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Aiolos collaborates with Blimp-1 to regulate the survival of multiple myeloma cells

机译:Aiolos与Blimp-1合作调节多发性骨髓瘤细胞的存活

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The transcriptional repressor B lymphocyte-induced maturation protein-1 (Blimp-1) has crucial roles in the control of plasma cell differentiation and in maintaining survival of plasma cells. However, how Blimp-1 ensures the survival of plasma cell malignancy, multiple myeloma (MM), has remained elusive. Here we identified Aiolos, an anti-apoptotic transcription factor of MM cells, as a Blimp-1-interacting protein by mass spectrometry. ChIP coupled with DNA microarray was used to profile the global binding of Aiolos and Blimp-1 to endogenous targets in MM cells, which revealed their co-binding to a large number of genes, including apoptosis-related genes. Accordingly, Blimp-1 and Aiolos regulate similar transcriptomes in MM cells. Analysis of the binding motifs for Blimp-1 and Aiolos uncovered a partial motif that was similar across sites for both proteins. Aiolos promotes the binding of Blimp-1 to target genes and thereby enhances Blimp-1-dependent transcriptional repression. Furthermore, treatment with an anti-MM agent, lenalidomide, caused ubiquitination and proteasomal degradation of Blimp-1, leading to the de-repression of a new Blimp-1 direct target, CULLIN 4A (CUL4A), and reduced Aiolos levels. Accordingly, lenalidomide-induced cell death was partially rescued by reintroduction of Blimp-1 or knockdown of CUL4A. Thus, we demonstrated the functional impacts and underlying mechanisms of the interaction between Aiolos and Blimp-1 in maintaining MM cell survival. We also showed that interruption of Blimp-1/Aiolos regulatory pathways contributes to lenalidomide-mediated anti-MM activity.
机译:转录阻遏物B淋巴细胞诱导的成熟蛋白1(Blimp-1)在控制浆细胞分化和维持浆细胞存活中具有关键作用。但是,Blimp-1如何确保浆细胞恶性肿瘤(多发性骨髓瘤(MM))的存活仍然难以捉摸。在这里,我们通过质谱法将MM细胞的抗凋亡转录因子Aiolos鉴定为Blimp-1相互作用蛋白。 ChIP与DNA微阵列偶联用于分析Aiolos和Blimp-1与MM细胞内源性靶标的整体结合,揭示了它们与大量基因(包括凋亡相关基因)的共结合。因此,Blimp-1和Aiolos调节MM细胞中类似的转录组。对Blimp-1和Aiolos的结合基序的分析发现了两个蛋白的跨位点相似的部分基序。 Aiolos促进Blimp-1与靶基因的结合,从而增强Blimp-1依赖性转录抑制。此外,用抗MM剂来那度胺治疗可导致Blimp-1泛素化和蛋白酶体降解,从而导致新的Blimp-1直接靶标CULLIN 4A(CUL4A)的抑制,并降低Aiolos水平。因此,通过重新引入Blimp-1或敲低CUL4A可部分挽救来那度胺诱导的细胞死亡。因此,我们证明了Aiolos和Blimp-1之间的相互作用在维持MM细胞存活中的功能影响和潜在机制。我们还显示,Blimp-1 / Aiolos调节途径的中断有助于来那度胺介导的抗MM活性。

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