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肽图谱分析揭示了囊性纤维化和正常气管支气管粘蛋白非糖基化结构域的差异。

Peptide mapping reveals differences in the non-glycosylated domains of cystic fibrosis and normal tracheobronchial mucins.

作者信息

Desai V C, Shankar V, de la Rocha S R, Sachdev G P

机构信息

College of Pharmacy, University of Oklahoma Health Sciences Center, Oklahoma City 73190.

出版信息

Indian J Biochem Biophys. 1993 Dec;30(6):382-8.

PMID:8005622
Abstract

Tracheobronchial mucins from lung mucus secretions of healthy individuals and from patients with cystic fibrosis (CF) were purified according to a protocol established in our laboratory. Following digestion of the purified, reduced-alkylated mucin (free of 118 kDa and 70 kDa components) with trypsin-L-1-tosylamido-2-phenylethyl chloromethyl ketone, three fractions (TR-1, TR-2 and TR-3) were observed upon chromatography on a Superose 6 column using FPLC. TR-1 (glycosylated fraction) contained all of the carbohydrate, while TR-2 and TR-3 fractions had no detectable sugars. Comparison of the amino acid composition of TR-1 fractions from normal and CF individuals revealed no significant differences, while the TR-2 fractions from these mucins showed noticeable differences. Peptide mapping of TR-2 fractions from normal and CF mucins was performed on a C18 reverse phase column using FPLC. The peptide maps of normal mucins were markedly different from CF mucins. A greater number of peptides were seen in the TR-2 fractions of normal mucins when compared to CF mucin TR-2 fractions. In addition, normal TR-2 fractions appeared to be comprised of more hydrophobic peptides when compared to CF TR-2 fractions. These data provide evidence of possible structural differences in the non-glycosylated regions of CF and non-CF mucins, since the TR-2 fractions are essentially derived from the T-domains in the "naked" stretches of the mucin polypeptide backbone.

摘要

按照我们实验室制定的方案,从健康个体和囊性纤维化(CF)患者的肺黏液分泌物中纯化气管支气管黏蛋白。用胰蛋白酶-L-1-甲苯磺酰氨基-2-苯乙基氯甲基酮消化纯化后的还原烷基化黏蛋白(不含118 kDa和70 kDa成分)后,使用快速蛋白质液相色谱(FPLC)在Superose 6柱上进行层析时观察到三个组分(TR-1、TR-2和TR-3)。TR-1(糖基化组分)含有所有碳水化合物,而TR-2和TR-3组分未检测到糖。对正常个体和CF个体的TR-1组分的氨基酸组成进行比较,未发现显著差异,而这些黏蛋白的TR-2组分显示出明显差异。使用FPLC在C18反相柱上对正常和CF黏蛋白的TR-2组分进行肽图谱分析。正常黏蛋白的肽图谱与CF黏蛋白明显不同。与CF黏蛋白的TR-2组分相比,正常黏蛋白的TR-2组分中可见更多肽段。此外,与CF的TR-2组分相比,正常的TR-2组分似乎由更多疏水肽组成。这些数据提供了CF和非CF黏蛋白非糖基化区域可能存在结构差异的证据,因为TR-2组分基本上源自黏蛋白多肽主链“裸露”片段中的T结构域。

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