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NUP98-DDX10 癌基因对原代人 CD34+ 细胞的影响:保守解旋酶基序的作用。

Effects of the NUP98-DDX10 oncogene on primary human CD34+ cells: role of a conserved helicase motif.

机构信息

Department of Pathology and Immunology, Washington University School of Medicine, St Louis, MO 63110, USA.

出版信息

Leukemia. 2010 May;24(5):1001-11. doi: 10.1038/leu.2010.42. Epub 2010 Mar 25.

Abstract

NUP98 gene rearrangements occur in acute myeloid leukemia and result in the expression of fusion proteins. One of the most frequent is NUP98-DDX10 that fuses a portion of NUP98 to a portion of DDX10, a putative DEAD-box RNA helicase. Here, we show that NUP98-DDX10 dramatically increases proliferation and self-renewal of primary human CD34+ cells, and disrupts their erythroid and myeloid differentiation. It localizes to their nuclei and extensively deregulates gene expression. Comparison to another leukemogenic NUP98 fusion, NUP98-HOXA9, reveals a number of genes deregulated by both oncoproteins, including HOX genes, COX-2, MYCN, ANGPT1, REN, HEY1, SOX4 and others. These genes may account for the similar leukemogenic properties of NUP98 fusion oncogenes. The YIHRAGRTAR sequence in the DDX10 portion of NUP98-DDX10 represents a major motif shared by DEAD-box RNA helicases that is required for ATP binding, RNA-binding and helicase functions. Mutating this motif diminished the in vitro transforming ability of NUP98-DDX10, indicating that it has a role in leukemogenesis. These data show for the first time the in vitro transforming ability of NUP98-DDX10 and show that it is partially dependent on one of the consensus helicase motifs of DDX10. They also point to common pathways that may underlie leukemogenesis by different NUP98 fusions.

摘要

NUP98 基因重排发生在急性髓性白血病中,并导致融合蛋白的表达。其中最常见的是 NUP98-DDX10,它将 NUP98 的一部分与 DDX10 的一部分融合,DDX10 是一种假定的 DEAD-box RNA 解旋酶。在这里,我们表明 NUP98-DDX10 可显著增加原代人 CD34+细胞的增殖和自我更新,并破坏其红细胞和髓系分化。它定位于细胞核,并广泛调节基因表达。与另一种致白血病的 NUP98 融合蛋白 NUP98-HOXA9 相比,揭示了许多被两种致癌蛋白失调的基因,包括 HOX 基因、COX-2、MYCN、ANGPT1、REN、HEY1、SOX4 等。这些基因可能解释了 NUP98 融合致癌基因具有相似的致白血病特性。NUP98-DDX10 中 DDX10 部分的 YIHRAGRTAR 序列代表了 DEAD-box RNA 解旋酶的一个主要基序,该基序对于 ATP 结合、RNA 结合和解旋酶功能是必需的。突变该基序可降低 NUP98-DDX10 的体外转化能力,表明其在白血病发生中具有作用。这些数据首次显示了 NUP98-DDX10 的体外转化能力,并表明其部分依赖于 DDX10 的共识解旋酶基序之一。它们还指出了不同 NUP98 融合可能导致白血病发生的共同途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bd33/2868946/6b3fea6e650e/nihms-172760-f0001.jpg

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