Ullrich O, Mann K, Haase W, Koch-Brandt C
Abteilung Molekulare Genetik, Universität Frankfurt, Republic of Germany.
J Biol Chem. 1991 Feb 25;266(6):3518-25.
We describe a 20-kDa phosphorylated polypeptide, which is secreted constitutively at the apical surface of the kidney-derived Madin-Darby canine kidney cell line. Using polyclonal antibodies raised against this protein, we show that it is generated from a 60-kDa O-glycosylated, sulfated, and phosphorylated precursor protein by an intracellular proteolytic maturation step, which is pH-sensitive. Amino acid sequence analysis of the 20-kDa secreted polypeptide demonstrated that it displays 70% identity with the carboxyl-terminal amino acids of human osteopontin. The amino-terminal amino acid of the 20-kDa polypeptide corresponds to amino acid 213 of human osteopontin. Thrombin has been shown to cleave rat osteopontin in vivo and in vitro at amino acid 153, yielding two fragments of 28 and 26 kDa. A similar cleavage product can be detected by thrombin treatment of the 60-kDa precursor, suggesting that the precursor is identical or closely related to osteopontin. In the rat nephron, the protein has been localized along the luminal surfaces of the proximal and distal tubule and the collecting duct cells. These results show that in the kidney-derived cell line Madin-Darby canine kidney osteopontin or a closely related protein is proteolytically processed to a 20-kDa polypeptide, raising the possibility that diverse functions of osteopontin in various tissues might be attributed to specific processing to distinct polypeptides.
我们描述了一种20 kDa的磷酸化多肽,它在源自肾脏的Madin-Darby犬肾细胞系的顶端表面组成性分泌。利用针对该蛋白产生的多克隆抗体,我们发现它是由一种60 kDa的O-糖基化、硫酸化和磷酸化的前体蛋白通过一个对pH敏感的细胞内蛋白水解成熟步骤产生的。对20 kDa分泌型多肽的氨基酸序列分析表明,它与人类骨桥蛋白的羧基末端氨基酸有70%的同源性。20 kDa多肽的氨基末端氨基酸对应于人类骨桥蛋白的第213位氨基酸。已证明凝血酶在体内和体外可在第153位氨基酸处切割大鼠骨桥蛋白,产生两个分别为28 kDa和26 kDa的片段。通过对60 kDa前体进行凝血酶处理可检测到类似的切割产物,这表明该前体与骨桥蛋白相同或密切相关。在大鼠肾单位中,该蛋白定位于近端和远端小管以及集合管细胞的管腔表面。这些结果表明,在源自肾脏的Madin-Darby犬肾细胞系中,骨桥蛋白或一种密切相关的蛋白被蛋白水解加工成一种20 kDa的多肽,这增加了骨桥蛋白在各种组织中的多种功能可能归因于对不同多肽的特定加工的可能性。