agreement with previous X-ray studies (Egloff et al., 1997). Finite difference Poisson-Boltzmann calculations performed on the interacting domains of PP1C and hGM confirm the complementarity of the local electrostatic potentials of the two partners. This work highlights the presence of a conserved fold among distant species (mammalian, Caenorhabditis elegans, yeast) and, thus, emphasizes the involvement of PP1 in crucial basic cellular functions.
机译:蛋白磷酸酶1(PP1)广泛分布于组织和物种之间,并充当许多重要细胞过程的调节剂。通过将PP1(PP1C)的催化部分靶向特定基因座和底物,调节亚基构成了赋予全酶特异性的关键元素。在这里,我们报告鉴定的人类PP1调节亚基hGM的N-ter拉伸范围内的(alpha / beta)8桶状结构,这是与糖原代谢相关的多种蛋白质家族的一部分。蛋白质同源性建模基于hFA的链霉菌低聚色原木糖异构酶的序列相似性,产生了hGM的381 N-ter残基延伸的三维(3D)模型。随后通过使用疏水聚类分析扩展比对。同源性模型包括位于hGM 142-230结构域内的推定糖原结合区,以及PP1C相互作用结构域的结构表征(段51-67)。通过分子动力学对后者的改进提供了一种拓扑结构,该拓扑结构与以前的X射线研究相一致(Egloff等,1997)。在PP1C和hGM相互作用域上进行的有限差分Poisson-Boltzmann计算证实了两个伙伴的局部静电势的互补性。这项工作强调了远缘物种(哺乳动物,秀丽隐杆线虫,酵母)中存在保守的折叠,因此强调了PP1参与关键的基本细胞功能。

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