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首页> 外文期刊>Japanese Journal of Cancer Research >The autocrine loop of epidermal growth factor receptor-epidermal growth factor / transforming growth factor-alpha in malignant rhabdoid tumor cell lines: heterogeneity of autocrine mechanism in TTC549.
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The autocrine loop of epidermal growth factor receptor-epidermal growth factor / transforming growth factor-alpha in malignant rhabdoid tumor cell lines: heterogeneity of autocrine mechanism in TTC549.

机译:恶性横纹肌瘤细胞系中表皮生长因子受体-表皮生长因子/转化生长因子-α的自分泌循环:TTC549中自分泌机制的异质性。

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To investigate the effects of the autocrine loop of epidermal growth factor receptor (EGFR)-epidermal growth factor (EGF) / transforming growth factor-alpha (TGF-alpha) on the proliferation and differentiation of malignant rhabdoid tumor (MRT), we used five MRT cell lines, TM87-16, STM91-01, TTC549, TTC642, and YAM-RTK1. RT-PCR analyses revealed expression of EGFR mRNA in all MRT cell lines. In contrast, the expression of either EGF or TGF-alpha mRNA was detected in all MRT cell lines. Expression of EGF, TGF-alpha, and EGFR as determined by immunocytochemical staining and in situ hybridization, correlated with the results of RT-PCR. Upon differentiation-induction with 12-O-tetradecanoylphorbol-13-acetate (TPA), in TTC549, showing an expression of TGF-alpha but not EGF initially, de novo expression of EGF mRNA appeared abruptly on day 2 of TPA treatment. To confirm the EGFR-EGF / TGF-alpha autocrine loop, we used TGF-alpha, EGF, and their antibodies in the cultures. Monoclonal antibody (mAb) to EGFR alone significantly inhibited the growth of cell line TTC549. However, mAb to EGF or TGF-alpha could inhibit proliferation of this cell line only when administrated together. Our findings would suggest that growth of the TTC549 cell line is constitutionally regulated by TGF-alpha / EGFR, but that inhibition of this autocrine mechanism results in transient activation of an autocrine loop involving EGF / EGFR. Our results may indicate the presence of two different autocrine loops of EGFR-EGF and / or EGFR-TGF-alpha in MRT cell lines. The heterogeneity of autocrine mechanisms found in MRT cell lines would be consistent with the multiphenotypic diversity and aggressive characteristics of this enigmatic tumor.
机译:为了研究表皮生长因子受体(EGFR)-表皮生长因子(EGF)/转化生长因子-α(TGF-α)的自分泌环对恶性横纹肌瘤(MRT)增殖和分化的影响,我们使用了五个MRT细胞系TM87-16,STM91-01,TTC549,TTC642和YAM-RTK1。 RT-PCR分析显示所有MRT细胞系中EGFR mRNA的表达。相反,在所有MRT细胞系中均检测到EGF或TGF-αmRNA的表达。通过免疫细胞化学染色和原位杂交确定的EGF,TGF-α和EGFR的表达与RT-PCR的结果相关。在TTC549中用12-O-十四烷酰佛波醇13-乙酸盐(TPA)诱导分化后,最初显示TGF-α的表达,但未显示EGF,在TPA处理的第2天突然出现EGF mRNA的从头表达。为了确认EGFR-EGF /TGF-α自分泌环,我们在培养物中使用了TGF-α,EGF及其抗体。单独针对EGFR的单克隆抗体(mAb)显着抑制细胞系TTC549的生长。然而,仅当同时使用时,针对EGF或TGF-α的mAb才能抑制该细胞系的增殖。我们的发现表明,TTC549细胞系的生长在结构上受到TGF-α/ EGFR的调节,但是这种自分泌机制的抑制导致涉及EGF / EGFR的自分泌环的瞬时激活。我们的结果可能表明MRT细胞系中存在两种不同的EGFR-EGF和/或EGFR-TGF-α自分泌环。在MRT细胞系中发现的自分泌机制的异质性将与这种神秘肿瘤的多表型多样性和侵袭性特征相一致。

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