Gene Signal Research Center, 4 Rue Pierre Fontaine, Evry 91000, France.
Br J Cancer. 2011 Feb 1;104(3):496-504. doi: 10.1038/sj.bjc.6606033. Epub 2011 Jan 4.
Loss of CD9 expression has been correlated with a higher motility and metastatic potential of tumour cells originating from different organs. However, the mechanism underlying this loss is not yet understood.
We produced a truncated form of partner 1 of CD9 (CD9P-1), GS-168AT2, and developed a new monoclonal antibody directed towards the latter. We measured the expression of CD9 and CD9P-1 in human lung tumours (hLTs), and monitored the level of CD9 in NCI-H460, in vitro and in vivo, in the presence and absence of GS-168AT2.
Loss of CD9 is inversely related to the expression of CD9P-1, which correlates with the metastatic status of hLT (n=55). In vitro, GS-168AT2 is rapidly internalised and degraded at both the membrane and cytoplasm of NCI-H460, and this correlates with the association of GS-168AT2 with both CD9 and CD81. Intraperitoneal injections of GS-168AT2 in NCI-H460-xenografted Nude mice led to drastic inhibition of tumour growth, as well as to the downregulation of CD9, but not of CD81, in the tumour core.
These findings show for the first time that CD9P-1 expression positively correlates with the metastatic status of hLT, and that the upregulation of CD9P-1 expression could be one of the mechanisms underlying the loss of CD9 in solid tumours. Our study also reveals that, under certain conditions, loss of CD9 could be a tumour growth-limiting phenomenon rather than a tumour growth-promoting one.
CD9 表达的丧失与源自不同器官的肿瘤细胞更高的迁移和转移潜能相关。然而,这种丧失的机制尚未被理解。
我们产生了 CD9 的伙伴 1 的截断形式(CD9P-1),GS-168AT2,并开发了一种针对后者的新的单克隆抗体。我们测量了人肺肿瘤(hLTs)中 CD9 和 CD9P-1 的表达,并监测了 NCI-H460 中 CD9 的水平,在存在和不存在 GS-168AT2 的情况下,在体外和体内。
CD9 的丧失与 CD9P-1 的表达呈负相关,这与 hLT 的转移状态相关(n=55)。在体外,GS-168AT2 在 NCI-H460 的膜和细胞质中迅速内化和降解,这与 GS-168AT2 与 CD9 和 CD81 的关联相关。在 NCI-H460-异种移植裸鼠中腹腔内注射 GS-168AT2 导致肿瘤生长的急剧抑制,以及肿瘤核心中 CD9 的下调,但 CD81 没有下调。
这些发现首次表明 CD9P-1 的表达与 hLT 的转移状态呈正相关,并且 CD9P-1 表达的上调可能是实体瘤中 CD9 丧失的机制之一。我们的研究还表明,在某些条件下,CD9 的丧失可能是一种限制肿瘤生长的现象,而不是促进肿瘤生长的现象。