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肾小球内皮细胞蛋白聚糖——转化生长因子-β1的调节作用

Glomerular endothelial cell proteoglycans--regulation by TGF-beta 1.

作者信息

Kasinath B S

机构信息

Department of Medicine, University of Texas Health Science Center, Audie L. Murphy Memorial Veterans' Administration Hospital, San Antonio.

出版信息

Arch Biochem Biophys. 1993 Sep;305(2):370-7. doi: 10.1006/abbi.1993.1434.

Abstract

Glomerular endothelial cells (G-Endo) may participate in the synthesis of glomerular basement membrane. We studied the metabolism of proteoglycans and its regulation by TGF-beta 1 in bovine G-Endo. The synthesis of cell layer and medium-associated [35S]SO4-labeled macromolecules was significantly increased by TGF-beta 1. On ion exchange chromatography, 80-90% of the 35S-labeled macromolecules in the control medium and cell layer were found to be proteoglycans; TGF-beta 1 increased their synthesis by 1.8-fold but did not alter the anionic charge density. On dissociative Sepharose CL-4B chromatography, the medium proteoglycans were distributed into two peaks of Kav 0.22 (M-I) and 0.44 (M-II). Digestion procedures showed that 39% and 57% of peaks M-I and M-II consisted of HSPG, the remainder being CS/DSPG. The HSPG in peak M-II has the same hydrodynamic size as HSPG present in bovine glomerular basement membrane (N. Parthasarathy and R. G. Spiro, 1987, J. Biol. Chem. 259:12749). Cell layer proteoglycans also resolved into two peaks of Kav 0.33 (C-I) and 0.63 (C-II), respectively, on Sepharose CL-4B chromatography; 39 and 45% of these peaks were made of HSPG. TGF-beta 1 increased the synthesis of CS/DSPG in the media by three-fold without affecting the synthesis of HSPG. Our data suggest that G-Endo may participate in synthesis of glomerular matrix HSPG under physiologic conditions; regulation of G-Endo proteoglycans by TGF-beta 1 may be of relevance in glomerular diseases characterized by matrix expansion.

摘要

肾小球内皮细胞(G-Endo)可能参与肾小球基底膜的合成。我们研究了牛G-Endo中蛋白聚糖的代谢及其受转化生长因子-β1(TGF-β1)的调节。TGF-β1显著增加了细胞层和培养基相关的[35S]SO4标记大分子的合成。在离子交换色谱中,对照培养基和细胞层中80-90%的35S标记大分子被发现是蛋白聚糖;TGF-β1使其合成增加了1.8倍,但未改变阴离子电荷密度。在解离性琼脂糖CL-4B色谱中,培养基中的蛋白聚糖分布在Kav 0.22(M-I)和0.44(M-II)的两个峰中。消化程序表明,峰M-I和M-II中分别有39%和57%由硫酸乙酰肝素蛋白聚糖(HSPG)组成,其余为硫酸软骨素/双糖链蛋白聚糖(CS/DSPG)。峰M-II中的HSPG与牛肾小球基底膜中存在的HSPG具有相同的流体动力学大小(N. Parthasarathy和R. G. Spiro,1987,《生物化学杂志》259:12749)。在琼脂糖CL-4B色谱中,细胞层蛋白聚糖也分别解析为Kav 0.33(C-I)和0.63(C-II)的两个峰;这些峰中39%和45%由HSPG组成。TGF-β1使培养基中CS/DSPG的合成增加了三倍,而不影响HSPG的合成。我们的数据表明,G-Endo可能在生理条件下参与肾小球基质HSPG的合成;TGF-β1对G-Endo蛋白聚糖的调节可能与以基质扩张为特征的肾小球疾病有关。

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