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The helicase HAGE prevents interferon-α-induced PML expression in ABCB5+ malignant melanoma-initiating cells by promoting the expression of SOCS1

机译:解旋酶HAGE通过促进SOCS1的表达来防止干扰素α诱导的​​ABCB5 +恶性黑色素瘤起始细胞中的PML表达

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The tumour suppressor PML (promyelocytic leukaemia protein) regulates several cellular pathways involving cell growth, apoptosis, differentiation and senescence. PML also has an important role in the regulation of stem cell proliferation and differentiation. Here, we show the involvement of the helicase HAGE in the transcriptional repression of PML expression in ABCB5+ malignant melanoma-initiating cells (ABCB5+ MMICs), a population of cancer stem cells which are responsible for melanoma growth, progression and resistance to drug-based therapy. HAGE prevents PML gene expression by inhibiting the activation of the JAK–STAT (janus kinase–signal transducers and activators of transcription) pathway in a mechanism which implicates the suppressor of cytokine signalling 1 (SOCS1). Knockdown of HAGE led to a significant decrease in SOCS1 protein expression, activation of the JAK–STAT signalling cascade and a consequent increase of PML expression. To confirm that the reduction in SOCS1 expression was dependent on the HAGE helicase activity, we showed that SOCS1, effectively silenced by small interfering RNA, could be rescued by re-introduction of HAGE into cells lacking HAGE. Furthermore, we provide a mechanism by which HAGE promotes SOCS1 mRNA unwinding and protein expression in vitro . Finally, using a stem cell proliferation assay and tumour xenotransplantation assay in non-obese diabetic/severe combined immunodeficiency mice, we show that HAGE promotes MMICs-dependent tumour initiation and tumour growth by preventing the anti-proliferative effects of interferon- α (IFN α ). Our results suggest that the helicase HAGE has a key role in the resistance of ABCB5+ MMICs to IFN α treatment and that cancer therapies targeting HAGE may have broad implications for the treatment of malignant melanoma.
机译:肿瘤抑制物PML(早幼粒细胞白血病蛋白)调节涉及细胞生长,凋亡,分化和衰老的几种细胞途径。 PML在调节干细胞增殖和分化中也起着重要作用。在这里,我们显示了解旋酶HAGE参与ABCB5 +恶性黑色素瘤起始细胞(ABCB5 + MMIC)中PML表达的转录抑制,该细胞是负责黑色素瘤生长,进展和对药物治疗的耐药性的癌症干细胞群。 HAGE通过抑制JAK–STAT(Janus激酶信号转导子和转录激活子)途径的激活来阻止PML基因表达,其机制涉及细胞因子信号转导抑制因子1(SOCS1)。抑制HAGE导致SOCS1蛋白表达显着下降,JAK–STAT信号级联反应的激活以及PML表达的增加。为了确认SOCS1表达的减少取决于HAGE解旋酶的活性,我们证明了通过将小干扰RNA有效沉默的SOCS1可以通过将HAGE重新引入缺乏HAGE的细胞中来拯救。此外,我们提供了一种机制,通过该机制HAGE可以促进SOCS1 mRNA的解旋和体外蛋白表达。最后,在非肥胖/严重合并免疫缺陷小鼠中使用干细胞增殖测定法和肿瘤异种移植测定法,我们表明HAGE可通过阻止干扰素-α(IFNα)的抗增殖作用来促进MMIC依赖性肿瘤的发生和肿瘤的生长。 )。我们的结果表明,解旋酶HAGE在ABCB5 + MMIC对IFNα治疗的耐药性中起关键作用,而靶向HAGE的癌症治疗可能对恶性黑色素瘤的治疗具有广泛的意义。

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