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糖基化马催乳素及其碳水化合物部分。

Glycosylated equine prolactin and its carbohydrate moiety.

作者信息

Butnev V Y, Gotschall R R, Baker V L, Moore W T, Gout P W, Bousfield G R

机构信息

Department of Biological Sciences, Wichita State University, Kansas 67260-0026, USA.

出版信息

J Protein Chem. 1996 Jul;15(5):413-26. doi: 10.1007/BF01886848.

Abstract

Glycosylated equine prolactin (G-ePRL) and nonglycosylated ePRL were purified to homogeneity from side fractions obtained during isolation of LH/FSH from horse pituitaries. Both PRL forms were isolated together in high yield by the isolation procedure used for glycosylated porcine PRL/(G-pPRL) and pPRL, involving acetone extraction/precipitation, NaCl and isoelectric precipitation, and gel filtration. Purification of G-ePRL required additional Con A chromatography. The N-terminal amino acid sequencing for 32 cycles of G-ePRL and ePRL resulted in sequences identical to the known primary structure of ePRL. Based on MALDI mass spectrometry analysis and SDS-PAGE mobilities, G-ePRL and ePRL had estimated molecular weights of 25,000 and 23,000 Da, respectively. G-ePRL displayed only 60% of the immunoreactivity of ePRL in homologous radioimmunoassay. Using the Nb2 lymphoma cell bioassay, ePRL was found to have about 1/30th the mitogenic activity of bovine PRL; G-ePRL was approximately 1/10th as active as ePRL. Glycosylation of G-ePRL at Asn31 was confirmed by isolation and sequence analysis of an enzymatically derived G-ePRL glycopeptide spanning residues 29-37. Monosaccharide compositions of intact G-ePRL and this glycopeptide were very similar (Man3, GlcNAc2, GalNAc1, Fuc0.6, Gal0.2, NeuAc0.15) and resembled that of G-pPRL. The glycopeptide contained one sulfate residue as determined by ion chromatography after acid hydrolysis, indicating the presence of a sulfated monosaccharide. Comparative carbohydrate analysis of G-ePRL and other G-PRL preparations suggests that the functionally significant Asn31 carbohydrate unit is a fucosylated complex mono- and /or biantennary oligosaccharide terminating with a sulfated GalNAc residue and two or three Man residues.

摘要

从马垂体中分离促黄体生成素/促卵泡激素(LH/FSH)过程中获得的侧馏分中,将糖基化马催乳素(G-ePRL)和非糖基化ePRL纯化至同质。通过用于糖基化猪催乳素/(G-pPRL)和pPRL的分离程序,包括丙酮萃取/沉淀、NaCl和等电沉淀以及凝胶过滤,以高产率同时分离出两种PRL形式。G-ePRL的纯化需要额外的伴刀豆球蛋白A(Con A)层析。对G-ePRL和ePRL进行32个循环的N端氨基酸测序,结果得到的序列与已知的ePRL一级结构相同。基于基质辅助激光解吸电离质谱(MALDI)分析和十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)迁移率,G-ePRL和ePRL的估计分子量分别为25,000和23,000道尔顿。在同源放射免疫分析中,G-ePRL仅表现出ePRL免疫反应性的60%。使用Nb2淋巴瘤细胞生物测定法,发现ePRL的促有丝分裂活性约为牛催乳素的1/30;G-ePRL的活性约为ePRL的1/10。通过分离和序列分析跨越残基29 - 37的酶促衍生G-ePRL糖肽,证实了G-ePRL在Asn31处的糖基化。完整G-ePRL和该糖肽的单糖组成非常相似(甘露糖3、N-乙酰葡糖胺2、N-乙酰半乳糖胺1、岩藻糖0.6、半乳糖0.2、唾液酸0.15),与G-pPRL相似。酸水解后通过离子色谱法测定,该糖肽含有一个硫酸根残基,表明存在硫酸化单糖。对G-ePRL和其他G-PRL制剂的碳水化合物比较分析表明,功能上重要的Asn31碳水化合物单元是一种岩藻糖基化的复杂单天线和/或双天线寡糖,末端带有硫酸化的N-乙酰半乳糖胺残基和两个或三个甘露糖残基。

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