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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >ARID1A knockdown in human endothelial cells directly induces angiogenesis by regulating angiopoietin-2 secretion and endothelial cell activity
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ARID1A knockdown in human endothelial cells directly induces angiogenesis by regulating angiopoietin-2 secretion and endothelial cell activity

机译:ARID1A在人内皮细胞中敲低通过调节血管发球子-2分泌和内皮细胞活性直接诱导血管生成

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摘要

AT-rich interactive domain 1A (ARID1A) is a novel tumor suppressor gene found in several human cells and its loss/defect is commonly observed in many cancers. However, its roles in angiogenesis, which is one of the hall-marks for tumor progression, remained unclear. Herein, we demonstrated the direct effects of ARID1A knock -down in human endothelial cells by lentivirus-based short-hairpin RNA (shRNA) (shARID1A) on angiogenesis. Functional assays revealed that shARID1A significantly enhanced cell proliferation and migration/invasion and endothelial tube formation compared with the control cells transfected with scramble shRNA (shControl). Addi-tionally, the shARID1A-transfected cells had significantly increased podosome formation and secretion of angiopoietin-2 (ANG2), a key angiogenic factor. Moreover, neutralization of ANG2 with monoclonal anti-ANG2 antibody strongly reduced cell proliferation and migration/invasion and endothelial tube formation in the shARID1A-transfected cells. These findings indicate that down-regulation of ARID1A in human endothelial cells directly induces angiogenesis by regulating angiopoietin-2 secretion and endothelial cell activity.
机译:AT-rich interactive domain 1A(ARID1A)是一种新的肿瘤抑制基因,发现于多种人类细胞中,其缺失/缺陷在许多癌症中常见。然而,其在血管生成中的作用仍不清楚,血管生成是肿瘤进展的霍尔标志之一。在此,我们证明了基于慢病毒的短发夹RNA(shRNA)(shARID1A)在人类内皮细胞中敲除ARID1A对血管生成的直接影响。功能分析显示,与转染scramble shRNA的对照细胞(shControl)相比,shARID1A显著增强细胞增殖、迁移/侵袭和内皮管形成。此外,shARID1A转染的细胞显著增加了足小体的形成和血管生成素-2(angiopoietin-2,ANG2)的分泌,ANG2是一种关键的血管生成因子。此外,在shARID1A转染的细胞中,用单克隆抗ANG2抗体中和ANG2可显著降低细胞增殖、迁移/侵袭和内皮管形成。这些发现表明,人类内皮细胞中ARID1A的下调通过调节血管生成素-2的分泌和内皮细胞活性直接诱导血管生成。

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