Chang Fei, Li Na, Yan Kang, Huang Yumin, Xu Hongfei, Liu Yongjian
Jiangsu Key Laboratory of Xenotransplanation, Department of Medical Genetics, Nanjing Medical University, Nanjing, Jiangsu 211166, China.
Department of Orthopedics, the First Affiliated Hospital of Nanjing Medical University, Nanjing, Jiangsu 210029, China.
J Biomed Res. 2018 Jul 23;32(4):245-256. doi: 10.7555/JBR.32.20180044.
The membrane trafficking of cation-independent mannose 6-phosphate receptor (CI-M6PR) between the trans-Golgi network (TGN) and endosomal compartments is not only critical for maintaining lysosomal function but also a well-known event for understanding molecular and cellular mechanisms in retrograde endosome-to-TGN trafficking. Although it has been well established in literature that the C-terminus of bovine CI-M6PR determines its retrograde trafficking, it remains unclear whether the luminal domain of the protein plays a role on these sorting events. In this study, we found that partial deletion of luminal domain of human CI-M6PR mistargeted the mutant protein to non-TGN compartments. Moreover, replacing the luminal domain of both bovine and human CI-M6PR with that from irrelevant membrane proteins such as CD8 or Tac also altered the TGN targeting of the chimeric proteins. On the other hand, only short sequence from HA fused with the transmembrane domain and C-terminus of the receptor, HA-hCI-M6PR-tail, resulted in its preferential targeting to TGN as for the full length receptor, strongly suggesting that sorting of the receptor may be influenced by luminal sequence. Furthermore, using this luminal truncated form of HA-hCI-M6PR as a model cargo, we found that the trafficking of the chimeric protein was regulated by the retromer complex through interacting with SNX5. In conclusion, our study strongly suggested that the disrupted luminal domain from hCI-M6PR or other irrelevant membrane proteins interfere with the process of membrane trafficking and TGN targeting of CI-M6PR.
不依赖阳离子的甘露糖6-磷酸受体(CI-M6PR)在反式高尔基体网络(TGN)和内体区室之间的膜运输不仅对维持溶酶体功能至关重要,也是理解从内体到TGN逆行运输的分子和细胞机制的一个众所周知的事件。尽管文献中已经明确牛CI-M6PR的C末端决定其逆行运输,但该蛋白的腔内结构域是否在这些分选事件中发挥作用仍不清楚。在本研究中,我们发现人CI-M6PR腔内结构域的部分缺失会使突变蛋白错误定位于非TGN区室。此外,用无关膜蛋白如CD8或Tac的腔内结构域替换牛和人CI-M6PR的腔内结构域,也会改变嵌合蛋白的TGN靶向。另一方面,只有与受体跨膜结构域和C末端融合的HA短序列,即HA-hCI-M6PR-tail,导致其像全长受体一样优先靶向TGN,这强烈表明受体的分选可能受腔内序列影响。此外,以这种腔内截短形式的HA-hCI-M6PR作为模型货物,我们发现嵌合蛋白的运输受retromer复合物通过与SNX5相互作用的调节。总之,我们的研究强烈表明,hCI-M6PR或其他无关膜蛋白的腔内结构域破坏会干扰CI-M6PR的膜运输过程和TGN靶向。