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α-醇溶蛋白在乙醇-水混合溶剂中的自组装形态及结构调控研究。

Study on Self-Assembled Morphology and Structure Regulation of α-Zein in Ethanol-Water Mixtures.

机构信息

CAS Key Laboratory of Biobased Materials, Qingdao Institute of Bioenergy and Bioprocess Technology, Chinese Academy of Sciences, Qingdao 266101, China.

University of Chinese Academy of Sciences, Beijing 100049, China.

出版信息

Langmuir. 2020 Oct 13;36(40):11975-11984. doi: 10.1021/acs.langmuir.0c02143. Epub 2020 Sep 30.

Abstract

α-Zein has received widespread attention owing to its unique solubility, amphipathic, and self-assembly properties, which is because of its high proportion of nonpolar amino acids and unique amino acid sequence. The protein self-assembly is a significant and widely observed phenomenon in many scientific areas such as food and biomedicine, among many industries. In this study, we investigated the self-assembly behavior of α-zein and regulated the morphology and structure of the self-assembled α-zein by varying the experimental parameters like pH, ethanol content, induction time, and α-zein concentration during the self-assembly process in ethanol-water mixtures. The nanospheres and nanofibers were observed under different conditions [nanospheres observed under acidic and strongly alkaline (pH > 10.5) conditions or for ethanol content lower than 65% and higher than 75%; nanofibers observed under weakly alkaline (pH 9.5-10.5) conditions or for 65-75% ethanol concentration for induction duration longer than 24 h]. The morphological and structural analyses of the self-assembled α-zein showed that the self-assembly process was accompanied by the transformation of the morphology and conformation of α-zein. The studies on the self-assembly process and mechanism revealed that α-zein first self-assembled into nanospheres, followed by the nanospheres adhering to shape-beaded fibers and finally fibers, accompanied by a structural transformation from the disordered into ordered state. The nanosphere formation is noted to follow the nucleation-based polymerization, and the nanosphere-mediated mechanisms lead to the formation of nanofibers. Moreover, the hydrophobic interactions, hydrogen bonds, and electrostatic interactions are concluded to drive the α-zein self-assembly. The findings from this study are expected to provide a theoretical basis for expanding the commercial applications of α-zein.

摘要

α-zein 因其独特的溶解性、两亲性和自组装特性而受到广泛关注,这是由于其高比例的非极性氨基酸和独特的氨基酸序列。蛋白质自组装是食品和生物医学等许多科学领域以及许多行业中一个重要且广泛观察到的现象。在这项研究中,我们研究了α-zein 的自组装行为,并通过改变实验参数,如 pH 值、乙醇含量、诱导时间和α-zein 浓度,在乙醇-水混合物中调节自组装α-zein 的形态和结构。在不同条件下观察到纳米球和纳米纤维[在酸性和强碱性(pH>10.5)条件下或乙醇含量低于 65%和高于 75%下观察到纳米球;在弱碱性(pH9.5-10.5)条件下或 65-75%乙醇浓度下观察到诱导时间超过 24 小时时观察到纳米纤维]。自组装α-zein 的形态和结构分析表明,自组装过程伴随着α-zein 形态和构象的转变。对自组装过程和机制的研究表明,α-zein 首先自组装成纳米球,然后纳米球附着在珠状纤维上,最后形成纤维,同时结构从无序转变为有序。纳米球的形成被认为是基于成核的聚合反应,纳米球介导的机制导致了纳米纤维的形成。此外,疏水相互作用、氢键和静电相互作用被认为是驱动α-zein 自组装的原因。本研究的结果有望为扩大α-zein 的商业应用提供理论依据。

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