Culty M, Shizari M, Thompson E W, Underhill C B
Department of Cell Biology, Georgetown University Medical Center, Washington, D.C. 20007.
J Cell Physiol. 1994 Aug;160(2):275-86. doi: 10.1002/jcp.1041600209.
In the present study, we examined a panel of human breast cancer cell lines with regard to their expression of CD44 and ability to bind and degrade hyaluronan. The cell lines expressed varying amounts of different molecular weight forms of CD44 (85-200 kDa) and, in general, those that expressed the greatest amounts of CD44 were the most invasive as judged by in vitro assays. In addition, the ability to bind and degrade hyaluronan was restricted to the cell lines expressing high levels of CD44, and both these functions were blocked by an antibody to CD44 (Hermes-1). Moreover, the rate of [3H]hyaluronan degradation was highly correlated with the amount of CD44 (r = 0.951, P < 0.0001), as well as with the invasive potential of the cells. Scatchard analysis of the [3H]hyaluronan binding of these cells revealed the existence of significant differences in both their binding capacity and their dissociation constant. To determine the source of this deviation, the different molecular weight forms of CD44 were partially separated by gel filtration chromatography. In all cell lines, the 85 kDa form was able to bind hyaluronan, although with different affinities. In contrast, not all of the high molecular weight forms of CD44 had this ability. These results illustrate the diversity of CD44 molecules in invasive tumor cells, and suggest that one of their major functions is to degrade hyaluronan.
在本研究中,我们检测了一组人乳腺癌细胞系的CD44表达情况以及它们结合和降解透明质酸的能力。这些细胞系表达不同分子量形式(85 - 200 kDa)的CD44,且表达量各异。一般来说,通过体外实验判断,那些表达CD44量最多的细胞系侵袭性最强。此外,结合和降解透明质酸的能力仅限于高表达CD44的细胞系,并且这两种功能都被抗CD44抗体(Hermes - 1)所阻断。而且,[3H]透明质酸的降解速率与CD44的量高度相关(r = 0.951,P < 0.0001),也与细胞的侵袭潜能相关。对这些细胞[3H]透明质酸结合的Scatchard分析表明,它们在结合能力和解离常数方面均存在显著差异。为了确定这种差异的来源,通过凝胶过滤色谱法对不同分子量形式的CD44进行了部分分离。在所有细胞系中,85 kDa形式的CD44都能够结合透明质酸,尽管亲和力不同。相比之下,并非所有高分子量形式的CD44都具有这种能力。这些结果说明了侵袭性肿瘤细胞中CD44分子的多样性,并表明其主要功能之一是降解透明质酸。