Han J R, Liu M C
Department of Chemistry and Biochemistry, University of Oklahoma, Norman 73019.
Biochem J. 1991 Oct 1;279 ( Pt 1)(Pt 1):289-95. doi: 10.1042/bj2790289.
Filter-grown Madin-Darby canine kidney (MDCK) cells labelled for 24 h with [35S]sulphate were found to secrete macromolecules [35S]sulphated on their carbohydrate moieties predominantly into the basolateral medium, whereas the tyrosine-[35S]sulphated proteins synthesized were predominantly secreted into the apical medium. In contrast with the predominant apical secretin of tyrosine-[35S]sulphated proteins, the free tyrosine O-[35S]sulphate (Tyr[35S]) was released mostly into the basolateral medium. A time-lapse study using prelabelled MDCK cells incubated in fresh medium revealed that, during the 48 h time course monitored, the release of tyrosine-[35S]sulphated proteins into the apical medium was faster and quantitatively greater than that into the basolateral medium. During the same time there was a concomitant release, predominantly into the basolateral medium, of the free Tyr[35S] derived from the degradation of tyrosine-[35S]sulphated proteins. An endocytotic degradation experiment was performed to demonstrate the endocytosis of tyrosine-sulphated proteins and their degradation to generate free TyrS. It was found that free Tyr[35S] was generated and released when an apically secreted (or basolaterally secreted) tyrosine-[35S]sulphated protein preparation was added to the apical medium (or the basolateral medium) of unlabelled filter-grown MDCK cells. In both cases, the free Tyr[35S] generated was predominantly released into the basolateral medium similar to the results obtained in the time-lapse study.
用[35S]硫酸盐标记24小时的滤膜培养的犬肾Madin-Darby(MDCK)细胞,其碳水化合物部分被[35S]硫酸化的大分子主要分泌到基底外侧培养基中,而合成的酪氨酸-[35S]硫酸化蛋白主要分泌到顶端培养基中。与酪氨酸-[35S]硫酸化蛋白主要向顶端分泌相反,游离的酪氨酸O-[35S]硫酸盐(Tyr[35S])大多释放到基底外侧培养基中。一项使用预标记的MDCK细胞在新鲜培养基中孵育的延时研究表明,在监测的48小时时间进程中,酪氨酸-[35S]硫酸化蛋白向顶端培养基的释放比向基底外侧培养基的释放更快且在数量上更多。与此同时,从酪氨酸-[35S]硫酸化蛋白降解产生的游离Tyr[35S]主要释放到基底外侧培养基中。进行了一项内吞降解实验,以证明酪氨酸硫酸化蛋白的内吞作用及其降解以产生游离的TyrS。结果发现,当将顶端分泌(或基底外侧分泌)的酪氨酸-[35S]硫酸化蛋白制剂添加到未标记的滤膜培养的MDCK细胞的顶端培养基(或基底外侧培养基)中时,会产生并释放游离的Tyr[35S]。在这两种情况下,产生的游离Tyr[35S]主要释放到基底外侧培养基中,这与延时研究中获得的结果相似。