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利用高效液相色谱/电喷雾质谱法和顺序糖苷酶消化法对人血浆蛋白卵磷脂胆固醇酰基转移酶和载脂蛋白D的糖基化进行位点特异性检测和结构表征。

Site-specific detection and structural characterization of the glycosylation of human plasma proteins lecithin:cholesterol acyltransferase and apolipoprotein D using HPLC/electrospray mass spectrometry and sequential glycosidase digestion.

作者信息

Schindler P A, Settineri C A, Collet X, Fielding C J, Burlingame A L

机构信息

Department of Pharmaceutical Chemistry, University of California, San Francisco 94143, USA.

出版信息

Protein Sci. 1995 Apr;4(4):791-803. doi: 10.1002/pro.5560040419.

Abstract

Site-specific structural characterization of the glycosylation of human lecithin:cholesterol acyltransferase (LCAT) was carried out using microbore reversed-phase high performance liquid chromatography coupled with electrospray ionization mass spectrometry (HPLC/ESIMS). A recently described mass spectrometric technique involving monitoring of carbohydrate-specific fragment ions during HPLC/ESIMS was employed to locate eight different groups of glycopeptides in a digest of a human LCAT protein preparation. In addition to the four expected N-linked glycopeptides of LCAT, a di-O-linked glycopeptide was detected, as well as three additional glycopeptides. Structural information on the oligosaccharides from all eight glycopeptides was obtained by sequential glycosidase digestion of the glycopeptides followed by HPLC/ESIMS. All four potential N-linked glycosylation sites (Asn20, Asn84, Asn272, and Asn384) of LCAT were determined to contain sialylated triantennary and/or biantennary complex structures. Two unanticipated O-linked glycosylation sites were identified at Thr407 and Ser409 of the LCAT O-linked glycopeptide, each of which contain sialylated galactose beta 1-->3N-acetylgalactosamine structures. The three additional glycopeptides were determined to be from a copurifying protein, apolipoprotein D, which contains potential N-linked glycosylation sites at Asn45 and Asn78. These glycopeptides were determined to bear sialylated triantennary oligosaccharides or fucosylated sialylated biantennary oligosaccharides. Previous studies of LCAT indicated that removal of the glycosylation site at Asn272 converts this protein to a phospholipase (Francone OL, Evangelista L, Fielding CJ, 1993, Biochim Biophys Acta 1166:301-304). Our results indicate that the carbohydrate structures themselves are not the source of this functional discrimination; rather, it must be mediated by the structural environment around Asn272.

摘要

利用微径反相高效液相色谱联用电喷雾电离质谱法(HPLC/ESIMS)对人卵磷脂:胆固醇酰基转移酶(LCAT)的糖基化进行位点特异性结构表征。采用一种最近描述的质谱技术,即在HPLC/ESIMS过程中监测碳水化合物特异性碎片离子,来在人LCAT蛋白质制剂的消化物中定位八组不同的糖肽。除了LCAT预期的四种N - 连接糖肽外,还检测到一种二 - O - 连接糖肽以及另外三种糖肽。通过对糖肽进行顺序糖苷酶消化,然后进行HPLC/ESIMS,获得了所有八种糖肽中寡糖的结构信息。LCAT的所有四个潜在N - 连接糖基化位点(Asn20、Asn84、Asn272和Asn384)被确定含有唾液酸化的三触角和/或双触角复合结构。在LCAT的O - 连接糖肽的Thr407和Ser409处鉴定出两个意外的O - 连接糖基化位点,每个位点都含有唾液酸化的半乳糖β1→3N - 乙酰半乳糖胺结构。另外三种糖肽被确定来自一种共纯化的蛋白质——载脂蛋白D,其在Asn45和Asn78处含有潜在的N - 连接糖基化位点。这些糖肽被确定带有唾液酸化的三触角寡糖或岩藻糖基化的唾液酸化双触角寡糖。先前对LCAT的研究表明,去除Asn272处的糖基化位点会将该蛋白质转化为磷脂酶(Francone OL,Evangelista L,Fielding CJ,1993,Biochim Biophys Acta 1166:301 - 304)。我们的结果表明,碳水化合物结构本身并非这种功能差异的来源;相反,它一定是由Asn272周围的结构环境介导的。

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