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基于α-谷氨酰胺的聚酰胺氨基酸中的氢键及其pH依赖性自有序螺旋构象。

Hydrogen Bonding in a -Glutamine-Based Polyamidoamino Acid and its pH-Dependent Self-Ordered Coil Conformation.

作者信息

Lazzari Federica, Manfredi Amedea, Alongi Jenny, Ganazzoli Fabio, Vasile Francesca, Raffaini Giuseppina, Ferruti Paolo, Ranucci Elisabetta

机构信息

Dipartimento di Chimica, Università degli Studi di Milano, via C. Golgi 19, 20133 Milano, Italy.

Dipartimento di Chimica, Materiali ed Ingegneria Chimica "G. Natta" Politecnico di Milano, Piazza Leonardo da Vinci 32, 20131 Milano, Italy.

出版信息

Polymers (Basel). 2020 Apr 10;12(4):881. doi: 10.3390/polym12040881.

Abstract

This paper reports on synthesis, acid-base properties, and self-structuring in water of a chiral polyamidoamino acid, M--Gln, obtained from the polyaddition of -methylenebisacrylamide with -glutamine, with the potential of establishing hydrogen bonds through its -amide pendants. The M--Gln showed pH-responsive circular dichroism spectra, revealing ordered conformations. Structuring was nearly insensitive to ionic strength but sensitive to denaturing agents. The NMR diffusion studies were consistent with a population of unimolecular nanoparticles thus excluding aggregation. The M--Gln had the highest molecular weight and hydrodynamic radius among all polyamidoamino acids described. Possibly, transient hydrogen bonds between -glutamine molecules and M--Gln growing chains facilitated the polyaddition reaction. Theoretical modeling showed that M--Gln assumed pH-dependent self-ordered coil conformations with main chain transoid arrangements reminiscent of the protein hairpin motif owing to intramolecular dipole moments and hydrogen bonds. The latter were most numerous at the isoelectric point (pH 4.5), where they mainly involved even topologically distant main chain amide N-H and side chain amide C=O brought to proximity by structuring. Hydrogen bonds at pH 4.5 were also suggested by variable temperature NMR. The 2D NOESY experiments at pH 4.5 confirmed the formation of compact structures through the analysis of the main chain/side chain hydrogen contacts, in line with MD simulations.

摘要

本文报道了一种手性聚酰胺氨基酸M-Gln在水中的合成、酸碱性质和自组装情况。M-Gln由亚甲基双丙烯酰胺与谷氨酰胺通过加成聚合反应制得,其酰胺侧基具有形成氢键的潜力。M-Gln表现出pH响应性圆二色光谱,揭示了有序构象。自组装对离子强度几乎不敏感,但对变性剂敏感。核磁共振扩散研究结果与单分子纳米颗粒群体一致,排除了聚集现象。在所有已描述的聚酰胺氨基酸中,M-Gln具有最高的分子量和流体力学半径。谷氨酰胺分子与M-Gln增长链之间可能存在的瞬时氢键促进了加成聚合反应。理论建模表明,由于分子内偶极矩和氢键的作用,M-Gln呈现出pH依赖的自有序螺旋构象,其主链呈反式排列,类似于蛋白质发夹基序。在等电点(pH 4.5)时,氢键数量最多,此时氢键主要涉及拓扑距离较远的主链酰胺N-H和侧链酰胺C=O,它们通过自组装而靠近。变温核磁共振也表明在pH 4.5时存在氢键。pH 4.5下的二维NOESY实验通过分析主链/侧链氢接触证实了紧密结构的形成,这与分子动力学模拟结果一致。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/859d/7240574/22da4048c8fb/polymers-12-00881-sch001.jpg

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