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体内具有强大抗肿瘤活性的均相人糖基干扰素-β的化学合成。

Chemical synthesis of homogeneous human glycosyl-interferon-β that exhibits potent antitumor activity in vivo.

机构信息

Glycotechnology Laboratory, Otsuka Chemical Co, Ltd, Shimogyo-ku, Kyoto, Japan.

出版信息

J Am Chem Soc. 2012 Mar 28;134(12):5428-31. doi: 10.1021/ja2109079. Epub 2012 Mar 15.

Abstract

Chemical synthesis of homogeneous human glycoproteins exhibiting bioactivity in vivo has been a challenging task. In an effort to overcome this long-standing problem, we selected interferon-β and examined its synthesis. The 166 residue polypeptide chain of interferon-β was prepared by covalent condensation of two synthetic peptide segments and a glycosylated synthetic peptide bearing a complex-type glycan of biological origin. The peptides were covalently condensed by native chemical ligation. Selective desulfurization followed by deprotection of the two Cys(Acm) residues gave the target full-length polypeptide chain of interferon-β bearing either a complex-type sialyl biantennary oligosaccharide or its asialo form. Subsequent folding with concomitant formation of the native disulfide bond afforded correctly folded homogeneous glycosyl-interferon-β. The chemically synthesized sialyl interferon-β exhibited potent antitumor activity in vivo.

摘要

化学合成具有体内生物活性的均一性人糖蛋白一直是一项具有挑战性的任务。为了克服这一长期存在的问题,我们选择了干扰素-β并对其进行了研究。通过共价缩合两个合成肽段和一个带有生物来源的复杂型聚糖的糖基化合成肽,制备了 166 个残基的干扰素-β多肽链。通过天然化学连接进行肽的共价缩合。选择性脱硫后,两个 Cys(Acm)残基的保护被去除,得到了带有复杂型唾液酸化双天线寡糖或其无唾液酸形式的目标全长干扰素-β多肽链。随后的折叠伴随着天然二硫键的形成,得到了正确折叠的均一性糖基干扰素-β。化学合成的唾液酸化干扰素-β在体内表现出很强的抗肿瘤活性。

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