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首页> 外文期刊>Anticancer Research: International Journal of Cancer Research and Treatment >Protein-bound Polysaccharide-K Inhibits Hedgehog Signaling Through Down-regulation of MAML3 and RBPJ Transcription Under Hypoxia, Suppressing the Malignant Phenotype in Pancreatic Cancer
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Protein-bound Polysaccharide-K Inhibits Hedgehog Signaling Through Down-regulation of MAML3 and RBPJ Transcription Under Hypoxia, Suppressing the Malignant Phenotype in Pancreatic Cancer

机译:蛋白质结合的多糖-K通过缺氧下的MAML3和RBPJ转录的下调来抑制刺猬信号传导,抑制胰腺癌中的恶性表型

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Hedgehog signaling is activated in pancreatic cancer and could be a therapeutic target. We previously demonstrated that recombination signal binding protein for immunoglobulin-kappa-J region (RBPJ) and mastermind-like 3 (MAML3) contribute to the hypoxia-induced up-regulation of Smoothened (SMO) transcription. We have also shown that protein-bound polysaccharide-K (PSK) could be effective for refractory pancreatic cancer that down-regulates SMO transcription under hypoxia. In this study, we evaluated whether the anticancer mechanism of PSK involves inhibiting RBPJ and MAML3 expression under hypoxia. PSK reduced SMO, MAML3 and RBPJ expression in pancreatic cancer cells under hypoxia. PSK also blocked RBPJ-induced invasiveness under hypoxia by inhibiting matrix metalloproteinase expression. Lastly, we showed that PSK attenuated RBPJ-induced proliferation both in vitro and in vivo. These results suggest that PSK suppresses Hedgehog signaling through down-regulation of MAML3 and RBPJ transcription under hypoxia, inhibiting the induction of a malignant phenotype in pancreatic cancer. Our results may lead to development of new treatments for refractory pancreatic cancer using PSK as a Hedgehog inhibitor.
机译:刺猬信号在胰腺癌中激活,可以是治疗目标。我们之前证明了用于免疫球蛋白-κ-κ-j区(RBPJ)和母料样3(MAML3)的重组信号结合蛋白有助于缺氧诱导的平滑(Smo)转录的上调。我们还表明,蛋白质结合的多糖-K(PSK)对于难治性胰腺癌可有效地下调缺氧下的Smo转录。在这项研究中,我们评估了PSK的抗癌机制是否涉及在缺氧下抑制RBPJ和MAML3表达。 PSK在缺氧下的胰腺癌细胞中减少了Smo,Maml3和RBPJ表达。通过抑制基质金属蛋白酶的表达,PSK还通过抑制基质金属蛋白酶表达阻断RBPJ诱导的侵袭性。最后,我们展示PSK在体外和体内衰减RBPJ诱导的增殖。这些结果表明,PSK通过缺氧下调MAML3和RBPJ转录的下调,抑制胰腺癌中恶性表型的诱导,抑制了刺猬信号。我们的结果可能导致使用PSK作为刺猬抑制剂的难治性胰腺癌的新治疗。

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