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连接蛋白43通过一种涉及羧基末端的机制增强胶质瘤侵袭。

Connexin43 enhances glioma invasion by a mechanism involving the carboxy terminus.

作者信息

Bates Dave C, Sin W C, Aftab Q, Naus C C

机构信息

Department of Cellular and Physiological Sciences, The University of British Columbia, Vancouver, British Columbia, Canada.

出版信息

Glia. 2007 Nov 15;55(15):1554-64. doi: 10.1002/glia.20569.

DOI:10.1002/glia.20569
PMID:17823969
Abstract

Gliomas are particularly difficult to cure owing largely to their invasive nature. The neoplastic changes of astrocytes which give rise to these tumors frequently include a reduction of connexin43 (Cx43), the most abundant connexin isoform expressed in astrocytes. Cx43 is a subunit of gap junctions (GJ), intercellular channels which directly link the cytosol of adjacent cells and allow the regulated passage of ions and small molecules. To examine the role of Cx43 in glioma motility, we identified two variant C6 cell lines which endogenously express high (C6-H) or low (C6-L) levels of Cx43. In wound healing and transwell assays, C6-H cells were more motile than C6-L cells. To deduce whether Cx43 mediated these differences, assays were conducted on C6-H cells retrovirally transduced with Cx43 shRNA. Coincident with the stable knockdown of endogenous Cx43, a decrease in motility and invasion was observed. Gap junctional intercellular communication was also decreased, however motility assays conducted in the presence of GJ inhibitors did not reveal significant differences in cell motility. C6 cells transfected with full length or C-terminal truncated Cx43 (Cx43DeltaCT) were subjected to the aforementioned motility assays to expose alternate mechanisms of Cx43-mediated motility. Cells expressing full length Cx43 exhibited increased motility while cells expressing Cx43DeltaCT did not. This report, the first in which RNAi has been employed to reduce Cx43 expression in gliomas, indicates that the downregulation of Cx43 decreases motility of C6 cells. Furthermore, it is the first report to suggest that the Cx43 CT plays an important role in glioma motility.

摘要

胶质瘤尤其难以治愈,这主要归因于其浸润性。引发这些肿瘤的星形胶质细胞的肿瘤性变化通常包括连接蛋白43(Cx43)减少,Cx43是星形胶质细胞中表达最丰富的连接蛋白亚型。Cx43是间隙连接(GJ)的一个亚基,间隙连接是直接连接相邻细胞胞质溶胶并允许离子和小分子调节通过的细胞间通道。为了研究Cx43在胶质瘤迁移中的作用,我们鉴定了两种内源性表达高水平(C6-H)或低水平(C6-L)Cx43的C6细胞系变体。在伤口愈合和Transwell实验中,C6-H细胞比C6-L细胞更具迁移能力。为了推断Cx43是否介导了这些差异,我们对用Cx43短发夹RNA逆转录病毒转导的C6-H细胞进行了实验。与内源性Cx43的稳定敲低一致,观察到迁移和侵袭能力下降。间隙连接细胞间通讯也减少了,然而在存在GJ抑制剂的情况下进行的迁移实验并未显示细胞迁移有显著差异。用全长或C末端截短的Cx43(Cx43DeltaCT)转染的C6细胞进行上述迁移实验,以揭示Cx43介导迁移的其他机制。表达全长Cx43的细胞表现出迁移能力增强,而表达Cx43DeltaCT的细胞则没有。本报告首次使用RNA干扰来降低胶质瘤中Cx43的表达,表明Cx43的下调会降低C6细胞的迁移能力。此外,这是第一份表明Cx43 C末端在胶质瘤迁移中起重要作用的报告。

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