Li Jiang-Hua, Huang Wan, Lin Peng, Wu Bo, Fu Zhi-Guang, Shen Hao-Miao, Jing Lin, Liu Zhen-Yu, Zhou Yang, Meng Yao, Xu Bao-Qing, Chen Zhi-Nan, Jiang Jian-Li
National Translational Science Center for Molecular Medicine, Department of Cell Biology, Fourth Military Medical University, Xi'an 710032, China.
Sci Rep. 2016 Nov 21;6:35210. doi: 10.1038/srep35210.
Cluster of differentiation 147 (CD147), also known as extracellular matrix metalloproteinase inducer, is a transmembrane glycoprotein that mediates oncogenic processes partly through N-glycosylation modifications. N-glycosylation has been demonstrated to be instrumental for the regulation of CD147 function during malignant transformation. However, the role that site-specific glycosylation of CD147 plays in its defective function in hepatocellular carcinomacells needs to be determined. Here, we demonstrate that the modification of N-glycosylation at Asn152 on CD147 strongly promotes hepatocellular carcinoma (HCC) invasion and migration. After the removal of N-glycans at Asn152, CD147 was more susceptible to degradation by ER-localized ubiquitin ligase-mediated endoplasmic reticulum-associated degradation (ERAD). Furthermore, N-linked glycans at Asn152 were required for CD147 to acquire and maintain proper folding in the ER. Moreover, N-linked glycans at Asn152 functioned as a recognition motif that was directly mediated by the CNX quality control system. Two phases in the retention-based ER chaperones system drove ER-localized CD147 trafficking to degradation. Deletion of N-linked glycosylation at Asn152 on CD147 significantly suppressed in situ tumour metastasis. These data could potentially shed light on the molecular regulation of CD147 through glycosylation and provide a valuable means of developing drugs that target N-glycans at Asn152 on CD147.
分化簇147(CD147),也称为细胞外基质金属蛋白酶诱导剂,是一种跨膜糖蛋白,部分通过N-糖基化修饰介导致癌过程。N-糖基化已被证明在恶性转化过程中对CD147功能的调节起重要作用。然而,CD147的位点特异性糖基化在肝细胞癌细胞功能缺陷中所起的作用尚待确定。在此,我们证明CD147上Asn152位点的N-糖基化修饰强烈促进肝细胞癌(HCC)的侵袭和迁移。在去除Asn152处的N-聚糖后,CD147更容易被内质网定位的泛素连接酶介导的内质网相关降解(ERAD)降解。此外,Asn152处的N-连接聚糖是CD147在内质网中获得并维持正确折叠所必需的。而且,Asn152处的N-连接聚糖作为一种识别基序,直接由CNX质量控制系统介导。基于保留的内质网伴侣系统中的两个阶段驱动内质网定位的CD147运输至降解。删除CD147上Asn152处的N-连接糖基化显著抑制原位肿瘤转移。这些数据可能为通过糖基化对CD147进行分子调控提供线索,并为开发靶向CD147上Asn152处N-聚糖的药物提供有价值的方法。