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Mechanism of thrombin clearance by human astrocytoma cells.

机译:人类星形细胞瘤细胞清除凝血酶的机制。

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Astroglial cells secrete a variety of factors that contribute to the regulation of neurite initiation and continued outgrowth, among them proteases and protease inhibitors. An alteration in the balance between these proteins has been implicated in Alzheimer's disease, resulting in an accumulation of thrombin:protease nexin 1 (PN1) complexes in the brains of these patients. This report aims at providing a biochemical explanation for this phenomenon. We show that human astrocytoma cells bind and internalize thrombin and thrombin:PN1 complexes efficiently by a PN1-dependent mechanism. Binding was potently inhibited by soluble heparin and did not occur with the mutant PN1 (K7E) deficient in heparin binding. Receptor-associated protein, an antagonist of the low-density lipoprotein receptor-related protein (LRP), inhibited internalization of thrombin by the astrocytoma cells, but did not affect cell-surface binding. The results are consistent with a mechanism by which astrocytoma cells clear thrombin in a sequential manner: thrombin is first complexed with PN1, then bound to cell-surface heparins, and finally internalized by LRP. This mechanism provides a link between the neuronal growth regulators thrombin and PN1 and proteins genetically associated with Alzheimer's disease, such as LRP.
机译:星形胶质细胞分泌多种有助于调节神经突起始和持续生长的因子,其中包括蛋白酶和蛋白酶抑制剂。这些蛋白质之间平衡的改变与阿尔茨海默氏病有关,导致这些患者的脑中凝血酶:蛋白酶nexin 1(PN1)复合物积聚。本报告旨在为这种现象提供生化解释。我们显示,人类星形细胞瘤细胞通过PN1依赖性机制有效地结合并内化凝血酶和凝血酶:PN1复合物。结合被可溶性肝素有效地抑制,而对于缺乏肝素结合的突变体PN1(K7E)则不会发生结合。受体相关蛋白是低密度脂蛋白受体相关蛋白(LRP)的拮抗剂,它抑制星形胶质瘤细胞对凝血酶的内化作用,但不影响细胞表面结合。结果与星形细胞瘤细胞按顺序清除凝血酶的机制一致:凝血酶首先与PN1复合,然后与细胞表面肝素结合,最后被LRP内在化。这种机制提供了神经元生长调节剂凝血酶和PN1与与阿尔茨海默氏病遗传相关的蛋白质(例如LRP)之间的联系。

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