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表面活性物质相关糖蛋白A的糖基化与分泌

Glycosylation and secretion of surfactant-associated glycoprotein A.

作者信息

Whitsett J A, Ross G, Weaver T, Rice W, Dion C, Hull W

出版信息

J Biol Chem. 1985 Dec 5;260(28):15273-9.

PMID:2866181
Abstract

Synthesis of glycoprotein A, the major surfactant-associated protein, was demonstrated in Type II epithelial cells isolated from rat lung. Predominant, secreted forms migrated as glycoproteins with asparagine-linked, complex-type oligosaccharides (32,000-36,000 daltons, pI 4.2-4.8). Primary in vitro translation products of the glycoprotein migrated as five distinct proteins of approximately 26,000 daltons which were processed by pancreatic microsomal membranes in vitro to 30,000-34,000-dalton, endoglycosidase F-sensitive forms. These in vitro processed forms of glycoprotein A co-migrated with intracellular forms immunoprecipitated from [35S]methionine-labeled, Type II cells. Pulse-chase experiments with [35S]methionine-labeled cells demonstrated rapid synthesis of endoglycosidase H-sensitive precursors of 34,000 daltons, pI 4.7-4.8, which were neither secreted from Type II cells nor detected in surfactant from alveolar lavage. These high-mannose forms were slowly processed to more acidic, endoglycosidase H-resistant, neuraminidase-sensitive forms. At between 10 and 180 min, fully sialylated or other endoglycosidase H-resistant forms were a minor fraction of intracellular glycoprotein A. After 16 h, intracellular glycoproteins A were primarily present as endoglycosidase H-resistant forms. Secretion of mature, sialylated, glycoprotein A was first detected 1 h after labeling, and was also readily detected after 16-24 h chase period. Tunicamycin, which blocks N-linked protein glycosylation, resulted in synthesis of three major 26,000-dalton proteins which co-migrated with the nonglycosylated, surfactant-associated proteins A1 present in surfactant from alveolar lavage and with the major in vitro translation products of rat lung poly(A+) mRNA. Tunicamycin inhibited secretion of glycoprotein A. Swainsonine, which inhibits Golgi alpha-mannosidase II, completely inhibited synthesis of the fully sialylated molecule. Swainsonine produced forms of glycoprotein A which were both neuraminidase- and endoglycosidase H-sensitive and were readily secreted. Monensin, an ionophore that alters protein transport, markedly inhibited intracellular sialylation and secretion. These studies demonstrate that pulmonary Type II cells rapidly synthesize and process surfactant-associated glycoprotein A precursors to endoglycosidase H-sensitive forms, which are slowly sialylated prior to secretion.

摘要

在从大鼠肺中分离出的II型上皮细胞中证实了主要的表面活性剂相关蛋白糖蛋白A的合成。主要的分泌形式以糖蛋白形式迁移,带有天冬酰胺连接的复合型寡糖(32,000 - 36,000道尔顿,pI 4.2 - 4.8)。该糖蛋白的体外初级翻译产物以五种约26,000道尔顿的不同蛋白质形式迁移,这些蛋白质在体外经胰腺微粒体膜加工成30,000 - 34,000道尔顿、对内切糖苷酶F敏感的形式。这些体外加工的糖蛋白A形式与从[35S]甲硫氨酸标记的II型细胞中免疫沉淀的细胞内形式共同迁移。用[35S]甲硫氨酸标记细胞的脉冲追踪实验表明,快速合成了34,000道尔顿、pI 4.7 - 4.8、对内切糖苷酶H敏感的前体,这些前体既未从II型细胞分泌出来,也未在肺泡灌洗的表面活性剂中检测到。这些高甘露糖形式缓慢加工成更酸性、对内切糖苷酶H有抗性、对神经氨酸酶敏感的形式。在10至180分钟之间,完全唾液酸化或其他对内切糖苷酶H有抗性的形式是细胞内糖蛋白A的一小部分。16小时后,细胞内糖蛋白A主要以内切糖苷酶H有抗性的形式存在。成熟的、唾液酸化的糖蛋白A的分泌在标记后1小时首次检测到,在16 - 24小时的追踪期后也很容易检测到。衣霉素可阻断N - 连接的蛋白质糖基化,导致合成三种主要的26,000道尔顿蛋白质,它们与肺泡灌洗表面活性剂中存在的未糖基化的表面活性剂相关蛋白A1以及大鼠肺poly(A+) mRNA的主要体外翻译产物共同迁移。衣霉素抑制糖蛋白A的分泌。脱氧野尻霉素可抑制高尔基体α - 甘露糖苷酶II,完全抑制完全唾液酸化分子的合成。脱氧野尻霉素产生的糖蛋白A形式对神经氨酸酶和内切糖苷酶H均敏感,且易于分泌。莫能菌素是一种改变蛋白质转运的离子载体,显著抑制细胞内唾液酸化和分泌。这些研究表明,肺II型细胞快速合成并将表面活性剂相关糖蛋白A前体加工成对内切糖苷酶H敏感的形式,这些形式在分泌前缓慢进行唾液酸化。

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