标题: 利用奈米钻石连接SSEA-1抗体追踪神经多形性胶质瘤细胞中SSEA-1蛋白的选择性自噬路径
Tracking the selective autophagy pathway of SSEA-1 proteins in the glioblastoma multiforme cells using nanodiamond-conjugated SSEA-1 antibody
作者: 陈亭桦
赵瑞益
Chen,Ting-Hua
Chao,Jui-I
生物科技学系
关键字: 奈米钻石;多形性胶质瘤;选择性自噬路径;阶段特异性胚胎抗原;nanodiamond;glioblastoma multiforme;selective autophagy;SSEA-1
公开日期: 2017
摘要: 阶段特异性胚胎抗原(SSEAs)是由醣蛋白或醣脂质所携带的醣化抗原表位,例如SSEA-1是胚胎或癌症干细胞的标志。奈米钻石是一种以碳为基础的生物相容性材料,被开发使用于细胞的标定和检测。先前我们发现奈米钻石会被泛素披覆并和自噬作用受器结合而进入选择性自噬路径,在此篇研究中,我们发现奈米钻石连接SSEA-1抗体能和表达于神经胶质瘤细胞的SSEA-1蛋白结合并进入选择性自噬路径。我们探讨来自神经胶质瘤患者的癌细胞株,包括会表现SSEA-1蛋白于S1R1细胞株,以及不表现的GBM8901细胞株。奈米钻石连接SSEA-1抗体能和S1R1细胞的SSEA-1蛋白结合并提高细胞对奈米钻石的摄取量,但GBM8901细胞则无此现象发生。以免疫沉淀法及多光子共轭焦萤光显微镜分析可观察到奈米钻石连接SSEA-1抗体复合体能与细胞SSEA-1蛋白结合。此外,我们发现奈米钻石SSEA-1抗体复合体,能被细胞中的泛素披覆并被自噬作用受器SQSTM1和LC3辨识而运送到溶酶体。这些发现显示奈米钻-SSEA-1抗体复合体能够藉由和SSEA-1蛋白结合而进入选择性自噬路径。我们利用奈米钻石追踪SSEA-1蛋白进入选择性自噬作用,可能提供一个新的角度来探讨癌症干细胞与选择性自噬作用之间的相关性。
Stage-specific embryonic antigens (SSEAs) are glycosylated epitope carried by glycoproteins or glycolipids. For example, SSEA-1 is a marker in embryonic or carcinoma stem cells. Nanodiamond (ND) is a biocompatible carbon-based nanomaterial, which is developed for cellular labeling and detection. Previously, we found that ubiquitin (Ub)-coated NDs bind to autophagy receptors for entry into selective autophagy pathway. In this study, we show ND conjugated SSEA-1 antibody (Ab) that could enter the selective autophagy pathway through bind to SSEA-1 proteins which expressed in glioblastoma multiforme stem (GBM) cells. We investigated the cells, that were from GBM patients, which expressed SSEA-1 protein expressed in the S1R1 cell line but not expressed in GBM8901 cell line. The ND-conjugated SSEA-1 Ab could bind to the SSEA-1 proteins and increased the uptake ability of NDs in the S1R1 cells but not in the GBM8901 cells. Furthermore, the ND-SSEA-1 Ab complexes bind with SSEA-1 proteins that can be observed by using immunoprecipitation and confocal microscopy. In addition, we found that the complexes of ND-SSEA-1 Ab could be coated on Ub and then recognized by autophagy receptors SQSTM1/p62 and LC3 to transport to the lysosomes. These findings reveal that ND-SSEA-1 Ab complexes could enter the selective autophagy pathway through binding to SSEA-1 proteins. We demonstrate that ND can be used for tracking of SSEA-1 proteins entering the selective autophagy pathway and may provide a new perspective to investigate relationship between cancer stem cell marker and selective autophagy pathway.
URI: http://etd.lib.nctu.edu.tw/cdrfb3/record/nctu/#GT070457029
http://hdl.handle.net/11536/141794
显示于类别:Thesis