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肾小球上皮细胞合成具有抗凝活性的硫酸乙酰肝素蛋白聚糖涉及多种3-O-磺基转移酶同工型和一个有限的前体池。

Synthesis of anticoagulantly active heparan sulfate proteoglycans by glomerular epithelial cells involves multiple 3-O-sulfotransferase isoforms and a limiting precursor pool.

作者信息

Girardin Eric P, Hajmohammadi Sassan, Birmele Béatrice, Helisch Armin, Shworak Nicholas W, de Agostini Ariane I

机构信息

Department of Pediatrics, University Hospital of Geneva, Switzerland.

出版信息

J Biol Chem. 2005 Nov 11;280(45):38059-70. doi: 10.1074/jbc.M507997200. Epub 2005 Aug 17.

Abstract

Endothelial and other select cell types synthesize a subpopulation of heparan sulfate (HS) proteoglycans (HSPGs), anticoagulant HSPGs (aHSPGs) that bear aHS-HS chains with the cognate 3-O-sulfated pentasaccharide motif that can bind and activate anti-thrombin (AT). Endothelial cells regulate aHSPG production by limiting levels of HS 3-O-sulfotransferase-1 (3-OST-1), which modifies a non-limiting pool of aHS-precursors. By probing kidney cryosections with (125)I-AT and fluorescently tagged AT we found that the glomerular basement membrane contains aHSPGs, with the staining pattern implicating synthesis by glomerular epithelial cells (GECs). Indeed, cultured GECs synthesized aHS with high AT affinity that was comparable with the endothelial product. Disaccharide analyses of human GEC (hGEC) HS in conjunction with transcript analyses revealed that hGECs express predominantly 3-OST-1 and 3-OST-3(A). aHS production has not been previously examined in cells expressing multiple 3-OST isoforms. This unusual situation appears to involve novel mechanisms to regulate aHS production, as HS structural analyses suggest hGECs exhibit excess levels of 3-OST-1 and an extremely limiting pool of aHS-precursor. A limiting aHS-precursor pool may serve to minimize aHS synthesis by non-3-OST-1 isoforms. Indeed, we show that high in vitro levels of 3-OST-3(A) can efficiently generate aHS. Non-3-OST-1 isoforms can generate aHS in vivo, as the probing of kidney sections from 3-OST-1-deficient mice revealed GEC synthesis of aHSPGs. Surprisingly, Hs3st1(-/-) kidney only expresses 3-OST isoforms having a low specificity for aHS synthesis. Thus, our analyses reveal a cell type that expresses multiple 3-OST isoforms and produces minimal amounts of aHS-precursor. In part, this mechanism should prevent aHS overproduction by non-3-OST-1 isoforms. Such a role may be essential, as 3-OST isoforms that have a low specificity for aHS synthesis can generate substantial levels of aHSPGs in vivo.

摘要

内皮细胞和其他特定细胞类型可合成硫酸乙酰肝素(HS)蛋白聚糖(HSPG)的一个亚群,即抗凝HSPG(aHSPG),其带有具有同源3 - O - 硫酸化五糖基序的aHS - HS链,该基序可结合并激活抗凝血酶(AT)。内皮细胞通过限制HS 3 - O - 磺基转移酶-1(3 - OST - 1)的水平来调节aHSPG的产生,3 - OST - 1可修饰aHS前体的非限制性池。通过用(125)I - AT和荧光标记的AT探测肾脏冰冻切片,我们发现肾小球基底膜含有aHSPG,染色模式表明其由肾小球上皮细胞(GEC)合成。实际上,培养的GEC合成了具有高AT亲和力的aHS,这与内皮细胞产物相当。对人GEC(hGEC)HS的二糖分析结合转录分析表明,hGEC主要表达3 - OST - 1和3 - OST - 3(A)。此前尚未在表达多种3 - OST同工型的细胞中研究过aHS的产生。这种不同寻常的情况似乎涉及调节aHS产生的新机制,因为HS结构分析表明hGEC表现出过量的3 - OST - 1和极其有限的aHS前体池。有限的aHS前体池可能有助于使非3 - OST - 1同工型的aHS合成最小化。实际上,我们表明体外高浓度的3 - OST - 3(A)可有效生成aHS。非3 - OST - 1同工型可在体内生成aHS,因为对3 - OST - 缺少的小鼠的肾脏切片进行探测发现GEC可合成aHSPG。令人惊讶的是,Hs3st1(- / -)肾脏仅表达对aHS合成特异性较低的3 - OST同工型。因此,我们的分析揭示了一种表达多种3 - OST同工型且产生少量aHS前体的细胞类型。部分而言,这种机制应可防止非3 - OST - 1同工型过度产生aHS。这样的作用可能至关重要,因为对aHS合成特异性较低的3 - OST同工型可在体内产生大量的aHSPG。

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