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Structural Investigation of Disordered Stress Proteins. Comparison of Full-Length Dehydrins with Isolated Peptides of Their Conserved Segments

机译:无序应激蛋白的结构研究。全长脱水蛋白与其保守区段的分离肽的比较

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摘要

Dehydrins constitute a class of intrinsically disordered proteins that are expressed under conditions of water-related stress. Characteristic of the dehydrins are some highly conserved stretches of seven to 17 residues that are repetitively scattered in their sequences, the K-, S-, Y-, and Lys-rich segments. In this study, we investigate the putative role of these segments in promoting structure. The analysis is based on comparative analysis of four full-length dehydrins from Arabidopsis (Arabidopsis thaliana; Cor47, Lti29, Lti30, and Rab18) and isolated peptide mimics of the K-, Y-, and Lys-rich segments. In physiological buffer, the circular dichroism spectra of the full-length dehydrins reveal overall disordered structures with a variable content of poly-Pro helices, a type of elongated secondary structure relying on bridging water molecules. Similar disordered structures are observed for the isolated peptides of the conserved segments. Interestingly, neither the full-length dehydrins nor their conserved segments are able to adopt specific structure in response to altered temperature, one of the factors that regulate their expression in vivo. There is also no structural response to the addition of metal ions, increased protein concentration, or the protein-stabilizing salt Na2SO4. Taken together, these observations indicate that the dehydrins are not in equilibrium with high-energy folded structures. The result suggests that the dehydrins are highly evolved proteins, selected to maintain high configurational flexibility and to resist unspecific collapse and aggregation. The role of the conserved segments is thus not to promote tertiary structure, but to exert their biological function more locally upon interaction with specific biological targets, for example, by acting as beads on a string for specific recognition, interaction with membranes, or intermolecular scaffolding. In this perspective, it is notable that the Lys-rich segment in Cor47 and Lti29 shows sequence similarity with the animal chaperone HSP90.
机译:脱水蛋白构成一类内在无序的蛋白质,它们在与水有关的应激条件下表达。脱水蛋白的特征是一些高度保守的7至17个残基片段,这些残基以其序列(富含K,S,Y和Lys的片段)重复分散。在这项研究中,我们调查了这些部分在促进结构中的假定作用。该分析基于对拟南芥中的四种全长脱水蛋白(拟南芥; Cor47,Lti29,Lti30和Rab18)以及富含K,Y和Lys的分离肽模拟物的比较分析。在生理缓冲液中,全长脱水蛋白的圆二色性光谱揭示了具有可变含量的聚脯螺旋的整体无序结构,这是一种依赖于桥接水分子的细长二级结构。对于保守区段的分离的肽,观察到类似的无序结构。有趣的是,全长脱水素或它们的保守片段都不能响应温度的变化而采用特定的结构,温度是调节其在体内表达的因素之一。对金属离子的添加​​,增加的蛋白质浓度或蛋白质稳定盐Na2SO4也没有结构响应。综上所述,这些观察结果表明脱水醇与高能折叠结构不平衡。结果表明,脱水蛋白是高度进化的蛋白质,被选择来维持高的构型柔性并抵抗非特异性的塌陷和聚集。因此,保守区段的作用不是促进三级结构,而是在与特定生物靶标相互作用时更局部地发挥其生物学功能,例如,通过充当细绳上的珠子以进行特异性识别,与膜相互作用或分子间支架。从这个角度来看,值得注意的是,Cor47和Lti29中富含Lys的片段与动物伴侣HSP90表现出序列相似性。

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