Meiners S, Powell E M, Geller H M
Department of Pharmacology, UMDNJ-Robert Wood Johnson Medical School, Piscataway, NJ 08854, USA.
Matrix Biol. 1999 Feb;18(1):75-87. doi: 10.1016/s0945-053x(98)00008-0.
We have investigated the impact of cellular environment on the neurite outgrowth promoting properties of the alternatively spliced fibronectin type-III region (fnA-D) of tenascin-C. FnA-D promoted neurite outgrowth in vitro when bound to the surface of BHK cells or cerebral cortical astrocytes, but the absolute increase was greater on astrocytes. In addition, different neurite outgrowth promoting sites were revealed within fnA-D bound to the two cellular substrates. FnA-D also promoted neurite outgrowth as a soluble ligand; however, the actions of soluble fnA-D were not affected by cell type. Therefore, we hypothesized that different mechanisms of cellular binding can alter the growth promoting actions of bound fnA-D. We found that fnA-D utilizes two distinct sequences to bind to the BHK cell surface as opposed to the BHK extracellular matrix. In contrast, only one of these sequences is utilized to bind to the astrocyte matrix as opposed to the astrocyte surface. Furthermore, Scatchard analysis indicated two types of receptors for fnA-D on BHK cells and only one type on astrocytes. These results suggest that active sites for neurite outgrowth within fnA-D are differentially revealed depending on cell-specific fnA-D binding sites. Therefore, the function of tenascin-C and its various domains must be considered in terms of cellular context.
我们研究了细胞环境对腱生蛋白-C可变剪接的III型纤连蛋白区域(fnA-D)促进神经突生长特性的影响。当fnA-D与BHK细胞或大脑皮质星形胶质细胞表面结合时,它能在体外促进神经突生长,但在星形胶质细胞上的绝对增加量更大。此外,在与两种细胞底物结合的fnA-D中发现了不同的神经突生长促进位点。FnA-D作为可溶性配体也能促进神经突生长;然而,可溶性fnA-D的作用不受细胞类型的影响。因此,我们推测细胞结合的不同机制可以改变结合的fnA-D的生长促进作用。我们发现,与BHK细胞外基质相反,fnA-D利用两个不同的序列与BHK细胞表面结合。相比之下,与星形胶质细胞表面相反,这些序列中只有一个用于与星形胶质细胞基质结合。此外,Scatchard分析表明,BHK细胞上有两种fnA-D受体,而星形胶质细胞上只有一种。这些结果表明,fnA-D中神经突生长的活性位点根据细胞特异性的fnA-D结合位点而有差异地显现出来。因此,必须根据细胞环境来考虑腱生蛋白-C及其各个结构域的功能。