首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Semaphorin signaling via MICAL3 induces symmetric cell division to expand breast cancer stem-like cells
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Semaphorin signaling via MICAL3 induces symmetric cell division to expand breast cancer stem-like cells

机译:通过MICAL3的Semaphorin信号传导诱导对称细胞分裂扩增乳腺癌干样细胞

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摘要

Cancer stem-like cells (CSCs) are expanded in the CSC niche by increased frequency of symmetric cell divisions at the expense of asymmetric cell divisions. The symmetric division of CSCs is important for the malignant properties of cancer; however, underlying molecular mechanisms remain largely elusive. Here, we show a cytokine, semaphorin 3 (Sema3), produced from the CSC niche, induces symmetric divisions of CSCs to expand the CSC population. Our findings indicate that stimulation with Sema3 induced sphere formation in breast cancer cells through neuropilin 1 (NP1) receptor that was specifically expressed in breast CSCs (BCSCs). Knockdown of MICAL3, a cytoplasmic Sema3 signal transducer, greatly decreased tumor sphere formation and tumor-initiating activity. Mechanistically, Sema3 induced interaction among MICAL3, collapsin response mediator protein 2 (CRMP2), and Numb. It appears that activity of MICAL3 monooxygenase (MO) stimulated by Sema3 is required for tumor sphere formation, interaction between CRMP2 and Numb, and accumulation of Numb protein. We found that knockdown of CRMP2 or Numb significantly decreased tumor sphere formation. Moreover, MICAL3 knockdown significantly decreased Sema3-induced symmetric divisions in NP1/Numb-positive BCSCs and increased asymmetric division that produces NP1/Numb negative cells without stem-like properties. In addition, breast cancer patients with NP1-positive cancer tissues show poor prognosis. Therefore, the niche factor Sema3-stimulated NP1/MICAL3/CRMP2/Numb axis appears to expand CSCs at least partly through increased frequency of MICAL3-mediated symmetric division of CSCs.
机译:癌干样细胞(CSC)通过增加对称细胞分裂的频率而在CSC利基中扩展,以不对称细胞分裂为代价。 CSC的对称分裂对于癌症的恶性至关重要。然而,潜在的分子机制仍然很难捉摸。在这里,我们显示了从CSC生态位产生的细胞因子semaphorin 3(Sema3),诱导CSC的对称分裂以扩大CSC种群。我们的发现表明,通过Sema3刺激可通过在乳腺CSC(BCSC)中特异性表达的神经菌素1(NP1)受体诱导乳腺癌细胞中的球形成。击倒细胞质Sema3信号转导子MICAL3,大大减少了肿瘤球的形成和肿瘤启动活性。从机制上讲,Sema3诱导了MICAL3,胶原蛋白介导蛋白2(CRMP2)和Numb之间的相互作用。似乎Sema3刺激的MICAL3单加氧酶(MO)的活性是肿瘤球形成,CRMP2和Numb之间相互作用以及Numb蛋白积累所必需的。我们发现敲低CRMP2或Numb可显着减少肿瘤球的形成。此外,MICAL3敲低显着减少了NP1 / Numb阳性BCSC中Sema3诱导的对称分裂,并增加了不对称分裂,产生了没有茎样特性的NP1 / Numb阴性细胞。此外,患有NP1阳性癌组织的乳腺癌患者预后较差。因此,利基因子Sema3刺激的NP1 / MICAL3 / CRMP2 / Numb轴似乎至少部分地通过增加MICAL3介导的CSC对称分裂频率来扩展CSC。

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