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Epigenetic deregulation of Ellis Van Creveld confers robust Hedgehog signaling in adult T-cell leukemia

机译:Ellis Van Creveld的表观遗传解除赋予成人T细胞白血病强大的Hedgehog信号转导

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One of the hallmarks of cancer, global gene expression alteration, is closely associated with the development and malignant characteristics associated with adult T-cell leukemia (ATL) as well as other cancers. Here, we show that aberrant overexpression of the Ellis Van Creveld (EVC) family is responsible for cellular Hedgehog (HH) activation, which provides the pro-survival ability of ATL cells. Using microarray, quantitative RT-PCR and immunohistochemistry we have demonstrated that EVC is significantly upregulated in ATL and human T-cell leukemia virus type I (HTLV-1)-infected cells. Epigenetic marks, including histone H3 acetylation and Lys4 trimethylation, are specifically accumulated at the EVC locus in ATL samples. The HTLV-1 Tax participates in the coordination of EVC expression in an epigenetic fashion. The treatment of shRNA targeting EVC, as well as the transcription factors for HH signaling, diminishes the HH activation and leads to apoptotic death in ATL cell lines. We also showed that a HH signaling inhibitor, GANT61, induces strong apoptosis in the established ATL cell lines and patient-derived primary ATL cells. Therefore, our data indicate that HH activation is involved in the regulation of leukemic cell survival. The epigenetically deregulated EVC appears to play an important role for HH activation. The possible use of EVC as a specific cell marker and a novel drug target for HTLV-1-infected T-cells is implicated by these findings. The HH inhibitors are suggested as drug candidates for ATL therapy. Our findings also suggest chromatin rearrangement associated with active histone markers in ATL.
机译:全球基因表达改变是癌症的标志之一,与成人T细胞白血病(ATL)以及其他癌症的发展和恶性特征密切相关。在这里,我们显示Ellis Van Creveld(EVC)家族的异常过度表达是造成细胞刺猬(HH)激活的原因,后者提供了ATL细胞的生存能力。使用微阵列,定量RT-PCR和免疫组织化学,我们已经证明,在ATL和I型人T细胞白血病病毒(HTLV-1)感染的细胞中EVC明显上调。表观遗传标记,包括组蛋白H3乙酰化和Lys4三甲基化,在ATL样品的EVC基因座处特别积累。 HTLV-1税收以表观遗传的方式参与EVC表达的协调。靶向EVC的shRNA的处理以及HH信号转导的转录因子减少了HH活化并导致ATL细胞系凋亡性死亡。我们还显示了HH信号抑制剂GANT61在已建立的ATL细胞系和患者来源的原代ATL细胞中诱导了强凋亡。因此,我们的数据表明HH激活参与白血病细胞存活的调节。表观遗传失调的EVC似乎在HH激活中起重要作用。这些发现暗示了将EVC用作HTLV-1感染的T细胞的特异性细胞标志物和新型药物靶标的可能用途。建议将HH抑制剂作为ATL治疗的候选药物。我们的发现还表明,染色质重排与ATL中的活性组蛋白标记有关。

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