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与毕赤酵母糖工程表达的糖蛋白的 DC-SIGN 结合。

Binding of DC-SIGN to glycoproteins expressed in glycoengineered Pichia pastoris.

机构信息

Analytical Development, GlycoFi, Inc., Merck & Co., 21 Lafayette Street, Suite 200, Lebanon, New Hampshire 03766, USA.

出版信息

J Immunol Methods. 2012 Dec 14;386(1-2):34-42. doi: 10.1016/j.jim.2012.08.015. Epub 2012 Sep 14.

Abstract

Previous studies have shown that glycoproteins expressed in wild-type Pichia pastoris bind to Dendritic cell-SIGN (DC-Specific Intercellular adhesion molecule-3 Grabbing Nonintegrin), a mannose-binding receptor found on dendritic cells in peripheral tissues which is involved in antigen presentation and the initiation of an immune response. However, the binding of DC-SIGN to glycoproteins purified from P. pastoris strains engineered to express humanized N- and O-linked glycans has not been tested to date. In this study, the binding of glycoproteins with specific high-mannose or human N- and O-linked glycan structures to DC-SIGN was tested. Proteins with humanized N-glycans including Man5 structures and O-glycans (up to as many as 24) with single mannose chain length showed DC-SIGN binding that was comparable to that measured for a CHO-produced IgG1 which lacks O-linked mannose. Glycoproteins with wild-type N-glycans and mannotriose and higher O-glycans bound to DC-SIGN in a manner that was strongly inhibited by either the use of enzymatic N-deglycosylation or sodium meta-periodate oxidation. Mannan purified from humanized P. pastoris also showed lower ability to inhibit DC-SIGN binding to glycoproteins with wild type fungal glycosylation than mannan purified from wild type strains. This study shows that humanized P. pastoris can produce glycoproteins that do not bind to DC-SIGN.

摘要

先前的研究表明,在野生型毕赤酵母中表达的糖蛋白与树突状细胞特异性细胞间黏附分子 3 抓取非整合素(Dendritic cell-SPECIFIC INTERCELLULAR ADHESION MOLECULE-3 GRABBING NONINTEGRIN,DC-SIGN)结合,DC-SIGN 是外周组织树突状细胞上的一种甘露糖结合受体,参与抗原呈递和免疫反应的启动。然而,迄今为止,尚未测试过表达人源 N-和 O-连接糖的毕赤酵母工程菌株中纯化的糖蛋白与 DC-SIGN 的结合。在这项研究中,测试了具有特定高甘露糖或人源 N-和 O-连接糖结构的糖蛋白与 DC-SIGN 的结合。具有人源 N-聚糖结构(包括 Man5 结构)和单甘露糖链长的 O-聚糖(多达 24 个)的蛋白与 CHO 产生的缺乏 O-连接甘露糖的 IgG1 相比,具有相当的 DC-SIGN 结合能力。具有野生型 N-聚糖和mannotriose 以及更高的 O-聚糖的糖蛋白与 DC-SIGN 的结合方式强烈受到酶促 N-去糖基化或偏亚硫酸钠氧化的抑制。与人源化毕赤酵母纯化的甘露聚糖相比,从野生型菌株中纯化的甘露聚糖对 DC-SIGN 与具有野生型真菌糖基化的糖蛋白结合的抑制作用较弱。这项研究表明,人源化毕赤酵母可以产生不与 DC-SIGN 结合的糖蛋白。

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