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Tissue factor and PAR1 promote microbiota-induced intestinal vascular remodelling

机译:组织因子和PAR1促进微生物群引起的肠道血管重塑

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摘要

The gut microbiota is a complex ecosystem that has coevolved with host physiology. Colonization of germ-free (GF) mice with a micro-biota promotes increased vessel density in the small intestine, but little is known about the mechanisms involved. Tissue factor (TF) is the membrane receptor that initiates the extrinsic coagulation pathway, and it promotes developmental and tumour angiogenesis. Here we show that the gut microbiota promotes TF glycosylation associated with localization of TF on the cell surface, the activation of coagulation proteases, and phosphorylation of the TF cytoplasmic domain in the small intestine. Anti-TF treatment of colonized GF mice decreased microbiota-induced vascular remodelling and expression of the proangiogenic factor angiopoietin-1 (Ang-1) in the small intestine. Mice with a genetic deletion of the TF cytoplasmic domain or with hypomorphic TF (F3) alleles had a decreased intestinal vessel density. Coagulation proteases downstream of TF activate protease-activated receptor (PAR) signalling implicated in angiogenesis. Vessel density and phosphorylation of the cytoplasmic domain of TF were decreased in small intestine from PAR1-deficient (F2r~(-1-)) but not PAR2-deficient (F2rl1~(-1-)) mice, and inhibition of thrombin showed that thrombin-PARl signalling was upstream of TF phosphorylation. Thus, the microbiota-induced extravascular TF-PAR1 signalling loop is a novel pathway that may be modulated to influence vascular remodelling in the small intestine.
机译:肠道菌群是与宿主生理学共同进化的复杂生态系统。具有微生物群的无菌(GF)小鼠定植可促进小肠中血管密度的增加,但对涉及的机制知之甚少。组织因子(TF)是启动外在凝血途径的膜受体,它促进发育和肿瘤血管生成。在这里,我们显示肠道菌群可促进TF糖基化,其与TF在细胞表面的定位,凝血蛋白酶的活化以及小肠TF胞质域的磷酸化有关。抗TF治疗的定居GF小鼠减少了微生物群诱导的血管重塑和小肠中促血管生成因子血管生成素1(Ang-1)的表达。具有TF胞质结构域的遗传缺失或具有亚同型TF(F3)等位基因的小鼠肠道血管密度降低。 TF下游的凝血蛋白酶激活涉及血管生成的蛋白酶激活受体(PAR)信号传导。缺乏PAR1的(F2r〜(-1-))小鼠的小肠中TF的血管密度和磷酸化的胞质域降低,而没有缺乏PAR2的(F2rl1〜(-1-))小鼠,对凝血酶的抑制作用表明凝血酶-PAR1信号传导是TF磷酸化的上游。因此,微生物群诱导的血管外TF-PAR1信号传导回路是一种新型途径,可以被调节以影响小肠中的血管重构。

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  • 来源
    《Nature》 |2012年第7391期|p.627-631|共5页
  • 作者单位

    Sahlgrenska Center for Cardiovascular and Metabolic Research/Wallenberg Laboratory, University of Gothenburg, 41345 Gothenburg, Sweden,Department of Molecular and Clinical Medicine,University of Gothenburg, 413 45 Gothenburg, Sweden,Center for Thrombosis and Hemostasis(CTH), University Medical Center Mainz, Experimental Research, 55131 Mainz, Germany;

    Sahlgrenska Center for Cardiovascular and Metabolic Research/Wallenberg Laboratory, University of Gothenburg, 41345 Gothenburg, Sweden,Department of Molecular and Clinical Medicine,University of Gothenburg, 413 45 Gothenburg, Sweden;

    Sahlgrenska Center for Cardiovascular and Metabolic Research/Wallenberg Laboratory, University of Gothenburg, 41345 Gothenburg, Sweden,Department of Molecular and Clinical Medicine,University of Gothenburg, 413 45 Gothenburg, Sweden;

    Department of Immunology and Microbial Science, TheScripps Research Institute, La Jolla,California 92037, USA;

    Sahlgrenska Center for Cardiovascular and Metabolic Research/Wallenberg Laboratory, University of Gothenburg, 41345 Gothenburg, Sweden,Department of Molecular and Clinical Medicine,University of Gothenburg, 413 45 Gothenburg, Sweden;

    Haemostasis Biology, NovoNordiskA/S,DK-2760 Maalov,Denmark;

    Department of Immunology and Microbial Science, TheScripps Research Institute, La Jolla,California 92037, USA;

    Sahlgrenska Center for Cardiovascular and Metabolic Research/Wallenberg Laboratory, University of Gothenburg, 41345 Gothenburg, Sweden,Department of Molecular and Clinical Medicine,University of Gothenburg, 413 45 Gothenburg, Sweden,NovoNordisk Foundation Center for Basic Metabolic Research, Section for Metabolic Receptology and Enteroendocrinology, Faculty of Health Sciences, University of Copenhagen, Copenhagen, DK-2200, Denmark;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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