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RAP1GAP inhibits cytoskeletal remodeling and motility in thyroid cancer cells

机译:RAP1GAP抑制甲状腺癌细胞的细胞骨架重塑和运动

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The functional significance of decreased RAP1GAP protein expression in human tumors is unclear. To identify targets of RAP1GAP downregulation in the thyroid gland, RAP1 and RAP2 protein expression in human thyroid cells and in primary thyroid tumors were analyzed. RAP1GAP and RAP2 were co-expressed in normal thyroid follicular cells. Intriguingly, RAP1 was not detected in normal thyroid cells, although it was detected in papillary thyroid carcinomas, which also expressed RAP2. Both RAP proteins were detected at the membrane in papillary thyroid tumors, suggesting that they are activated when RAP1GAP is downregulated. To explore the functional significance of RAP1GAP depletion, RAP1GAP was transiently expressed at the lowest level that is sufficient to block endogenous RAP2 activity in papillary and anaplastic thyroid carcinoma cell lines. RAP1GAP impaired the ability of cells to spread and migrate on collagen. Although RAP1GAP had no effect on protein tyrosine phosphorylation in growing cells, RAP1GAP impaired phosphorylation of focal adhesion kinase and paxillin at sites phosphorylated by SRC in cells acutely plated on collagen. SRC activity was increased in suspended cells, where it was inhibited by RAP1GAP. Inhibition of SRC kinase activity impaired cell spreading and motility. These findings identify SRC as a target of RAP1GAP depletion and suggest that the downregulation of RAP1GAP in thyroid tumors enhances SRC-dependent signals that regulate cellular architecture and motility.
机译:RAP1GAP蛋白表达降低在人类肿瘤中的功能意义尚不清楚。为了确定RAP1GAP在甲状腺中下调的靶标,分析了人甲状腺细胞和原发性甲状腺肿瘤中RAP1和RAP2蛋白的表达。 RAP1GAP和RAP2在正常甲状腺滤泡细胞中共表达。有趣的是,尽管在甲状腺乳头状癌中也检测到了RAP1,但正常甲状腺细胞中未检测到RAP1,RAP1也表达了RAP2。在甲状腺乳头状肿瘤的膜上都检测到了两种RAP蛋白,这表明当RAP1GAP被下调时它们会被激活。为了探讨RAP1GAP耗竭的功能意义,RAP1GAP以最低水平瞬时表达,该水平足以阻断乳头状和间变性甲状腺癌细胞系中的内源性RAP2活性。 RAP1GAP损害了细胞在胶原蛋白上扩散和迁移的能力。尽管RAP1GAP对生长细胞中的蛋白质酪氨酸磷酸化没有影响,但是RAP1GAP会损害SRC磷酸化的胶原蛋白细胞中的粘着斑激酶和Paxillin的磷酸化。 SRC活性在悬浮细胞中增加,并被RAP1GAP抑制。 SRC激酶活性的抑制损害细胞扩散和运动。这些发现将SRC确定为RAP1GAP耗竭的目标,并表明甲状腺肿瘤中RAP1GAP的下调增强了SRC依赖的信号,这些信号调节细胞的结构和运动。

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