首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Fibroblast Growth Factor-based Signaling through Synthetic Heparan Sulfate Blocks Copolymers Studied Using High Cell Density Three-dimensional Cell Printing
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Fibroblast Growth Factor-based Signaling through Synthetic Heparan Sulfate Blocks Copolymers Studied Using High Cell Density Three-dimensional Cell Printing

机译:通过使用高细胞密度三维细胞打印研究合成的肝素硫酸盐嵌段共聚物的成纤维细胞生长因子信号。

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摘要

Four well-defined heparan sulfate (HS) block copolymers containing S-domains (high sulfo group content) placed adjacent to N-domains (low sulfo group content) were chemoenzymatically synthesized and characterized. The domain lengths in these HS block co-polymers were ∼40 saccharide units. Microtiter 96-well and three-dimensional cell-based microarray assays utilizing murine immortalized bone marrow (BaF3) cells were developed to evaluate the activity of these HS block co-polymers. Each recombinant BaF3 cell line expresses only a single type of fibroblast growth factor receptor (FGFR) but produces neither HS nor fibroblast growth factors (FGFs). In the presence of different FGFs, BaF3 cell proliferation showed clear differences for the four HS block co-polymers examined. These data were used to examine the two proposed signaling models, the symmetric FGF2-HS2-FGFR2 ternary complex model and the asymmetric FGF2-HS1-FGFR2 ternary complex model. In the symmetric FGF2-HS2-FGFR2 model, two acidic HS chains bind in a basic canyon located on the top face of the FGF2-FGFR2 protein complex. In this model the S-domains at the non-reducing ends of the two HS proteoglycan chains are proposed to interact with the FGF2-FGFR2 protein complex. In contrast, in the asymmetric FGF2-HS1-FGFR2 model, a single HS chain interacts with the FGF2-FGFR2 protein complex through a single S-domain that can be located at any position within an HS chain. Our data comparing a series of synthetically prepared HS block copolymers support a preference for the symmetric FGF2-HS2-FGFR2 ternary complex model.
机译:化学合成并表征了四种定义明确的硫酸乙酰肝素(HS)嵌段共聚物,它们包含与N结构域(低磺基含量)相邻放置的S结构域(高磺基含量)。这些HS嵌段共聚物的结构域长度约为40个糖单元。开发了利用小鼠永生骨髓(BaF3)细胞的微量滴定96孔和基于三维细胞的微阵列测定法,以评估这些HS嵌段共聚物的活性。每个重组BaF3细胞系仅表达一种类型的成纤维细胞生长因子受体(FGFR),但不产生HS或成纤维细胞生长因子(FGFs)。在存在不同的FGF的情况下,BaF3的细胞增殖对于所检测的四种HS嵌段共聚物显示出明显的差异。这些数据用于检查两个提出的信号模型,对称的FGF2-HS2-FGFR2三元复合物模型和不对称的FGF2-HS1-FGFR2三元复合物模型。在对称FGF2-HS2-FGFR2模型中,两条酸性HS链在位于FGF2-FGFR2蛋白复合物顶面上的基本峡谷中结合。在该模型中,提出了在两条HS蛋白聚糖链的非还原端的S结构域与FGF2-FGFR2蛋白复合物相互作用。相反,在不对称FGF2-HS1-FGFR2模型中,单个HS链通过单个S结构域与FGF 2 -FGFR 2 蛋白复合物相互作用。位于HS链中的任何位置。我们比较一系列合成制备的HS嵌段共聚物的数据支持偏爱对称FGF 2 -HS 2 -FGFR 2 三元复合物模型。

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