Yang Weizhun, Eken Yigitcan, Zhang Jicheng, Cole Logan Emerson, Ramadan Sherif, Xu Yongmei, Zhang Zeren, Liu Jian, Wilson Angela K, Huang Xuefei
Department of Chemistry, Michigan State University 578 South Shaw Lane East Lansing MI 48824 USA.
Chemistry Department, Faculty of Science, Benha University Benha Qaliobiya 13518 Egypt.
Chem Sci. 2020 May 11;11(25):6393-6404. doi: 10.1039/d0sc01140a.
Proteoglycans are a family of complex glycoproteins with glycosaminoglycan chains such as heparan sulfate (HS) attached to the core protein backbone. Due to the high structural heterogeneity of HS in nature, it is challenging to decipher the respective roles of the HS chain and the core protein on proteoglycan functions. While the sulfation patterns of HS dictate many activities, the core protein can potentially impact HS functions. In order to decipher this, homogeneous proteoglycan glycopeptides are needed. Herein, we report the first successful synthesis of proteoglycan glycopeptides bearing multiple aspartic acids in the core peptide and O- and N-sulfations in the glycan chain, as exemplified by the syndecan-4 glycopeptides. To overcome the high acid sensitivities of sulfates and base sensitivities of the glycopeptide during synthesis, a new synthetic approach has been developed to produce a sulfated glycan chain on a peptide sequence prone to the formation of aspartimide side products. The availability of the structurally well-defined synthetic glycopeptide enabled the investigation of their biological functions including cytokine, growth factor binding and heparanase inhibition. Interestingly, the glycopeptide exhibited context dependent enhancement or decrease of biological activities compared to the peptide or the glycan alone. The results presented herein suggest that besides varying the sulfation patterns of HS, linking the HS chain to core proteins as in proteoglycans may be an additional approach to modulate biological functions of HS in nature.
蛋白聚糖是一类复杂的糖蛋白,其糖胺聚糖链如硫酸乙酰肝素(HS)连接在核心蛋白主链上。由于自然界中HS的高度结构异质性,要解读HS链和核心蛋白在蛋白聚糖功能中的各自作用具有挑战性。虽然HS的硫酸化模式决定了许多活性,但核心蛋白可能会影响HS的功能。为了解读这一点,需要均一的蛋白聚糖糖肽。在此,我们报告了首次成功合成在核心肽中带有多个天冬氨酸且在糖链中具有O - 和N - 硫酸化的蛋白聚糖糖肽,以syndecan - 4糖肽为例。为了克服合成过程中硫酸盐的高酸敏感性和糖肽的碱敏感性,已开发出一种新的合成方法,在易于形成天冬酰胺侧产物的肽序列上产生硫酸化糖链。结构明确的合成糖肽的可得性使得能够研究它们的生物学功能,包括细胞因子、生长因子结合和乙酰肝素酶抑制。有趣的是,与单独的肽或聚糖相比,糖肽表现出取决于背景的生物活性增强或降低。本文给出的结果表明,除了改变HS的硫酸化模式外,如在蛋白聚糖中那样将HS链与核心蛋白连接可能是调节自然界中HS生物学功能的另一种方法。