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聚乙二醇化丙氨酸丰富多肽的构象和聚集性质。

Conformational and aggregation properties of a PEGylated alanine-rich polypeptide.

机构信息

Department of Materials Science and Engineering, University of Delaware, Newark, DE 19716, USA.

出版信息

Biomacromolecules. 2011 Jun 13;12(6):2184-92. doi: 10.1021/bm200272w. Epub 2011 May 9.

Abstract

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.

摘要

聚乙二醇(PEG)修饰的富含丙氨酸多肽(PEG-c17H6)的构象和聚集行为与带有十个组氨酸标签的多肽(17H6)进行了比较。这些多肽是螺旋丰富的蛋白质聚集行为的简单且响应性的模型,因为我们之前的研究表明,在酸性条件下,螺旋 17H6 在酸性 pH 下自组装,并在升高的温度下转换为β-折叠结构。在本工作中,我们表明 PEG-c17H6 在环境/亚环境温度下,在中性和酸性 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,在中性 pH 下,丙氨酸丰富的结构域没有自组装的倾向。然而,在酸性 pH 和升高的温度下,PEG 化会减缓 c17H6 的β-折叠形成,并降低热诱导解折叠的表观协同性。在升高的温度下孵育的 PEG-c17H6 缀合物的透射电子显微镜显示出宽度约为 20-30nm 的原纤维,比观察到的 17H6 原纤维的宽度要宽。这些结果表明,PEG 化通过在天然螺旋结构展开后仅干扰形成β-折叠聚集体所需的蛋白质构象变化,从而减少这些多肽中的β-折叠聚集。

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