首页> 外文期刊>Acta crystallographica. Section F, Structural biology communications >New conformations of linear polyubiquitin chains from crystallographic and solution-scattering studies expand the conformational space of polyubiquitin
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New conformations of linear polyubiquitin chains from crystallographic and solution-scattering studies expand the conformational space of polyubiquitin

机译:结晶脱落研究线性络合蛋白链的新构象扩大了多泛素的构象空间

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摘要

The conformational flexibility of linkage-specific polyubiquitin chains enables ubiquitylated proteins and their receptors to be involved in a variety of cellular processes. Linear or Met1-linked polyubiquitin chains, associated with non-degradational cellular signalling pathways, have been known to adopt multiple conformations from compact to extended conformations. However, the extent of such conformational flexibility remains open. Here, the crystal structure of linear Ub(2) was determined in a more compact conformation than that of the previously known structure (PDB entry 3axc). The two structures differ significantly from each other, as shown by an r.m.s.d. between C-alpha atoms of 3.1 angstrom. The compactness of the linear Ub(2) structure in comparison with PDB entry 3axc is supported by smaller values of the radius of gyration (R-g; 18 versus 18.9 angstrom) and the maximum interatomic distance ( Dmax; 55.5 versus 57.8 angstrom). Extra intramolecular hydrogen bonds formed among polar residues between the distal and proximal ubiquitin moieties seem to contribute to stabilization of the compact conformation of linear Ub(2). An ensemble of three semi-extended and extended conformations of linear Ub(2) was also observed by small-angle X-ray scattering (SAXS) analysis in solution. In addition, the conformational heterogeneity in linear polyubiquitin chains is clearly manifested by SAXS analyses of linear Ub(3) and Ub(4): at least three distinct solution conformations are observed in each chain, with the linear Ub(3) conformations being compact. The results expand the extent of conformational space of linear polyubiquitin chains and suggest that changes in the conformational ensemble may be pivotal in mediating multiple signalling pathways.
机译:连锁特异性络合链链的构象灵活性使得泛醌型蛋白质及其受体能够参与各种细胞过程。已知与非降解细胞信号传导途径相关的线性或Met1连接的多荧粘蛋白链,用于采用紧凑型以延伸构象采用多种构象。然而,这种构象灵活性的程度仍然是开放的。这里,线性UB(2)的晶体结构以比先前已知的结构(PDB条目3AXC)更紧凑的构象确定。这两个结构彼此显着不同,如r.m.d.所示。在3.1埃的C-alpha原子之间。与PDB条目3AXC相比,线性UB(2)结构的紧凑性由循环半径的较小值(R-G; 18与18.9埃)和最大内部距离(Dmax; 55.5与57.8埃)的较小值支持。额外的分子内氢键在远端和近端泛素部分之间的极性残留物中形成的似乎有助于稳定线性UB(2)的紧凑构象。在溶液中小角X射线散射(SAXS)分析,还观察到线性UB(2)的三个半扩展和延伸构象的集合。另外,通过线性UB(3)和UB(4)的淋巴分析清楚地表现出直链络合蛋白链中的构象异质性:在每个链中观察至少三个不同的溶液构象,线性UB(3)构象紧凑。结果扩展了线性多泛素链的构象空间的程度,并表明构象集合的变化可以在介导多信号传导途径中枢转。

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