Sakai T, Furukawa Y, Chiquet-Ehrismann R, Nakamura M, Kitagawa S, Ikemura T, Matsumoto K
Division of Hemopoiesis, Jichi Medical School, Tochigi, Japan.
J Cell Sci. 1996 Aug;109 ( Pt 8):2069-77. doi: 10.1242/jcs.109.8.2069.
Tenascin-X has recently been shown to be a novel member of the tenascin family and its distribution is often reciprocal to that of tenascin-C in the developing mouse embryo. We have investigated the expression of tenascin-X in fibroblasts and carcinoma cells in culture. Tenascin-X protein was secreted in vitro in the conditioned media at an apparent molecular mass of approximately 450 kDa. In addition fibroblasts contained a major tenascin-X isoform of 220 kDa. On northern blots, a single major transcript with a size of approximately 13 kb was detected. No overexpression of tenascin-X protein was found in primary fibroblasts of the tenascin-C-gene knockout mice. Steroid hormone glucocorticoids, were found to downregulate tenascin-X mRNA levels and protein synthesis in fibroblasts but not carcinoma cells at physiological concentrations. None of the growth factors or cytokines examined affected the expression level of tenascin-X. As in vivo study, carcinoma cells were transplanted into nude mice. In contrast to the ubiquitous presence of tenascin-X in adult skin, expression of tenascin-X protein during tumorigenesis was found to be down-regulated considerably not only in tumor cells themselves but also in tumor stroma. These findings provide evidence that the expression of tenascin-X can be influenced by stromal-epithelial interactions. We have identified glucocorticoids as physiological inhibitors of tenascin-X and suggest that glucocorticoids may in part participate in the downregulation of tenascin-X in fibroblasts in vivo.
腱生蛋白-X最近被证明是腱生蛋白家族的一个新成员,在发育中的小鼠胚胎中,其分布通常与腱生蛋白-C相反。我们研究了腱生蛋白-X在培养的成纤维细胞和癌细胞中的表达。腱生蛋白-X蛋白在体外条件培养基中分泌,表观分子量约为450 kDa。此外,成纤维细胞含有一种主要的220 kDa的腱生蛋白-X异构体。在Northern印迹法中,检测到一个大小约为13 kb的单一主要转录本。在腱生蛋白-C基因敲除小鼠的原代成纤维细胞中未发现腱生蛋白-X蛋白的过表达。发现类固醇激素糖皮质激素在生理浓度下可下调成纤维细胞中腱生蛋白-X的mRNA水平和蛋白质合成,但对癌细胞无此作用。所检测的生长因子或细胞因子均未影响腱生蛋白-X的表达水平。作为一项体内研究,将癌细胞移植到裸鼠体内。与腱生蛋白-X在成年皮肤中普遍存在相反,发现在肿瘤发生过程中,腱生蛋白-X蛋白的表达不仅在肿瘤细胞本身,而且在肿瘤基质中都显著下调。这些发现提供了证据,表明腱生蛋白-X的表达可受基质-上皮相互作用的影响。我们已确定糖皮质激素是腱生蛋白-X的生理抑制剂,并表明糖皮质激素可能部分参与体内成纤维细胞中腱生蛋白-X的下调。