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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >High concentration solubility and stability of epsilon-poly-L-lysine in an ammonium-based ionic liquid: A suitable media for polypeptide packaging and biomaterial preparation
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High concentration solubility and stability of epsilon-poly-L-lysine in an ammonium-based ionic liquid: A suitable media for polypeptide packaging and biomaterial preparation

机译:氨基型离子液体中ε-聚-L-赖氨酸的高浓度溶解度和稳定性:一种用于多肽包装和生物材料制剂的合适培养基

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摘要

Packaging of structurally sensitive biomolecules such as proteins, peptides and DNA in non-aqueous media at ambient conditions with chemical and structural stability is important to explore the potential of such biomacromolecules as substrate for functional biomaterial design and for biotechnological applications. In this perspective, solubility, chemical and structural stability of epsilon-poly-L -lysine (epsilon-PL), a homopolypeptide produced by Streptomyces albulus in different ionic liquids (1Ls) namely 2-hydroxyethyl ammonium formate (2-HEAF), 2-hydroxyethyl ammonium acetate (2-HEAA), choline formate (Ch-Formate) and choline acetate (Ch-Acetate) was studied. Maximum solubility (15% w/v) of the homopolypeptide was observed in 2-HEAF and lowest was found in Ch-Formate (2% w/v). After regeneration of the dissolved polypeptide in the IL, the IL could be recycled and reused in the dissolution process. Unlike in other ILs, 3-15% w/v of epsilon-PL in 2-HEAF gave formation of a thixotropic thermoreversible soft gel. Molecular docking studies established favourable interactions of [2-HEA](+) cation over [Ch](+) with epsilon-PLindicating [2-HEA](+) as the most promising cation for the dissolution process. However, the role of the anions was also found to be important, which could lead to improvement in polypeptide solubility when combined to the selected cation. The findings demonstrate suitability of the ionic liquids for functionalization of polypeptides for biomaterial preparation. (C) 2018 Elsevier B.V. All rights reserved.
机译:在具有化学和结构稳定性的环境条件下,在环境条件下,在非水性介质中的蛋白质,肽和DNA的包装诸如蛋白质,肽和DNA的包装对于探讨这种生物重组作为用于功能性生物材料设计和用于生物技术应用的底物的潜力是重要的。在这种透视,ε-聚L-锆(EPSILON-PL)的溶解度,化学和结构稳定性,由不同离子液体(1LS)中的链霉菌蛋白酶(1LS)产生的均多肽,即2-羟乙基铵(2-HEAF),2研究 - 乙酸乙酯(2-HAEA),胆碱甲酸盐(CH-甲酸酯)和醋酸胆碱(CH-乙酸胆碱)。在2-HeaF中观察到均聚肽的最大溶解度(15%w / v),最低在CH-甲酸盐(2%w / v)中发现。在IL中再生溶解的多肽后,可以在溶解过程中再循环并重复使用IL。与其他ILS不同,在2-HAMF中为3-15%w / v epsilon-pl,形成了触变热可逆的软凝胶。分子对接研究将[2-HAM](+)阳离子的良好相互作用与ε(+)的ε(+)与epsilon-plindicating [2-Hea](+)作为最有希望的溶解过程的阳离子相互作用。然而,还发现阴离子的作用是重要的,这可能导致在组合到所选阳离子时的多肽溶解度。该研究结果证明了离子液体对多肽官能化进行生物材料制剂的适用性。 (c)2018年elestvier b.v.保留所有权利。

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