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通过阻断核心寡糖组装对多形汉逊酵母进行糖基工程改造以生产具有三甘露糖基核心N-聚糖的糖蛋白。

Glycoengineering of the methylotrophic yeast Hansenula polymorpha for the production of glycoproteins with trimannosyl core N-glycan by blocking core oligosaccharide assembly.

作者信息

Oh Doo-Byoung, Park Jeong-Seok, Kim Moo Woong, Cheon Seon Ah, Kim Eun Jung, Moon Hye Yun, Kwon Ohsuk, Rhee Sang Ki, Kang Hyun Ah

机构信息

Omics and Integration Research Center, Korea Research Institute of Bioscience and Biotechnology, Daejeon, Korea.

出版信息

Biotechnol J. 2008 May;3(5):659-68. doi: 10.1002/biot.200700252.

Abstract

The initial lipid-linked oligosaccharide Glc(3)Man(9)GlcNAc(2)-dolichyl pyrophosphate (Dol-PP) for N-glycan is synthesized and assembled at the membrane of the endoplasmic reticulum (ER) and subsequently transferred to a nascent polypeptide by the oligosaccharide transferase complex. We have identified an ALG3 homolog (HpALG3) coding for a dolichyl-phosphate-mannose dependent alpha-1,3-mannosyltransferase in the methylotrophic yeast Hansenula polymorpha. The detailed analysis of glycan structure by linkage-specific mannosidase digestion showed that HpALG3 is responsible for the conversion of Man5GlcNAc(2)-Dol-PP to Man(6)GlcNAc(2)-Dol-PP, the first step to attach a mannose to the lipid-linked oligosaccharide in the ER. The N-glycosylation pathway of H. polymorpha has been remodeled by deleting the HpALG3 gene in the Hpoch1 null mutant strain blocked in the yeast-specific outer mannose chain synthesis and by introducing an ER-targeted Aspergillus saitoi alpha-1,2-mannosidase gene. This glycoengineered H. polymorpha strain produced glycoproteins mainly containing trimannosyl core N-glycan (Man(3)GlcNAc(2)), which is the common core backbone of various human-type N-glycans. The results demonstrate the high potential of H. polymorpha to be developed as an efficient expression system for the production of glycoproteins with humanized glycans.

摘要

用于N-聚糖的初始脂质连接寡糖Glc(3)Man(9)GlcNAc(2)-二磷酸多萜醇(Dol-PP)在内质网(ER)膜上合成并组装,随后通过寡糖转移酶复合物转移至新生多肽。我们在甲基营养型酵母多形汉逊酵母中鉴定出一个ALG3同源物(HpALG3),其编码一种依赖于二磷酸多萜醇甘露糖的α-1,3-甘露糖基转移酶。通过连接特异性甘露糖苷酶消化对聚糖结构进行详细分析表明,HpALG3负责将Man5GlcNAc(2)-Dol-PP转化为Man(6)GlcNAc(2)-Dol-PP,这是在内质网中向脂质连接寡糖连接一个甘露糖的第一步。通过在酵母特异性外甘露糖链合成受阻的Hpoch1缺失突变株中删除HpALG3基因,并引入内质网靶向的斋藤曲霉α-1,2-甘露糖苷酶基因,对多形汉逊酵母的N-糖基化途径进行了改造。这种糖工程化的多形汉逊酵母菌株产生的糖蛋白主要含有三甘露糖基核心N-聚糖(Man(3)GlcNAc(2)),它是各种人源型N-聚糖的共同核心骨架。结果表明,多形汉逊酵母具有很高的潜力,可被开发为一种高效表达系统,用于生产具有人源化聚糖的糖蛋白。

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