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从球晶到晶体:聚(2-异丙基-2-恶唑啉)在热水中结晶的光谱研究

From globules to crystals: a spectral study of poly(2-isopropyl-2-oxazoline) crystallization in hot water.

作者信息

Sun Shengtong, Wu Peiyi

机构信息

State Key Laboratory of Molecular Engineering of Polymers, Collaborative Innovation Center of Polymers and Polymer Composite Materials, Department of Macromolecular Science and Laboratory for Advanced Materials, Fudan University, Shanghai 200433, China.

出版信息

Phys Chem Chem Phys. 2015 Dec 28;17(48):32232-40. doi: 10.1039/c5cp05626h.

Abstract

One easy strategy to comprehend the complex folding/crystallization behaviors of proteins is to study the self-assembly process of their synthetic polymeric analogues with similar properties owing to their simple structures and easy access to molecular design. Poly(2-isopropyl-2-oxazoline) (PIPOZ) is often regarded as an ideal pseudopeptide with similar two-step crystallization behavior to proteins, whose aqueous solution experiences successive lower critical solution temperature (LCST)-type liquid-liquid phase separation upon heating and irreversible crystallization when annealed above LCST for several hours. In this paper, by microscopic observations, IR and Raman spectroscopy in combination with 2D correlation analysis, we show that the second step of PIPOZ crystallization in hot water can be further divided into two apparent stages, i.e., nucleation and crystal growth, and perfect crystalline PIPOZ chains are found to only develop in the second stage. While all the groups exhibit changes in initial nucleation, only methylene groups on the backbone participate in the crystal growth stage. During nucleation, a group motion transfer is found from the side chain to the backbone, and nucleation is assumed to be mainly driven by the cleavage of bridging C=O···D-O-D···O=C hydrogen bonds followed by chain arrangement due to amide dipolar orientation. Nevertheless, during crystal growth, a further chain ordering process occurs resulting in the final formation of crystalline PIPOZ chains with partial trans conformation of backbones and alternative side chains on the two sides. The underlying crystallization mechanism of PIPOZ in hot water we present here may provide very useful information for understanding the crystallization of biomacromolecules in biological systems.

摘要

理解蛋白质复杂折叠/结晶行为的一个简单策略是研究其具有相似性质的合成聚合物类似物的自组装过程,因为它们结构简单且易于进行分子设计。聚(2-异丙基-2-恶唑啉)(PIPOZ)常被视为一种理想的假肽,具有与蛋白质相似的两步结晶行为,其水溶液在加热时经历连续的低临界溶液温度(LCST)型液-液相分离,在高于LCST退火数小时后发生不可逆结晶。在本文中,通过显微镜观察、红外和拉曼光谱结合二维相关分析,我们表明PIPOZ在热水中的第二步结晶可进一步分为两个明显阶段,即成核和晶体生长,并且发现完美的结晶PIPOZ链仅在第二阶段形成。虽然所有基团在初始成核时都表现出变化,但只有主链上的亚甲基参与晶体生长阶段。在成核过程中,发现基团运动从侧链转移到主链,并且成核被认为主要由桥连的C=O···D-O-D···O=C氢键的断裂以及由于酰胺偶极取向导致的链排列驱动。然而,在晶体生长过程中,会发生进一步的链有序化过程,最终形成主链具有部分反式构象且两侧侧链交替排列的结晶PIPOZ链。我们在此提出的PIPOZ在热水中的潜在结晶机制可能为理解生物系统中生物大分子的结晶提供非常有用的信息。

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