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华通氏胶细胞外基质成分与成纤维细胞生长因子的结合

FGF binding by extracellular matrix components of Wharton's jelly.

作者信息

Malkowski Andrzej, Sobolewski Krzysztof, Jaworski Stefan, Bankowski Edward

机构信息

Department of Medical Biochemistry, Medical Academy of Bialystok, Białystok, Poland.

出版信息

Acta Biochim Pol. 2007;54(2):357-63. Epub 2007 Jun 12.

Abstract

Our earlier paper has reported that Wharton's jelly is a reservoir of several peptide growth factors, including acidic and basic fibroblast growth factors (aFGF and bFGF, respectively). Both can be extracted by buffered salts solutions in the form of high molecular mass complexes, probably with a component(s) of the extracellular matrix. Both aFGF and bFGF from such extracts hardly penetrate 10% polyacrylamide gels during electrophoresis. Pre-treatment of Wharton's jelly with hyaluronidase slightly increased the extractability of aFGF, but did not affect the extractability of bFGF. In contrast, the pre-treatment of tissue homogenate with bacterial collagenase (2000 U/ml, 37 degrees C, 18 h) increased the extractability of bFGF. The presence of beta-mercaptoethanol in the extracting solutions increased the extractability of both FGFs, but did not release FGFs in their free form, despite reducing the molecular mass of the FGF-containing complexes. We conclude that both aFGF and bFGF are bound through disulphide bonds to a protein component of Wharton's jelly. We propose that ground substance composed mainly of collagen fibrils and hyaluronate molecules, which surrounds the cells of Wharton's jelly, prevents the access of the extracting solution to aFGF and bFGF. Although hyaluronate and collagen do not bind aFGF or bFGF directly, they may constitute a barrier which prevents the dispersion of FGFs in Wharton's jelly. Thus, the high concentration of FGFs around the cells of Wharton's jelly may facilitate the interaction of these factors with membrane receptors, thereby resulting in stimulation of cell division and differentiation, as well as of the synthesis of extracellular matrix components.

摘要

我们早期的论文报道过,华通氏胶是多种肽生长因子的储存库,包括酸性和碱性成纤维细胞生长因子(分别为aFGF和bFGF)。两者都可以通过缓冲盐溶液以高分子质量复合物的形式提取出来,该复合物可能与细胞外基质的一种或多种成分结合。来自此类提取物的aFGF和bFGF在电泳过程中几乎都不能穿透10%的聚丙烯酰胺凝胶。用透明质酸酶对华通氏胶进行预处理会略微提高aFGF的可提取性,但不影响bFGF的可提取性。相比之下,用细菌胶原酶(2000 U/ml,37℃,18小时)对组织匀浆进行预处理会提高bFGF的可提取性。提取溶液中β-巯基乙醇的存在提高了两种FGF的可提取性,但尽管降低了含FGF复合物的分子量,却没有以游离形式释放FGF。我们得出结论,aFGF和bFGF都通过二硫键与华通氏胶的一种蛋白质成分结合。我们提出,主要由胶原纤维和透明质酸分子组成的细胞外基质围绕着华通氏胶的细胞,阻止提取溶液接触aFGF和bFGF。尽管透明质酸和胶原蛋白不直接结合aFGF或bFGF,但它们可能构成了一个屏障,阻止FGFs在华通氏胶中扩散。因此,华通氏胶细胞周围高浓度的FGFs可能促进这些因子与膜受体的相互作用,从而导致细胞分裂和分化以及细胞外基质成分合成的刺激。

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