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Dimerization-induced corepressor binding and relaxed DNA-binding specificity are critical for PML/RARA-induced immortalization

机译:二聚化诱导的corepressor结合和放松的DNA结合特异性对于PML / RARA诱导的永生化至关重要

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The pathogenesis of acute promyelocytic leukemia involves the transcriptional repression of master genes of myeloid differentiation by the promyelocytic leukemia-retinoic acid receptor alpha (PML/RARA) oncogene. PML-enforced RARA homodimerization allows the tighter binding of corepressors, silencing RARA target genes. In addition, homodimerization dramatically extends the spectrum of DNA-binding sites of the fusion protein compared with those of normal RARA. Yet, any contribution of these two properties of PML/RARA to differentiation arrest and immortalization of primary mouse hematopoietic progenitors was unknown. We demonstrate that dimerization-induced silencing mediator of retinoid and thyroid receptors (SMRT)-enhanced binding and relaxed DNA-binding site specificity are both required for efficient immortalization. Thus, enforced RARA dimerization is critical not only for triggering transcriptional repression but also for extending the repertoire of target genes. Our studies exemplify how dimerization-induced gain of functions converts an unessential transcription factor into a dominant oncogenic protein.
机译:急性早幼粒细胞白血病的发病机制涉及早幼粒细胞白血病-视黄酸受体α(PML / RARA)癌基因对髓样分化主基因的转录抑制。 PML增强的RARA均二聚化可实现更紧密的结合,从而使RARA靶基因沉默。此外,与正常RARA相比,同源二聚化显着扩展了融合蛋白DNA结合位点的光谱。然而,PML / RARA的这两个特性对原代小鼠造血祖细胞的分化停滞和永生化的任何贡献均未知。我们证明,二聚化诱导的类视色素和甲状腺受体(SMRT)增强沉默和轻松的DNA结合位点特异性沉默介导都是有效永生化所必需的。因此,强制性RARA二聚化不仅对于触发转录阻遏至关重要,而且对于延长靶基因的组成范围也至关重要。我们的研究例证了二聚化诱导的功能如何将不必要的转录因子转化为显性的致癌蛋白。

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