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首页> 外文期刊>Journal of Structural Biology >Dimer structure and conformational variability in the N-terminal region of an archaeal small heat shock protein, StHsp14.0
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Dimer structure and conformational variability in the N-terminal region of an archaeal small heat shock protein, StHsp14.0

机译:StHsp14.0古细菌小热激蛋白N末端区域的二聚体结构和构象变异性

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Small heat shock proteins (sHsps), which are categorized into a class of molecular chaperones, bind and stabilize denatured proteins to prevent aggregation. The sHsps undergo transition between different oligomeric states to control their hydrophobicity. So far, only the structures of sHsps in large oligomeric states have been reported. Here we report the structure of StHsp14.0 from Sulfolobus tokodaii in the dimeric state, which is formed by means of a mutation at the C-terminal IXI/V motif. The dimer is the sole building block in two crystal forms, and the dimeric mode is the same as that in the large oligomers. The N-terminal helix has variety in its conformation. Furthermore, spectroscopic and biochemical experiments were performed to investigate the conformational variability at the N-terminus. The structural, dynamical and oligomeric properties suggest that chaperone activity of StHsp14.0 is mediated by partially dissolved oligomers
机译:小型热激蛋白(sHsps)归为一类分子伴侣,可结合并稳定变性蛋白以防止聚集。 sHsps在不同的低聚物状态之间进行转变以控制其疏水性。迄今为止,仅报道了大寡聚状态下sHsps的结构。在这里,我们报告了二硫键状态下来自Sulfolobus tokodaii的StHsp14.0的结构,该结构是通过C末端IXI / V基序的突变形成的。二聚体是两种晶体形式的唯一结构单元,而二聚体模式与​​大型低聚物相同。 N-末端螺旋具有多种构象。此外,进行了光谱和生化实验以研究N末端的构象变异性。结构,动力学和低聚性质表明,StHsp14.0的伴侣活性是由部分溶解的低聚物介导的

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