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来自……的丝素蛋白的酶促卤化反应

Enzymatic Halogenation of Silk Fibroin from.

作者信息

Mancini Joshua A, Compean Alexander L, Wagner Drew T, Slocik Joseph M, Dennis Patrick B, Farajollahi Sanaz, Mirau Peter A, Hoffmann Andrea, Ruiz Oscar N, Gupta Maneesh K

机构信息

Soft Matter Materials Branch, Materials and Manufacturing Directorate, Air Force Research Laboratory, Wright Patterson Air Force Base, Ohio 45433, United States.

UES a BlueHalo Company, Dayton, Ohio 45433, United States.

出版信息

ACS Omega. 2025 Jul 14;10(29):31976-31984. doi: 10.1021/acsomega.5c03545. eCollection 2025 Jul 29.

Abstract

Silk fibroin from the silkworm, , is a unique biomaterial that has been extensively studied for a variety of applications that utilize robust mechanical properties, biological compatibility, and controlled self-assembly properties. This study tested carbon-halogen (C-X) bond halogenation to alter the chemical composition of silk fibroin with the intention to generate novel functional materials. In brief, silk fibroin side-chain modification used halogen salts (NaX, X = Cl, Br, and I), hydrogen peroxide (HO), and the vanadium-dependent haloperoxidase from to produce primarily halogenated tyrosine residues along the amorphous regions of the silk fibroin protein. Halogenation was confirmed with various methods, including 1D H NMR, X-ray photoelectron spectroscopy, and analysis of chymotrypsin peptide digests by Q-TOF Liquid Chromatography-Mass Spectrometry. Secondary structure analysis by FTIR-ATR, circular dichroism, and Raman spectroscopy revealed increase in helical conformation of solubilized halogenated silk fibroin, while dried film functionality demonstrated higher abundance of β-sheet structures by maintenance of random coil content. Evaluation by contact angle measurement demonstrated increased hydrophilicity on silk fibroin films following addition of halogens by supporting the formation of water insoluble hydrogels after treatment with various organic and salt solvents. This study is the first to characterize the effects of enzymatic halogenations on the properties of silk fibroin, and this post-translational modification will be useful for the addition of non-natural small molecules or ligands, introducing new material types afforded by the silk fibroin structure.

摘要

家蚕的丝素蛋白是一种独特的生物材料,已针对各种应用进行了广泛研究,这些应用利用了其强大的机械性能、生物相容性和可控的自组装特性。本研究测试了碳 - 卤素(C - X)键卤化以改变丝素蛋白的化学组成,旨在生成新型功能材料。简而言之,丝素蛋白侧链修饰使用卤素盐(NaX,X = Cl、Br和I)、过氧化氢(HO)以及来自[具体来源未提及]的钒依赖性卤过氧化物酶,主要沿丝素蛋白的无定形区域产生卤化酪氨酸残基。通过多种方法确认了卤化,包括一维氢核磁共振(1D H NMR)、X射线光电子能谱以及通过Q - 飞行时间液相色谱 - 质谱联用仪分析胰凝乳蛋白酶肽段消化产物。傅里叶变换红外光谱 - 衰减全反射(FTIR - ATR)、圆二色性和拉曼光谱进行的二级结构分析表明,溶解的卤化丝素蛋白的螺旋构象增加,而干膜功能通过维持无规卷曲含量显示出更高丰度的β - 折叠结构。通过接触角测量进行的评估表明,在用各种有机和盐溶剂处理后,由于支持形成水不溶性水凝胶,添加卤素后丝素蛋白膜的亲水性增加。本研究首次表征了酶促卤化对丝素蛋白性质的影响,这种翻译后修饰将有助于添加非天然小分子或配体,引入由丝素蛋白结构提供的新型材料类型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f221/12311704/1430335982d5/ao5c03545_0001.jpg

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