Horstkorte R, Fan H, Reutter W
Institut für Molekularbiologie und Biochemie, Freie Universität Berlin, Berlin-Dahlem, Germany.
Exp Cell Res. 1996 Aug 1;226(2):398-401. doi: 10.1006/excr.1996.0241.
In plasma membrane glycoproteins the peripheral monosaccharides of the N-glycan side chains are degraded faster than the core oligosaccharides and the protein backbone. This intramolecular heterogeneous turnover is a typical characteristic of membrane glycoproteins and is termed remodeling or reprocessing. The mechanism of the reprocessing has been shown first for dipeptidyl peptidase IV (DPP IV, CD26). However, it is still a question in which subcellular compartment the enzyme machinery for the reprocessing is located. Since lysosomes could be excluded, it has been proposed that the responsible glycosidases are located at the plasma membrane, in endosomes, or in the trans-Golgi network. The present study is concerned with the possible role of endosomes in this process of reprocessing. We transfected nonpolarized BHK cells with rat DPP IV cDNA. By establishing a fast and efficient method to purify endosomes, we could identify for the first time significant amounts of DPP IV in endosomes and we suggest therefore that endosomes are closely related with the regulation of reprocessing of plasma membrane glycoproteins.
在质膜糖蛋白中,N - 聚糖侧链的外周单糖比核心寡糖和蛋白质主链降解得更快。这种分子内的异质性周转是膜糖蛋白的典型特征,被称为重塑或再加工。二肽基肽酶IV(DPP IV,CD26)首次被证明存在再加工机制。然而,再加工所需的酶机制位于哪个亚细胞区室仍是一个问题。由于溶酶体可以被排除,有人提出负责的糖苷酶位于质膜、内体或反式高尔基体网络中。本研究关注内体在这一再加工过程中的可能作用。我们用大鼠DPP IV cDNA转染非极化的BHK细胞。通过建立一种快速有效的内体纯化方法,我们首次在内体中鉴定出大量的DPP IV,因此我们认为内体与质膜糖蛋白再加工的调节密切相关。