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首页> 外文期刊>Intelligence: A Multidisciplinary Journal >Shp2 activation in bone marrow microenvironment mediates the drug resistance of B-cell acute lymphoblastic leukemia through enhancing the role of VCAM-1/VLA-4
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Shp2 activation in bone marrow microenvironment mediates the drug resistance of B-cell acute lymphoblastic leukemia through enhancing the role of VCAM-1/VLA-4

机译:骨髓微环境中的SHP2激活通过增强VCAM-1 / VLA-4的作用,介导B细胞急性淋巴细胞白血病的耐药性

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B-cell acute lymphoblastic leukemia (B-ALL) is immune to the chemotherapy-induced apoptosis as a result of the protection of bone marrow mesenchymal stromal cells (BMSCs). However, the precise underlying mechanism of such protection remains unclear so far. In this experiment, protein tyrosine phosphatase 2 (Shp2), which was encoded by the PTPN11 gene, was highly expressed in BMSCs of the newly diagnosed and the recurrent B-ALL patients. The plasmid-induced (including Shp2 E76K) Shp2 activation in BMSCs (Shp2-activated BMSCs) markedly increased the BMSCs-mediated resistance of leukemia cells both in vitro and in vivo. Additionally, studies in vitro suggested that, the expression of vascular cell adhesion molecule 1 (VCAM-1) was markedly up-regulated in Shp2-activated BMSCs, and VCAM-1 expression in BMSCs of B-ALL patients was negatively correlated with Shp2 expression. Down-regulation of VCAM-1 in BMSCs using siRNA reversed the resistance of CCRF-SB cells mediated by the Shp2-activated BMSCs. As for the molecular mechanism, the PI3K/AKT pathway mediated the regulation of VCAM-1 by Shp2. Blocking the very late antigen-4 (VLA-4) by antibodies in CCRF-SB cells dramatically reversed the resistance of CCRF-SB cells mediated by the Shp2-activated BMSCs, and decreased the adhesion effects of both CCRF-SB cells and BMSCs. In conclusion, Shp2 activation in BMSCs up-regulates VCAM-1 expression through increasing the PI3K/AKT phosphorylation level, and targeting the VCAM-1/VLA-4 signaling may serve as a clinically relevant mechanism to overcome the BMSCs-mediated chemoresistance of B-ALL cells.
机译:由于保护骨髓间充质细胞(BMSCs),B细胞急性淋巴细胞白血病(B-全部)免受化疗诱导的凋亡。然而,到目前为止,这种保护的精确潜在机制仍然不清楚。在该实验中,由PTPN11基因编码的蛋白酪氨酸磷酸酶2(SHP2)在新诊断的BMSC和复发性B-所有患者的BMSC中高度表达。 BMSCs(SHP2-活化BMSCs)中的质粒诱导的(包括SHP2 E76K)SHP2活化显着增加了体外和体内白血病细胞的BMSC介导的抗性。另外,体外研究表明,血管细胞粘附分子1(VCAM-1)的表达在SHP2活化的BMSC中明显上调,B-All患者BMSC的VCAM-1表达与SHP2表达呈负相关。使用siRNA在BMSCs中的VCAM-1的下调反转CCRF-Sb细胞的阻力由SHP2活化BMSC介导的CCRF-Sb细胞的电阻。对于分子机制,PI3K / AKT途径介导VCAM-1的调节。通过CCRF-SB细胞中的抗体阻断非常晚期的抗原-4(VLA-4)显着地反转由SHP2活化的BMSC介导的CCRF-Sb细胞的电阻,并降低CCRF-Sb细胞和BMSCs的粘附效应。总之,通过增加PI3K / AKT磷酸化水平,BMSCS上调节VCAM-1表达的SHP2激活,靶向VCAM-1 / VLA-4信号传导可以用作克服B的BMSC介导的BMSC的化学渗透性的临床相关机制。 - 所有细胞。

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