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通过儿茶酚进行聚乙二醇化和透明质酸化:肽和蛋白质N端的α-胺特异性反应。

PEGylation and HAylation via catechol: α-Amine-specific reaction at N-terminus of peptides and proteins.

作者信息

Song In Taek, Lee Mihyun, Lee Hyukjin, Han Jinah, Jang Jae-Hyung, Lee Moon Sue, Koh Gou Young, Lee Haeshin

机构信息

Department of Chemistry, KAIST, BK21 Plus Program, 291 University Rd., Yuseong-gu, Daejeon 305-701, Republic of Korea.

College of Pharmacy, Ewha Womans University, 11-1 Daehyun-Dong, Seoul 120-750, Republic of Korea.

出版信息

Acta Biomater. 2016 Oct 1;43:50-60. doi: 10.1016/j.actbio.2016.07.018. Epub 2016 Jul 14.

Abstract

UNLABELLED

The development of chemoselective, site-specific chemistries for proteins/peptides is essential for biochemistry, pharmaceutical chemistry, and other fields. In this work, we found that catechol, which has been extensively utilized as an adhesive molecule for material-independent surface chemistry and as a crosslinker in hydrogel preparation, specifically reacts with N-terminal α-amines, avoiding the ε-amine group in lysine. A conjugate of methoxy-poly(ethylene glycol)-catechol called mPEG-cat chemoselectively reacts with N-terminal amine groups at neutral pH resulting in site-specific PEGylation. To demonstrate the versatility of this catechol chemoselective reaction, we used four proteins (lysozyme, basic-fibroblast growth factor (bFGF), granulocyte-colony stimulating factor (G-CSF), insulin, and erythropoietin (EPO)) as well as two peptides (hinge-3 and laminin-derived peptide (LDP)). All the tested macromolecules showed N-terminal site-specific modifications. Furthermore, we prepared another catechol grafted conjugate called hyaluronic acid-catechol (HA-cat) to demonstrate that this catechol-involved chemoselective chemistry is not specific for PEG conjugates. This new catechol chemoselective chemistry could be a new platform for the functionalization of proteins and peptides for a variety of purposes.

STATEMENT OF SIGNIFICANCE

Considering the fact that biological activities of proteins or peptides depend largely on their 3-dimensional conformation, the orientation-controllable reaction is very important for preserving the intrinsic functionality of them. In addition to PEG, many other bio-polymers such as oligonucleotides, antibodies, and oligosaccharides have been conjugated with proteins or peptides for various biomedical applications. Although several chemoselective conjugation chemistries have been reported, conjugation efficiencies are different depending on types of proteins or polymers, and thus there've been strong needs for the development of alternative strategy of chemoselective conjugation that can be applied for a variety of therapeutic proteins towards high biological activities. We are certain this new catechol chemoselective chemistry could be a new platform for the functionalization of proteins and peptides for various purposes.

摘要

未标记

开发针对蛋白质/肽的化学选择性、位点特异性化学方法对于生物化学、药物化学及其他领域至关重要。在本研究中,我们发现儿茶酚,其已被广泛用作材料无关表面化学的粘附分子以及水凝胶制备中的交联剂,能特异性地与N端α-胺反应,避免与赖氨酸中的ε-胺基团反应。一种名为甲氧基聚乙二醇-儿茶酚(mPEG-cat)的共轭物在中性pH下能化学选择性地与N端胺基反应,从而实现位点特异性聚乙二醇化。为证明这种儿茶酚化学选择性反应的通用性,我们使用了四种蛋白质(溶菌酶、碱性成纤维细胞生长因子(bFGF)、粒细胞集落刺激因子(G-CSF)、胰岛素和促红细胞生成素(EPO))以及两种肽(铰链-3和层粘连蛋白衍生肽(LDP))。所有测试的大分子均显示出N端位点特异性修饰。此外,我们制备了另一种儿茶酚接枝共轭物,即透明质酸-儿茶酚(HA-cat),以证明这种涉及儿茶酚的化学选择性化学方法并非特异性针对聚乙二醇共轭物。这种新的儿茶酚化学选择性化学方法可能成为用于多种目的的蛋白质和肽功能化的新平台。

意义声明

考虑到蛋白质或肽的生物活性很大程度上取决于其三维构象,取向可控反应对于保留其内在功能非常重要。除了聚乙二醇,许多其他生物聚合物,如寡核苷酸、抗体和寡糖,已与蛋白质或肽共轭用于各种生物医学应用。尽管已报道了几种化学选择性共轭化学方法,但共轭效率因蛋白质或聚合物的类型而异,因此迫切需要开发一种可应用于多种治疗性蛋白质以实现高生物活性的化学选择性共轭替代策略。我们确信这种新的儿茶酚化学选择性化学方法可能成为用于多种目的的蛋白质和肽功能化的新平台。

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