Kühn L C, Kocher H P, Hanly W C, Cook L, Jaton J C, Kraehenbuhl J P
J Biol Chem. 1983 May 25;258(10):6653-9.
Secretory component (SC), synthesized as a transmembrane protein, acts as the receptor that binds IgA dimers and mediates their transepithelial transport. Cleavage of the receptor (membrane SC) apparently occurs during transport and a fragment, the secreted form, is generated, which remains tightly bound to the IgA dimer. In the rabbit, variation in the size of membrane SC is observed with both a high and a low molecular weight family, each composed either of two or of four distinct polypeptides depending on the individual rabbit. The same degree of size heterogeneity is observed for secreted SC. Part of this size heterogeneity is related to genetic polymorphism. The milk of individual rabbits typed with anti-SC-allotype sera reveals three different banding patterns. The simplest pattern, found in t61/t61 and t62/t62 homozygotes, consists of an upper and a lower doublet. Since each band of these two doublets in the t62 allotype migrates slightly faster than its counterpart in the t61 allotype, a composite pattern is observed in the heterozygotes (t61/t62). Within a given allotypic group, all SC polypeptide chains expressed the identical allotypic specificity. The 2000 to 4000 difference in molecular weight between the two forms of a doublet probably reflects differences in the number of glycosylated asparagine residues, since individual bands of a doublet show identical peptide maps. High and low molecular weight families are also structurally related to each other as shown by one-dimensional peptide maps and identical NH2- and COOH-terminal amino acid sequences. These results indicate that the 25-kDa size difference between SC from the high and low molecular weight families reflects an intramolecular deletion.
分泌成分(SC)作为一种跨膜蛋白合成,充当结合IgA二聚体并介导其跨上皮运输的受体。受体(膜SC)的切割显然发生在运输过程中,并产生一个片段,即分泌形式,它与IgA二聚体紧密结合。在兔子中,观察到膜SC大小存在差异,有高分子量和低分子量两个家族,每个家族根据兔子个体不同,由两条或四条不同的多肽组成。分泌型SC也观察到相同程度的大小异质性。这种大小异质性部分与基因多态性有关。用抗SC同种异型血清分型的个体兔子的乳汁显示出三种不同的条带模式。在t61/t61和t62/t62纯合子中发现的最简单模式由一个上部和一个下部双峰组成。由于t62同种异型中这两个双峰的每条带迁移速度略快于t61同种异型中的对应带,因此在杂合子(t61/t62)中观察到复合模式。在给定的同种异型组内,所有SC多肽链都表达相同的同种异型特异性。双峰两种形式之间2000至4000的分子量差异可能反映了糖基化天冬酰胺残基数量的差异,因为双峰的各个条带显示出相同的肽图。通过一维肽图以及相同的NH2和COOH末端氨基酸序列表明,高分子量和低分子量家族在结构上也相互关联。这些结果表明,高分子量和低分子量家族的SC之间25 kDa的大小差异反映了分子内缺失。