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Autotaxin Implication in Cancer Metastasis and Autoimunne Disorders: Functional Implication of Binding Autotaxin to the Cell Surface

机译:癌症转移和自身免疫紊乱中的自身传达含义:用粘合自身吸尘器到细胞表面的功能意义

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摘要

Autotaxin (ATX) is an exoenzyme which, due to its unique lysophospholipase D activity, is responsible for the synthesis of lysophosphatidic acid (LPA). ATX activity is responsible for the concentration of LPA in the blood. ATX expression is increased in various types of cancers, including breast cancer, where it promotes metastasis. The expression of ATX is also remarkably increased under inflammatory conditions, particularly in the osteoarticular compartment, where it controls bone erosion. Biological actions of ATX are mediated by LPA. However, the phosphate head group of LPA is highly sensitive to degradation by the action of lipid phosphate phosphatases, resulting in LPA inactivation. This suggests that for efficient action, LPA requires protection, which is potentially achieved through docking to a carrier protein. Interestingly, recent reports suggest that ATX might act as a docking molecule for LPA and also support the concept that binding of ATX to the cell surface through its interaction with adhesive molecules (integrins, heparan sulfate proteoglycans) could facilitate a rapid route of delivering active LPA to its cell surface receptors. This new mechanism offers a new vision of how ATX/LPA works in cancer metastasis and inflammatory bone diseases, paving the way for new therapeutic developments.
机译:自坦素(ATX)是一种脱酶,由于其独特的溶血磷脂酶D活性,负责合成透磷酸(LPA)。 ATX活动负责血液中LPA的浓度。 ATX表达在各种类型的癌症中增加,包括乳腺癌,其中促进转移。 ATX的表达在炎症条件下也显着增加,特别是在骨质室内,它控制骨腐蚀。 ATX的生物学作用由LPA介导。然而,通过脂质磷酸磷酸磷酸酶的作用,LPA的磷酸盐头组对降解的降解,导致LPA灭活。这表明对于有效的动作,LPA需要保护,这可能通过对接到载体蛋白来实现。有趣的是,最近的报道表明ATX可以作为LPA的对接分子,并且还支持通过其与粘合剂分子的相互作用(整联素,硫酸普酸蛋白多糖)的相互作用将ATX与细胞表面结合的概念可以促进递送活性LPA的快速路径到其细胞表面受体。这种新机制提供了ATX / LPA如何在癌症转移和炎症性骨病中的新视野,为新的治疗发展铺平了途径。

著录项

  • 期刊名称 Cancers
  • 作者单位
  • 年(卷),期 2020(12),1
  • 年度 2020
  • 页码 105
  • 总页数 15
  • 原文格式 PDF
  • 正文语种
  • 中图分类 肿瘤学;
  • 关键词

    机译:自身吸附蛋白;溶血磷酸酸;整联素;硫酸乙酰肝素;血小板;转移;炎症;骨质体;T细胞;

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