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Conformational and aggregation properties of a pegylated alanine-rich polypeptide

机译:聚乙二醇化富含丙氨酸的多肽的构象和聚集特性

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摘要

The conformational and aggregation behavior of PEG conjugates of an alanine-rich polypeptide (PEG-c17H6) were investigated and compared to that of the polypeptide equipped with a deca-histidine tag (17H6). These polypeptides serve as simple and stimuli-responsive models for the aggregation behavior of helix-rich proteins, as our previous studies have shown that the helical 17H6 self-associates at acidic pH and converts to β-sheet structures at elevated temperature under acidic conditions. In the work here, we show that PEG-c17H6 also adopts a helical structure at ambient/subambient temperatures, at both neutral and acidic pH. The thermal denaturation behavior of 17H6 and PEG-c17H6 is similar at neutral pH, where the alanine-rich domain has no self-association tendency. At acidic pH and elevated temperature, however, PEGylation slows β-sheet formation of c17H6, and reduces the apparent cooperativity of thermally induced unfolding. Transmission electron microscopy of PEG-c17H6 conjugates incubated at elevated temperatures showed fibrils with widths of ∼20-30 nm, wider than those observed for fibrils of 17H6. These results suggest that PEGylation reduces β-sheet aggregation in these polypeptides by interfering, only after unfolding of the native helical structure, with interprotein conformational changes needed to form β-sheet aggregates.
机译:研究了富含丙氨酸的多肽(PEG-c17H6)的PEG缀合物的构象和聚集行为,并将其与配备有deca-histidine标签(17H6)的多肽的构象和聚集行为进行了比较。这些多肽充当富含螺旋结构的蛋白质聚集行为的简单且刺激响应的模型,因为我们以前的研究表明,螺旋17H6在酸性pH下自缔合,并在高温下在酸性条件下转化为β-折叠结构。在这里的工作中,我们表明PEG-c17H6在环境/环境温度(中性和酸性pH)下也采用螺旋结构。 17H6和PEG-c17H6的热变性行为在中性pH下相似,其中富含丙氨酸的域没有自缔合趋势。但是,在酸性pH和高温下,聚乙二醇化会减慢c17H6的β-折叠形成,并降低热诱导展开的表观协同作用。在高温下孵育的PEG-c17H6共轭物的透射电子显微镜显示,原纤维的宽度约为20-30 nm,比17H6的原纤维宽。这些结果表明,PEG化仅在天然螺旋结构展开后,通过干扰形成β-折叠聚集体所需的蛋白间构象变化,从而减少了这些多肽中的β-折叠聚集。

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