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首页> 外文期刊>Biomacromolecules >Elastin-like Polypeptide (ELP) Charge Influences Self-Assembly of ELP-mCherry Fusion Proteins
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Elastin-like Polypeptide (ELP) Charge Influences Self-Assembly of ELP-mCherry Fusion Proteins

机译:Elastin样多肽(ELP)电荷影响ELP-MCHERRY融合蛋白的自组装

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Self-assembly of protein-polymer bioconjugates presents an elegant strategy for controlling nanostructure and orientation of globular proteins in functional materials. Recent work has shown that genetic fusion of globular protein mCherry to an elastin-like polypeptide (ELP) yields similar self-assembly behavior to these protein-polymer bioconjugates. In the context of studying protein-polymer bioconjugate self-assembly, the mutability of the ELP sequence allows several different properties of the ELP block to be tuned orthogonally while maintaining consistent polypeptide backbone chemistry. This work uses this ELP sequence tunability in combination with the precise control offered by genetic engineering of an amino acid sequence to generate a library of four novel ELP sequences that are used to study the combined effect of charge and hydrophobicity on ELP-mCherry fusion protein self-assembly. Concentrated solution self-assembly is studied by small-angle X-ray scattering (SAXS) and depolarized light scattering (DPLS). These experiments show that fusions containing a negatively charged ELP block do not assemble at all, and fusions with a charge balanced ELP block exhibit a weak propensity for assembly. By comparison, the fusion containing an uncharged ELP block starts to order at 40 wt % in solution and at all concentrations measured has sharper, more intense SAXS peaks than other fusion proteins. These experiments show that charge character of the ELP block is a stronger predictor of self assembly behavior than the hydrophobicity of the ELP block. Dilute solution small-angle neutron scattering (SANS) on the ELPs alone suggests that all ELPs used in this study (including the uncharged ELP) adopt dilute solution conformations similar to those of traditional polymers, including polyampholytes and polyelectrolytes. Finally, dynamic light scattering studies on ELP-mCherry blends shows that there is no significant complexation between the charged ELPs and mCherry. Therefore, it is proposed that the superior self-assembly of fusion proteins containing uncharged ELP block is due to effective repulsions between charged and uncharged blocks due to local charge correlation effects and, in the case of anionic ELPs, repulsion between like charges within the ELP block.
机译:蛋白质 - 聚合物生物缀合物的自组装具有优雅的策略,用于控制功能材料中球状蛋白的纳米结构和取向。最近的工作表明,球状蛋白质MCHERRY对弹性蛋白的多肽(ELP)的遗传融合产生与这些蛋白质 - 聚合物生物缀合物类似的自组装行为。在研究蛋白质 - 聚合物的生物缀合物自组装的背景下,ELP序列的可变性允许ELP嵌段的几种不同性质在保持一致的多肽骨架化学的同时进行正交调谐。该作品使用该ELP序列可调性与氨基酸序列的基因工程所提供的精确控制相结合,以产生四种新的ELP序列文库,用于研究电荷和疏水性对ELP-MCHERRY融合蛋白自身的综合影响-集会。通过小角度X射线散射(SAX)和去极化光散射(DPLS)研究了浓缩溶液自组装。这些实验表明,含有带负电的ELP块的融合根本不会组装,并且具有电荷平衡ELP块的融合表现出弱的组装倾向。相比之下,含有未充电的ELP嵌段的融合开始于溶液中40wt%的溶液,并且在测量的所有浓度下,比其他融合蛋白更强烈的萨克斯峰。这些实验表明,ELP块的电荷特性是自组装行为的更强的预测因子,而不是ELP块的疏水性。单独稀释溶液小角度散射(SAN)仅表明本研究中使用的所有ELP(包括未充电的ELP)采用与传统聚合物类似的稀释溶液构象,包括多聚酰胺和聚电解质。最后,对ELP-MCHERRY共混物的动态光散射研究表明,带电ELP和MCHERRY之间没有显着络合。因此,提出含有未充电的ELP块的融合蛋白的优异自组装是由于由于局部电荷相关效应,并且在阴离子elps的情况下,在阴离子elp的情况下,在ELP内的相同电荷之间的排斥堵塞。

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