首页> 外文期刊>The Journal of biological chemistry >WSS25 Inhibits Growth of Xenografted Hepatocellular Cancer Cells in Nude Mice by Disrupting Angiogenesis via Blocking Bone Morphogenetic Protein (BMP)/Smad/Id1 Signaling
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WSS25 Inhibits Growth of Xenografted Hepatocellular Cancer Cells in Nude Mice by Disrupting Angiogenesis via Blocking Bone Morphogenetic Protein (BMP)/Smad/Id1 Signaling

机译:通过阻断骨形态发生蛋白(BMP)/ SMAD / ID1信号传导,通过破坏血管生成,抑制裸鼠中异种移植肝细胞癌细胞的生长

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The highly expressed Id1 (inhibitor of DNA binding/differentiation) protein promotes angiogenesis in HCC and is a well established target for anti-angiogenesis therapeutic strategies. Heparan sulfate (HS) mimetics such as PI-88 can abrogate HS-protein interactions to inhibit angiogenesis. Id1 is the direct downstream effector of bone morphogenetic proteins (BMPs), which are angiogenic and HS-binding proteins. Thus, targeting BMPs by HS mimetics may inhibit angiogenesis via attenuating Id1 expression. We report here that a HS mimetic WSS25 potently inhibited the tube formation of HMEC-1 cells on Matrigel and their migration. Meanwhile, WSS25 (25 μg/ml) nearly completely blocked Id1 expression in the HMEC-1 cells as demonstrated by oligo-angiogenesis microarray analysis and further confirmed by RT-PCR and Western blotting. BMP/Smad/Id1 signaling also was blocked by WSS25 treatment in HMEC-1 cells. Importantly, Id1 knockdown in HMEC-1 cells caused the disruption of their tube formation on Matrigel. By employing quartz crystal microbalance analysis, we found that WSS25 strongly bound to BMP2. Moreover, WSS25 impaired BMP2-induced tube formation of HMEC-1 cells on Matrigel and angiogenesis in Matrigel transplanted into C57BL6 mice. Furthermore, WSS25 (100 mg/kg) abrogated the growth of HCC cells xenografted in male nude mice. Immunohistochemical analysis showed that both the expression of Id1 and the endothelial cell marker CD31 were lower in the WSS25-treated tumor tissue than in the control. Therefore, WSS25 is a potential drug candidate for HCC therapy as a tumor angiogenesis inhibitor.
机译:高表达的ID1(DNA结合/分化的抑制剂)蛋白促进HCC中的血管生成,是抗血管生成治疗策略的良好靶标。硫酸乙酰肝素(HS)诸如PI-88的模拟物可以消除HS-蛋白质相互作用以抑制血管生成。 ID1是骨形态发生蛋白(BMPS)的直流效应器,其是血管生成和HS结合蛋白。因此,通过HS模拟物靶向BMP可以通过衰减ID1表达抑制血管生成。我们在此报告,HS模拟WSS25高效地抑制了Matrigel上的HMEC-1细胞的管形成及其迁移。同时,通过低血管生成微阵列分析所证明的HMEC-1细胞中的WSS25(25μg/ mL)几乎完全阻断ID1表达,并通过RT-PCR和Western印迹进一步证实。 BMP / SMAD / ID1信令也被HMEC-1细胞中的WSS25治疗堵塞。重要的是,HMEC-1细胞中的ID1敲低导致其在Matrigel上的管形成。通过采用石英晶微观分析,我们发现WSS25强烈绑定到BMP2。此外,WSS25在基质胶上的HMP-1细胞的BMP2诱导的管形成损伤,在Matrigel中移植到C57BL6小鼠中的基质胶中的血管生成。此外,WSS25(100mg / kg)废除了在雄性裸鼠中的HCC细胞异面的生长。免疫组织化学分析表明,在WSS25处理的肿瘤组织中,ID1和内皮细胞标记物CD31的表达均低于对照。因此,WSS25是作为肿瘤血管生成抑制剂的HCC疗法的潜在药物候选者。

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