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首页> 外文期刊>The Biochemical Journal >Role of ATP during the initiation of microvascularization: acceleration of an autocrine sensing mechanism facilitating chemotaxis by inorganic polyphosphate
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Role of ATP during the initiation of microvascularization: acceleration of an autocrine sensing mechanism facilitating chemotaxis by inorganic polyphosphate

机译:ATP在微血管形成期间的作用:无机多磷酸盐促进趋化机的自分泌感测机制加速

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摘要

The in vitro tube formation assay with human umbilical vein endothelial cells (HUVEC) was applied to identify the extra- and intracellular sources of metabolic energy/ATP required for cell migration during the initial stage of microvascularization. Extracellularly, the physiological energy-rich polymer, inorganic polyphosphate (polyP), applied as biomimetic amorphous calcium polyP microparticles (Ca-polyP-MP), is functioning as a substrate for ATP generation most likely via the combined action of the alkaline phosphatase (ALP) and the adenylate kinase (AK). The linear Ca-polyP-MP with a size of 40 phosphate units, close to the polyP in the acidocalcisomes in the blood platelets, were found to increase endothelial cell tube formation, as well as the intracellular ATP levels. Depletion of extracellular ATP with apyrase suppressed tube formation during the initial incubation period. Inhibition experiments revealed that inhibitors (levamisole and Ap5A) of the enzymes involved in extracellular ATP generation strongly reduce the Ca-polyP-MP-induced tube formation. The stimulatory effect of Ca-polyP-MP was also diminished by the glycolysis inhibitor oxamate and trifluoperazine which blocks endocytosis, as well as by MRS2211, an antagonist of the P2Y_(13) receptor. Oligomycin, an inhibitor of the mitochondrial F_(0)F_(1)-ATP synthase, displayed no effect at lower concentrations on tube formation. Electron microscopic data revealed that after cellular uptake, the Ca-polyP-MP accumulate close to the cell membrane. We conclude that in HUVEC exposed to polyP, ATP is formed extracellularly via the coupled ALP-AK reaction, and intracellularly during glycolysis. The results suggest an autocrine signaling pathway of ATP with polyP as an extracellular store of metabolic energy for endothelial cell migration during the initial vascularization process.
机译:施用具有人脐静脉内皮细胞(HUVEC)的体外管形成测定,以鉴定微血管形成初始阶段的细胞迁移所需的特性和细胞内的代谢能量/ ATP。胞外,生理富含能量的聚合物,无机聚磷酸盐(息肉),用作仿生无定形钙息肉微粒(CA-息肉-MP),被作为用于ATP生成的衬底最有可能通过碱性磷酸酶的组合作用(ALP起作用)和腺苷酸激酶(ak)。发现尺寸为40个磷酸盐单元的线性Ca-π-π-π-π-mp,靠近血小板的抗癌物质中的息肉,以增加内皮细胞管形成,以及细胞内ATP水平。初始孵育期间亚紫外酶抑制管的细胞外ATP耗尽。抑制实验表明,参与细胞外ATP产生的酶的抑制剂(Lemamisole和AP5A)强烈降低了Ca-polyp-mp诱导的管形成。 Ca-polp-mp的刺激作用也通过糖酵解抑制剂和三氟吡啶,其阻断内吞作用,以及通过MRS2211,P2Y_(13)受体的拮抗剂。寡霉素,线粒体F_(0)F_(1)-ATP合酶的抑制剂,在较低浓度的管形成上显示无效。电子显微镜数据显示,在蜂窝摄取后,Ca-π-polp-mp累积靠近细胞膜。我们得出结论,在暴露于息肉的Huvec中,ATP通过偶联的ALP-AK反应细胞外形成,并且在糖醇分解期间细胞内形成。结果表明,在初始血管形成过程中,用息肉具有息肉的ATP的自分泌信号通路,作为内皮细胞迁移的内皮细胞迁移的细胞外存储。

著录项

  • 来源
    《The Biochemical Journal 》 |2018年第20期| 共19页
  • 作者单位

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

    Institute of Functional and Clinical Anatomy University Medical Center of the Johannes Gutenberg University;

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

    Max Planck Institute for Polymer Research;

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

    ERC Advanced Investigator Grant Research Group at the Institute for Physiological Chemistry University Medical Center of the Johannes Gutenberg University;

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  • 原文格式 PDF
  • 正文语种 other
  • 中图分类 生物化学 ;
  • 关键词

    adenylate kinase; alkaline phosphatase; ATP; inorganic polyphosphate; microvascularization; tube formation;

    机译:腺苷酸激酶;碱性磷酸酶;ATP;无机多磷酸盐;微血管化;管形成;

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