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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >MLL fusion proteins preferentially regulate a subset of wild-type MLL target genes in the leukemic genome.
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MLL fusion proteins preferentially regulate a subset of wild-type MLL target genes in the leukemic genome.

机译:MLL融合蛋白优先调节白血病基因组中野生型MLL靶基因的子集。

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MLL encodes a histone methyltransferase that is critical in maintaining gene expression during embryonic development and hematopoiesis. 11q23 translocations result in the formation of chimeric MLL fusion proteins that act as potent drivers of acute leukemia. However, it remains unclear what portion of the leukemic genome is under the direct control of MLL fusions. By comparing patient-derived leukemic cell lines, we find that MLL fusion-bound genes are a small subset of that recognized by wild-type MLL. In an inducible MLL-ENL model, MLL fusion protein binding and changes in H3K79 methylation are limited to a specific portion of the genome, whereas wild-type MLL distributes to a much larger set of gene loci. Surprisingly, among 223 MLL-ENL-bound genes, only 12 demonstrate a significant increase in mRNA expression on induction of the fusion protein. In addition to Hoxa9 and Meis1, this includes Eya1 and Six1, which comprise a heterodimeric transcription factor important in several developmental pathways. We show that Eya1 has the capacity to immortalize hematopoietic progenitor cells in vitro and collaborates with Six1 in hematopoietic transformation assays. Altogether, our data suggest that MLL fusions contribute to the development of acute leukemia through direct activation of a small set of target genes.
机译:MLL编码一个组蛋白甲基转移酶,对维持胚胎发育和造血过程中的基因表达至关重要。 11q23易位导致嵌合MLL融合蛋白的形成,它们是急性白血病的有力驱动器。但是,尚不清楚白血病基因组的哪一部分受MLL融合蛋白的直接控制。通过比较患者来源的白血病细胞系,我们发现MLL融合结合基因是野生型MLL识别的基因的一小部分。在可诱导的MLL-ENL模型中,MLL融合蛋白的结合和H3K79甲基化的变化仅限于基因组的特定部分,而野生型MLL则分布在更大的基因座上。出人意料的是,在223个MLL-ENL结合基因中,只有12个在融合蛋白的诱导下显示出mRNA表达的显着增加。除了Hoxa9和Meis1,它还包括Eya1和Six1,它们包含在几个发育途径中很重要的异二聚体转录因子。我们显示,Eya1具有在体外永生化造血祖细胞的能力,并在造血转化测定中与Six1合作。总而言之,我们的数据表明,MLL融合通过一小部分靶基因的直接激活而有助于急性白血病的发展。

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