不同载体表达鸡免疫球蛋白Y糖蛋白的n -糖基化特征

Sachiko Kondo, H. Yagi, Y. Kamiya, Akihiko Ito, Motoki Kuhara, Ayako Kudoh, N. Takahashi, Koichi Kato
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引用次数: 3

摘要

免疫球蛋白Y (IgY)作为一种免疫化学试剂被广泛使用,近年来被认为是一种潜在的治疗工具。IgY的Fc部分在Asn407上保守了一个n -糖基化位点,在结构上与哺乳动物中其他Ig类的保守糖基化位点相当。尽管有这些相似之处,鸡血清和蛋黄中的IgYs已被证明是不同的糖型,单葡糖基化高甘露糖型寡糖的高发就是最好的例证,这在哺乳动物糖蛋白中很少发现。为了进一步了解IgY的糖基化特性,我们报告了重组鸡IgY的比较n -糖基化分析,这些重组鸡IgYs在其可变区域具有相同的氨基酸序列,但由不同的生产载体表达。从这些IgYs中分离出的n -连接寡糖进行了多维高效液相色谱定位和质谱分析。根据不同的生产载体,IgYs的n -糖基化谱表现出明显不同的模式。鸡杂交瘤细胞表达的IgY保留了早熟的高甘露糖型低聚糖,而CHO细胞表达的IgY则经历了广泛的n -聚糖加工,呈现出高天线型低聚糖。在不同载体表达的IgYs中,核心聚焦化和分切n -乙酰氨基葡萄糖化水平以及唾液连锁类型也存在显著差异。尽管存在这些差异,重组IgY抗体通常表达相当数量的单糖基化糖型,这表明这种糖基化特征在某种程度上与IgY- fc独特的四元结构有关,至少部分地掩盖了Asn407 n -聚糖,并将其与内质网中的伴侣机制隔离。我们认为,n -聚糖加工的时间和效率以及IgY的四级结构形成与IgE的时间和效率有很大不同,并且取决于用于重组IgY生产的载体,导致单糖基化物种的发生率不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
N-Glycosylation Profiles of Chicken Immunoglobulin Y Glycoproteins Expressed by Different Production Vehicles
Immunoglobulin Y (IgY), abundant in egg yolk, is widely used as an immunochemical reagent and has been recently appreciated as a potential therapeutic tool. The Fc portion of IgY conserves an N-glycosylation site at Asn407, which is structurally equivalent to conserved glycosylation sites of other Ig classes in mammals. Despite such similarities, IgYs from chicken serum and egg yolk have been shown to be distinct glycoforms, best exemplified by the high incidence of monoglucosylated high mannose-type oligosaccharides, which are rarely found in mammalian glycoproteins. To gain further insight into the glycosylation properties of IgY, we report a comparative N-glycosylation profiling of recombinant chicken IgYs that have identical amino acid sequences in their variable regions but are expressed by different production vehicles. The N-linked oligosaccharides cleaved from these IgYs were subjected to multidimensional HPLC mapping in conjunction with mass spectrometric analyses. N-glycosylation profiles of the IgYs showed obviously different patterns depending on the production vehicle. While IgY expressed by chicken hybridoma cells retained the premature high mannose-type oligosaccharides, IgY expressed by CHO cells experienced extensive N-glycan processing and displayed high antennary oligosaccharides. Significant differences were also observed in the levels of core fucosylation and bisecting N-acetylglucosaminylation and in sialyl linkage types among the IgYs expressed by different vehicles. Despite such differences, the recombinant IgY antibodies commonly expressed considerable populations of monoglucosylated glycoforms, suggesting that this glycosylation feature is, to some extent, associated with the distinctive quaternary structure of IgY-Fc, which, at least partially, masks the Asn407 N-glycans and sequesters them from chaperone mechanisms in the endoplasmic reticulum. We suggest that the timing and efficiency of N-glycan processing and the quaternary structure formation of IgY are considerably different from those of IgE and depend on the vehicles used for recombinant IgY production, resulting in varying incidence of monoglucosylated species.
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