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染色体易位介导的 miRNA 逃逸导致 MEF2D 融合蛋白表达增强,从而抑制 PAX5 的转录活性。

Chromosomal translocation-mediated evasion from miRNA induces strong MEF2D fusion protein expression, causing inhibition of PAX5 transcriptional activity.

机构信息

Department of Hematology and Oncology, Nagoya University Graduate School of Medicine, Nagoya, Japan.

Department of Pathophysiological Laboratory Sciences, Nagoya University Graduate School of Medicine, Nagoya, Japan.

出版信息

Oncogene. 2019 Mar;38(13):2263-2274. doi: 10.1038/s41388-018-0573-9. Epub 2018 Nov 26.

Abstract

MEF2D fusion genes are newly discovered recurrent gene abnormalities that are detected in approximately 5% of acute lymphoblastic leukemia cases. We previously demonstrated that the vector-driven expression of MEF2D fusion proteins was markedly stronger than that of wild-type MEF2D; however, the underlying mechanisms and significance of this expression have yet to be clarified. We herein showed that the strong expression of MEF2D fusion proteins was caused by the loss of the target site of miRNA due to gene translocation. We identified the target region of miRNA located in the coding region and selected miR-122 as a candidate of the responsible miRNA. Mutations at a putative binding site of miR-122 increased MEF2D expression, while the transfection of its miRNA mimic reduced the expression of wild-type MEF2D, but not MEF2D fusion proteins. We also found that MEF2D fusion proteins inhibited the transcriptional activity of PAX5, a B-cell differentiation regulator in a manner that depended on fusion-specific strong expression and an association with histone deacetylase 4, which may lead to the differentiation disorders of B cells. Our results provide novel insights into the mechanisms underlying leukemia development by MEF2D fusion genes and the involvement of the deregulation of miRNA-mediated repression in cancer development.

摘要

MEF2D 融合基因是新发现的反复出现的基因异常,在大约 5%的急性淋巴细胞白血病病例中被检测到。我们之前已经证明,载体驱动的 MEF2D 融合蛋白的表达明显强于野生型 MEF2D;然而,这种表达的潜在机制和意义尚未阐明。我们在此表明,由于基因易位导致 miRNA 靶位点的丢失,导致 MEF2D 融合蛋白的强烈表达。我们确定了位于编码区的 miRNA 的靶区,并选择 miR-122 作为负责 miRNA 的候选物。miR-122 结合位点的突变增加了 MEF2D 的表达,而其 miRNA 模拟物的转染降低了野生型 MEF2D 的表达,但不降低 MEF2D 融合蛋白的表达。我们还发现 MEF2D 融合蛋白以依赖于融合特异性强表达和与组蛋白去乙酰化酶 4 相关的方式抑制 B 细胞分化调节剂 PAX5 的转录活性,这可能导致 B 细胞分化障碍。我们的研究结果为 MEF2D 融合基因导致白血病发生的机制以及 miRNA 介导的抑制失调在癌症发生中的参与提供了新的见解。

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