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不同折叠状态下泛素化高甘露糖型 CCL1 的化学合成。

Chemical Synthesis of Ubiquitinated High-Mannose-Type -Glycoprotein CCL1 in Different Folding States.

机构信息

Department of Chemistry, Graduate School of Science, Osaka University, 1-1 Machikaneyama, Toyonaka, Osaka 560-0043, Japan.

Department of Chemistry and Biotechnology, Faculty of Science and Technology, Kochi University, 2-5-1 Akebono-cho, Kochi, Kochi 780-8520, Japan.

出版信息

J Org Chem. 2020 Dec 18;85(24):16024-16034. doi: 10.1021/acs.joc.0c01766. Epub 2020 Oct 7.

Abstract

Degradation of misfolded glycoproteins by the ubiquitin-proteasome system (UPS) is a very important process for protein homeostasis. To demonstrate the accessibility toward a ubiquitinated glycoprotein probe for the study of glycoprotein degradation by UPS, we synthesized ubiquitinated glycoprotein CC motif chemokine 1 (CCL1) bearing a high-mannose-type -glycan, starting from six peptide segments. A native isopeptide linkage was constructed using δ-thiolysine (thioLys)-mediated chemical ligation. CCL1 glycopeptide with a high-mannose-type -glycan as well as a δ-thioLys residue was synthesized chemically. The chemical ligation between δ-thioLys-containing glycopeptide and ubiquitin-α-thioester successfully yielded a ubiquitinated glycopeptide with a native isopeptide bond after desulfurization, even in the presence of a large -glycan. In vitro folding experiments under reduced and redox conditions gave the desired two types of ubiquitinated glycosylated CCL1s, consisting of unfolded CCL1 and folded ubiquitin, and the folded form of both CCL1 as well as ubiquitin. We achieved the chemical synthesis of a complex protein molecule that contains not only the two major post-translational modifications, ubiquitination and glycosylation, but also controlled folding states of ubiquitin and CCL1. These chemical probes could have useful applications in the study of complex ubiquitin biology and glycobiology.

摘要

蛋白质折叠错误的降解是通过泛素-蛋白酶体系统(UPS)完成的,这是蛋白质动态平衡的一个非常重要的过程。为了证明对 UPS 降解糖蛋白的泛素化糖蛋白探针的可及性,我们从六个肽段开始合成了带有高甘露糖型聚糖的泛素化糖蛋白 C 型趋化因子 1(CCL1)。通过δ-硫赖氨酸(thioLys)介导的化学连接构建了天然的异肽键。化学合成了带有高甘露糖型聚糖和δ-硫赖氨酸残基的 CCL1 糖肽。含 δ-硫赖氨酸的糖肽与泛素-α-硫酯之间的化学连接成功地生成了具有天然异肽键的泛素化糖肽,即使在存在大聚糖的情况下也是如此。在还原和氧化还原条件下的体外折叠实验得到了所需的两种类型的泛素化糖基化 CCL1,包括未折叠的 CCL1 和折叠的泛素,以及 CCL1 和泛素的折叠形式。我们实现了含有两种主要翻译后修饰(泛素化和糖基化)以及泛素和 CCL1 折叠状态的复杂蛋白质分子的化学合成。这些化学探针在复杂的泛素生物学和糖生物学研究中可能具有有用的应用。

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