Yurewicz E C, Pack B A, Sacco A G
Department of Obstetrics and Gynecology, C.S. Mott Center for Human Growth and Development, Wayne State University School of Medicine, Detroit, Michigan.
Mol Reprod Dev. 1992 Oct;33(2):182-8. doi: 10.1002/mrd.1080330210.
The distribution of O-linked oligosaccharides on the M(r) 55,000 glycoproteins, ZP3 alpha and ZP3 beta, of the porcine oocyte zona pellucida was examined. Purified preparations of endo-beta-galactosidase digested ZP3 alpha and ZP3 beta were reduced and carboxamidomethylated and digested with trypsin. When the trypsin digests were mapped by HPLC, each glycoprotein yielded only one N-acetylgalactosamine containing glycopeptide. Purification of the O-glycopeptides was achieved by a two-step protocol. Tryptic digests were applied to jacalin-agarose and specifically-bound O-glycopeptides (alpha OGP and beta OGP) were eluted with buffer containing 50 mM alpha-methylgalactoside as the haptenic sugar. Further purification of each O-glycopeptide was accomplished by reverse phase HPLC. Purified O-glycopeptides were characterized with respect to amino acid and carbohydrate compositions and sequenced by automated Edman degradation; alpha OGP was a 41-residue glycopeptide with three O-linked sugar chains. Sequence comparisons revealed a 75% identity between alpha OGP and a corresponding segment of rabbit rec55 zona protein; beta OGP was a 25-residue glycopeptide characterized by the presence of one N-linked and five O-linked sugar chains and a trypsin-resistant internal arginine residue. Sequence alignments revealed an 80% or greater identity between beta OGP and internal peptides of mouse, hamster and human ZP3 zona proteins. These studies demonstrate that in the case of ZP3 alpha and ZP3 beta, the pig homologues of rabbit rec55 and mouse ZP3, respectively, O-linked oligosaccharides are confined within delimited domains rather than widely dispersed on the polypeptide backbone. Such clustering of O-linked oligosaccharides may represent an essential determinant of the structure and biological activity of zona proteins.
研究了猪卵母细胞透明带中分子量为55,000的糖蛋白ZP3α和ZP3β上O-连接寡糖的分布。对经内切β-半乳糖苷酶消化的ZP3α和ZP3β的纯化制剂进行还原、羧甲基化,然后用胰蛋白酶消化。当通过高效液相色谱法(HPLC)对胰蛋白酶消化产物进行图谱分析时,每种糖蛋白仅产生一个含N-乙酰半乳糖胺的糖肽。通过两步法实现了O-糖肽的纯化。将胰蛋白酶消化产物应用于红豆蔻凝集素-琼脂糖,用含有50 mMα-甲基半乳糖苷作为半抗原糖的缓冲液洗脱特异性结合的O-糖肽(αOGP和βOGP)。通过反相HPLC进一步纯化每种O-糖肽。对纯化的O-糖肽进行氨基酸和碳水化合物组成分析,并通过自动Edman降解进行测序;αOGP是一种含有三条O-连接糖链的41个残基的糖肽。序列比较显示αOGP与兔rec55透明带蛋白的相应片段之间有75%的同一性;βOGP是一种含有一条N-连接和五条O-连接糖链以及一个抗胰蛋白酶的内部精氨酸残基的25个残基的糖肽。序列比对显示βOGP与小鼠、仓鼠和人ZP3透明带蛋白的内部肽段之间有80%或更高的同一性。这些研究表明,就ZP3α和ZP3β而言,它们分别是兔rec55和小鼠ZP3的猪同源物,O-连接寡糖局限于特定区域,而不是广泛分散在多肽主链上。这种O-连接寡糖的聚集可能代表了透明带蛋白结构和生物活性的一个重要决定因素。