Whitsett J A, Weaver T, Hull W, Ross G, Dion C
Biochim Biophys Acta. 1985 Apr 5;828(2):162-71. doi: 10.1016/0167-4838(85)90053-6.
Surfactant-associated glycoproteins A, 38 (A3), 32 (A2) and 26 (A1) kDa, pI (4.2-4.8), were identified as related proteins present in surfactant isolated from rat lung lavage fluid. Differences in size and charge among surfactant-associated glycoproteins A were related to differences in glycosylation as determined by reduction of the larger forms (38 and 32 kDa) to 26 kDa by endoglycosidase F and by increased isoelectric points of the glycosylated forms after treatment with neuraminidase. Synthesis and secretion of surfactant-associated glycoproteins A and precursors were demonstrated in purified rat Type II epithelial cells by immunoprecipitation of [35S]methionine-labelled proteins with anti-surfactant-associated glycoprotein A antisera. In pulse-chase experiments, labelled proteins 26-34 kDa, appeared within 10 min and smaller forms co-migrated with surfactant-associated glycoprotein A from alveolar lavage. The relative abundance of the larger molecular mass forms (30-34 kDa, pI 4.8) increased at later times up to 3 h. More acidic mature forms, which co-migrated with surfactant-associated glycoproteins A2 and A3 in surfactant (38 and 32 kDa), were readily detectable in the media, but were not abundant forms in lysates of labelled Type II cells after 1-3 h of incubation. Primary translation products of surfactant-associated glycoprotein A were immunoprecipitated with monospecific anti-surfactant-associated glycoprotein A antiserum after in vitro translation of poly(A)+ mRNA isolated from adult rat lung. The immunoprecipitated translation product migrated at 26 kDa, pI 4.8, and migrated slightly faster than surfactant-associated glycoprotein A1 from surfactant. Treatment of surfactant-associated glycoprotein A with bacterial collagenase resulted in proteolytic fragments 23-20 kDa, pI 4.2-4.8, which no longer underwent sulfhydryl-dependent cross-linking, suggesting that the collagen-like domain was required for the sulfhydryl-dependent oligomerization. Surfactant-associated glycoproteins A are synthesized by rat Type II epithelial cells as pre-proteins, 26-34 kDa. Larger forms result primarily from N-linked glycosylation of the 26 kDa primary translation product. Mature, more acidic forms result from further addition of sialic acid.
表面活性剂相关糖蛋白A,分子量分别为38(A3)、32(A2)和26(A1)kDa,等电点为4.2 - 4.8,被鉴定为存在于从大鼠肺灌洗液中分离出的表面活性剂中的相关蛋白。表面活性剂相关糖蛋白A在大小和电荷上的差异与糖基化差异有关,这是通过内切糖苷酶F将较大形式(38和32 kDa)还原为26 kDa以及用神经氨酸酶处理后糖基化形式的等电点增加来确定的。通过用抗表面活性剂相关糖蛋白A抗血清免疫沉淀[35S]甲硫氨酸标记的蛋白,在纯化的大鼠II型上皮细胞中证实了表面活性剂相关糖蛋白A及其前体的合成和分泌。在脉冲追踪实验中,26 - 34 kDa的标记蛋白在10分钟内出现,较小的形式与来自肺泡灌洗的表面活性剂相关糖蛋白A共迁移。较大分子量形式(30 - 34 kDa,等电点4.8)的相对丰度在3小时内的后期增加。在培养基中很容易检测到与表面活性剂中表面活性剂相关糖蛋白A2和A3(38和32 kDa)共迁移的更酸性的成熟形式,但在标记的II型细胞孵育1 - 3小时后的裂解物中不是丰富的形式。从成年大鼠肺中分离的多聚腺苷酸(poly(A)+)mRNA进行体外翻译后,用单特异性抗表面活性剂相关糖蛋白A抗血清免疫沉淀表面活性剂相关糖蛋白A的初级翻译产物。免疫沉淀的翻译产物在26 kDa,等电点4.8处迁移,并且迁移速度比表面活性剂中的表面活性剂相关糖蛋白A1略快。用细菌胶原酶处理表面活性剂相关糖蛋白A产生23 - 20 kDa,等电点4.2 - 4.8的蛋白水解片段,这些片段不再进行巯基依赖性交联,这表明胶原样结构域是巯基依赖性寡聚化所必需的。表面活性剂相关糖蛋白A由大鼠II型上皮细胞作为26 - 34 kDa的前体蛋白合成。较大的形式主要是由于26 kDa初级翻译产物的N - 连接糖基化。成熟的、更酸性的形式是由于进一步添加唾液酸所致。