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定量磷酸化蛋白质组学分析揭示了硫酸乙酰肝素对血管内皮信号的广泛调节作用。

Quantitative phosphoproteomics analysis reveals broad regulatory role of heparan sulfate on endothelial signaling.

机构信息

Complex Carbohydrate Research Center, University of Georgia, Athens, Georgia 30602, USA.

出版信息

Mol Cell Proteomics. 2013 Aug;12(8):2160-73. doi: 10.1074/mcp.M112.026609. Epub 2013 May 6.

Abstract

Heparan sulfate (HS) is a linear, abundant, highly sulfated polysaccharide that expresses in the vasculature. Recent genetic studies documented that HS critically modulates various endothelial cell functions. However, elucidation of the underlying molecular mechanism has been challenging because of the presence of a large number of HS-binding ligands found in the examined experimental conditions. In this report, we used quantitative phosphoproteomics to examine the global HS-dependent signaling by comparing wild type and HS-deficient endothelial cells that were cultured in a serum-containing medium. A total of 7222 phosphopeptides, corresponding to 1179 proteins, were identified. Functional correlation analysis identified 25 HS-dependent functional networks, and the top five are related to cell morphology, cellular assembly and organization, cellular function and maintenance, cell-to-cell communication, inflammatory response and disorder, cell growth and proliferation, cell movement, and cellular survival and death. This is consistent with cell function studies showing that HS deficiency altered endothelial cell growth and mobility. Mining for the underlying molecular mechanisms further revealed that HS modulates signaling pathways critically related to cell adhesion, migration, and coagulation, including ILK, integrin, actin cytoskeleton organization, tight junction and thrombin signaling. Intriguingly, this analysis unexpectedly determined that the top HS-dependent signaling is the IGF-1 signaling pathway, which has not been known to be modulated by HS. In-depth analysis of growth factor signaling identified 22 HS-dependent growth factor/cytokine/growth hormone signaling pathways, including those both previously known, such as HGF and VEGF, and those unknown, such as IGF-1, erythropoietin, angiopoietin/Tie, IL-17A and growth hormones. Twelve of the identified 22 growth factor/cytokine/growth hormone signaling pathways, including IGF-1 and angiopoietin/Tie signaling, were alternatively confirmed in phospho-receptor tyrosine kinase array analysis. In summary, our SILAC-based quantitative phosphoproteomic analysis confirmed previous findings and also uncovered novel HS-dependent functional networks and signaling, revealing a much broader regulatory role of HS on endothelial signaling.

摘要

硫酸乙酰肝素(HS)是一种在脉管系统中表达的线性、丰富、高度硫酸化的多糖。最近的遗传研究记录表明,HS 可以显著调节各种内皮细胞功能。然而,由于在检查的实验条件下存在大量 HS 结合配体,阐明其潜在的分子机制一直具有挑战性。在本报告中,我们使用定量磷酸蛋白质组学方法,通过比较在含血清培养基中培养的野生型和 HS 缺陷型内皮细胞,来研究全局 HS 依赖性信号。共鉴定出 7222 个磷酸肽,对应 1179 种蛋白质。功能相关性分析确定了 25 个 HS 依赖性功能网络,其中前五个与细胞形态、细胞组装和组织、细胞功能和维持、细胞间通讯、炎症反应和失调、细胞生长和增殖、细胞运动以及细胞存活和死亡有关。这与细胞功能研究一致,表明 HS 缺陷改变了内皮细胞的生长和迁移。进一步挖掘潜在的分子机制表明,HS 调节与细胞黏附、迁移和凝血密切相关的信号通路,包括 ILK、整合素、肌动蛋白细胞骨架组织、紧密连接和凝血酶信号。有趣的是,这项分析出人意料地确定,HS 依赖性信号的顶端是 IGF-1 信号通路,而 IGF-1 信号通路以前并不知道是由 HS 调节的。生长因子信号的深入分析确定了 22 个 HS 依赖性生长因子/细胞因子/生长激素信号通路,包括以前已知的 HGF 和 VEGF,以及未知的 IGF-1、促红细胞生成素、血管生成素/Tie、IL-17A 和生长激素。在磷酸受体酪氨酸激酶阵列分析中,确定了 22 个生长因子/细胞因子/生长激素信号通路中的 12 个,包括 IGF-1 和血管生成素/Tie 信号通路。总之,我们基于 SILAC 的定量磷酸蛋白质组学分析证实了以前的发现,并揭示了新的 HS 依赖性功能网络和信号,揭示了 HS 对内皮信号的调控作用更加广泛。

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