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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >The endocytic adaptor protein Disabled-2 is required for cellular uptake of fibrinogen
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The endocytic adaptor protein Disabled-2 is required for cellular uptake of fibrinogen

机译:内吞衔接蛋白Disabled-2是细胞摄取纤维蛋白原所必需的

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Endocytosis is pivotal for uptake of fibrinogen from plasma into megakaryocytes and platelet α-granules. Due to the complex adaptor and cargo contents in endocytic vehicles, the underlying mechanism of fibrinogen uptake is not yet completely elucidated. In this study, we investigated whether the endocytic adaptor protein Disabled-2 (DAB2) mediates fibrinogen uptake in an adaptor-specific manner. By employing primary megakaryocytes and megakaryocytic differentiating human leukemic K562 cells as the study models, we found that fibrinogen uptake is associated with the expression of integrin αIIbβ3 and DAB2 and is mediated through clathrin-dependent manner. Accordingly, constitutive and inducible knockdown of DAB2 by small interfering RNA reduced fibrinogen uptake for 53.2 ± 9.8% and 59.0 ± 10.7%, respectively. Culturing the cells in hypertonic solution or in the presence of clathrin inhibitor chlorpromazine abrogated clathrin-dependent endocytosis and diminished the uptake of fibrinogen. Consistent with these findings, 72.2 ± 0.2% of cellular DAB2 was colocalized with clathrin, whereas 56.4 ± 4.1% and 54.6 ± 2.0% of the internalized fibrinogen were colocalized with clathrin and DAB2, respectively. To delineate whether DAB2 mediates fibrinogen uptake in an adaptor-specific manner, K562 stable cell lines with knockdown of the adaptor protein-2 (AP-2) or double knockdown of AP-2/DAB2 were established. The AP-2 knockdown cells elicited normal fibrinogen uptake activity but the uptake of collagen was diminished. In addition, collagen uptake was further reduced in DAB2/AP-2 knockdown cells. These findings thereby define an adaptor-specific mechanism in the control of fibrinogen uptake and implicate that DAB2 is the key adaptor in the clathrin-associated endocytic complexes to mediate fibrinogen internalization.
机译:内吞作用对于从血浆摄取纤维蛋白原到巨核细胞和血小板α颗粒至关重要。由于内吞运输工具中复杂的衔接子和货物内容物,尚未完全阐明纤维蛋白原摄取的潜在机制。在这项研究中,我们调查了内吞衔接蛋白Disabled-2(DAB2)是否以适配器特异性方式介导纤维蛋白原摄取。通过采用原代巨核细胞和巨核细胞分化人白血病K562细胞作为研究模型,我们发现纤维蛋白原的摄取与整联蛋白αIIbβ3和DAB2的表达有关,并通过网格蛋白依赖性方式介导。因此,通过小的干扰RNA组成型和诱导型DAB2的敲低分别降低了纤维蛋白原的摄取,分别为53.2±9.8%和59.0±10.7%。在高渗溶液中或在网格蛋白抑制剂氯丙嗪存在下培养细胞可消除网格蛋白依赖性内吞作用,并减少纤维蛋白原的摄取。与这些发现一致的是,72.2±0.2%的细胞DAB2与网格蛋白共定位,而56.4±4.1%和54.6±2.0%的内化纤维蛋白原分别与网格蛋白和DAB2共定位。为了描述DAB2是否以衔接子特异性方式介导纤维蛋白原的摄取,建立了K562稳定的细胞系,其具有衔接蛋白2(AP-2)的敲低或AP-2 / DAB2的双重敲低。 AP-2敲低细胞引起正常的纤维蛋白原摄取活性,但胶原蛋白的摄取减少。另外,DAB2 / AP-2敲低细胞中胶原蛋白的摄取进一步减少。这些发现从而在控制纤维蛋白原摄取中定义了一种适配器特异性机制,并暗示DAB2是网格蛋白相关的内吞复合物中介导纤维蛋白原内在化的关键衔接子。

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