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Nucleoplasmin-like domain of FKBP39 from Drosophila melanogaster forms a tetramer with partly disordered tentacle-like C-terminal segments

机译:来自果蝇的FKBP39的核纤溶酶样结构域形成四聚体其触手样C末端片段无序

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摘要

Nucleoplasmins are a nuclear chaperone family defined by the presence of a highly conserved N-terminal core domain. X-ray crystallographic studies of isolated nucleoplasmin core domains revealed a β-propeller structure consisting of a set of five monomers that together form a stable pentamer. Recent studies on isolated N-terminal domains from Drosophila 39-kDa FK506-binding protein (FKBP39) and from other chromatin-associated proteins showed analogous, nucleoplasmin-like (NPL) pentameric structures. Here, we report that the NPL domain of the full-length FKBP39 does not form pentameric complexes. Multi-angle light scattering (MALS) and sedimentation equilibrium ultracentrifugation (SE AUC) analyses of the molecular mass of the full-length protein indicated that FKBP39 forms homotetrameric complexes. Molecular models reconstructed from small-angle X-ray scattering (SAXS) revealed that the NPL domain forms a stable, tetrameric core and that FK506-binding domains are linked to it by intrinsically disordered, flexible chains that form tentacle-like segments. Analyses of full-length FKBP39 and its isolated NPL domain suggested that the distal regions of the polypeptide chain influence and determine the quaternary conformation of the nucleoplasmin-like protein. These results provide new insights regarding the conserved structure of nucleoplasmin core domains and provide a potential explanation for the importance of the tetrameric structural organization of full-length nucleoplasmins.
机译:核纤溶酶是由高度保守的N末端核心结构域定义的核伴侣分子家族。分离的核纤溶酶核心结构域的X射线晶体学研究表明,β-螺旋桨结构由一组五种单体组成,它们共同形成稳定的五聚体。对果蝇39 kDa FK506结合蛋白(FKBP39)和其他与染色质相关的蛋白分离的N末端域的最新研究显示了类似的核纤溶酶样(NPL)五聚体结构。在这里,我们报告全长FKBP39的NPL域不形成五聚体复合物。全长蛋白的分子量的多角度光散射(MALS)和沉降平衡超速离心(SE AUC)分析表明,FKBP39形成同四聚体复合物。从小角度X射线散射(SAXS)重建的分子模型显示,NPL结构域形成稳定的四聚体核心,而FK506结合结构域通过形成触手状节段的内在无序,柔性链与之连接。全长FKBP39及其分离的NPL结构域的分析表明,多肽链的远端区域影响并确定了核纤溶酶样蛋白的季构象。这些结果提供有关核纤溶酶核心域的保守结构的新见解,并为全长核纤溶酶的四聚体结构组织的重要性提供了潜在的解释。

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