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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >RhoA activation and actin reorganization involved in endothelial CAM-mediated endocytosis of anti-PECAM carriers: critical role for tyrosine 686 in the cytoplasmic tail of PECAM-1.
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RhoA activation and actin reorganization involved in endothelial CAM-mediated endocytosis of anti-PECAM carriers: critical role for tyrosine 686 in the cytoplasmic tail of PECAM-1.

机译:RhoA活化和肌动蛋白重组参与内皮凸轮介导的抗PECAM载体的内吞作用:酪氨酸686在PECAM-1的细胞质尾部的关键作用。

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Platelet-endothelial cell adhesion molecule-1 (PECAM-1), a transmembrane glycoprotein involved in leukocyte transmigration, represents a good target for endothelial drug delivery (eg, using antibody-directed nanocarriers, anti-PECAM/NCs). Although endothelial cells do not internalize PECAM antibodies, PECAM-1 engagement by multivalent anti-PECAM conjugates and nanocarriers causes endocytosis via a nonclassic CAM-mediated pathway. We found that endothelial uptake of multivalent anti-PECAM complexes is associated with PECAM-1 phosphorylation. Using model REN cells expressing a series of PECAM-1 deletion and point mutants, we found that the PECAM-1 cytoplasmic domain and, more precisely, PECAM-1 tyrosine 686, is critical in mediating RhoA activation and recruitment of EGFP-RhoA to anti-PECAM/NC binding sites at the plasmalemma, actin polymerization into phalloidin-positive stress fibers, and finally CAM endocytosis of anti-PECAM/NCs. Endothelial targeting and endocytosis of anti-PECAM/NCs were markedly efficient and did not compromise endothelial barrier function in vitro (determined by immunostaining of VE-cadherin and (125)I-albumin transport across endothelial monolayers) or in vivo (determined by electron microscopy imaging of pulmonary capillaries and (125)I-albumin transport from the blood into the lung tissue after intravenous injection of anti-PECAM/NCs in mice). These results reveal PECAM-1 signaling and interactions with the cytoskeleton, which are required for CAM-endocytosis, and may provide safe intra-endothelial drug delivery by anti-PECAM/NCs.
机译:血小板内皮细胞粘附分子-1(PECAM-1),涉及白细胞迁移的跨膜糖蛋白,代表了内皮药物递送的良好靶标(例如,使用抗体导向的纳米载体,抗PECAM / NC)。虽然内皮细胞没有内化PECAM抗体,但是通过非价抗PECAM缀合物和纳米载体的PECAM-1接合通过非分类凸轮介导的途径引起内吞作用。我们发现多价抗PECAM复合物的内皮吸收与PECAM-1磷酸化有关。使用表达一系列PECAM-1缺失和点突变体的Model ren细胞,我们发现PECAM-1细胞质结构域和更准确地说,PECAM-1酪氨酸686对介导RHOA活化和EGFP-RHOA招募至抗-Pecam / NC粘合位点在离子血症下,肌动蛋白聚合成阴极素阳性应力纤维,最后是抗PECAM / NCS的凸轮内吞作用。抗PECAM / NCs的内皮靶向和内吞作用显着有效,并且在体外没有损害内皮阻隔功能(通过在内皮单层的Ve-Cadherin和(125)I-白蛋白转运中的免疫染色)或体内测定(通过电子显微镜测定)静脉注射小鼠抗PECAM / NCS后,肺毛细血管和(125)I-白蛋白转移到肺组织中的肺组织)。这些结果揭示了PECAM-1信号和与细胞骨架的相互作用,这是凸轮 - 内吞作用所必需的,并且可以通过抗PECAM / NC提供安全的内皮药物递送。

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