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NUP98-PMX1的致白血病特性与NUP98和同源异型结构域序列功能有关,而与PMX1对血清反应因子的结合特性无关。

Leukemogenic properties of NUP98-PMX1 are linked to NUP98 and homeodomain sequence functions but not to binding properties of PMX1 to serum response factor.

作者信息

Hirose K, Abramovich C, Argiropoulos B, Humphries R K

机构信息

Terry Fox Laboratory, British Columbia Cancer Agency, Vancouver, British Columbia, Canada.

出版信息

Oncogene. 2008 Oct 9;27(46):6056-67. doi: 10.1038/onc.2008.210. Epub 2008 Jul 7.

DOI:10.1038/onc.2008.210
PMID:18604245
Abstract

PMX1 is a member of a non-clustered homeobox gene family, not normally expressed in hematopoietic cells, and first identified for its role in enhancing the binding of the serum response factor (SRF) to the serum responsive element (SRE). PMX1 has never been linked to leukemia on its own, raising the possibility of unique mechanisms underlying the oncogenicity of NUP98-PMX1. To elucidate the leukemogenic potential of NUP98-PMX1, we compared the effects of PMX1 and NUP98-PMX1 and, through strategic mutations, the involvement of the SRE in NUP98-PMX1-mediated leukemia. NUP98-PMX1, but not PMX1, had potent ability to impair differentiation, promote proliferation of myeloid progenitors, induce lethal myeloproliferative disease and to activate a number of genes previously linked to leukemic stem cells. Similar to NUP98-HOX fusions, the transforming potential of NUP98-PMX1 required the NUP98 portion and DNA-binding capability of the PMX1 homeodomain and collaborated with Meis1 to induce more rapid onset myeloproliferative-like myeloid leukemia. The transforming activity of NUP98-PMX1 was independent of its ability to interact with SRF. These findings provide novel evidence of the contributory role of the NUP98 sequence in conferring leukemogenic properties on a partner gene and point to common leukemogenic pathways for NUP98-PMX1 and NUP98-clustered HOX fusions.

摘要

PMX1是一个非成簇同源框基因家族的成员,通常不在造血细胞中表达,最初因其在增强血清反应因子(SRF)与血清反应元件(SRE)结合中的作用而被鉴定。PMX1自身从未与白血病相关联,这增加了NUP98 - PMX1致癌性背后存在独特机制的可能性。为了阐明NUP98 - PMX1的致白血病潜力,我们比较了PMX1和NUP98 - PMX1的作用,并通过策略性突变研究了SRE在NUP98 - PMX1介导的白血病中的作用。NUP98 - PMX1而非PMX1具有损害分化、促进髓系祖细胞增殖、诱导致死性骨髓增殖性疾病以及激活一些先前与白血病干细胞相关基因的强大能力。与NUP98 - HOX融合蛋白相似,NUP98 - PMX1的转化潜力需要NUP98部分以及PMX1同源结构域的DNA结合能力,并与Meis1协同作用以诱导更快发作的骨髓增殖样髓系白血病。NUP98 - PMX1的转化活性与其与SRF相互作用的能力无关。这些发现为NUP98序列在赋予伙伴基因致癌特性中的作用提供了新证据,并指出了NUP98 - PMX1和NUP98 - 成簇HOX融合蛋白共同的致癌途径。

相似文献

1
Leukemogenic properties of NUP98-PMX1 are linked to NUP98 and homeodomain sequence functions but not to binding properties of PMX1 to serum response factor.NUP98-PMX1的致白血病特性与NUP98和同源异型结构域序列功能有关,而与PMX1对血清反应因子的结合特性无关。
Oncogene. 2008 Oct 9;27(46):6056-67. doi: 10.1038/onc.2008.210. Epub 2008 Jul 7.
2
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3
Trans-repressive effect of NUP98-PMX1 on PMX1-regulated c-FOS gene through recruitment of histone deacetylase 1 by FG repeats.NUP98-PMX1通过FG重复序列募集组蛋白去乙酰化酶1对PMX1调控的c-FOS基因产生反式抑制作用。
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[Development of human myeloid leukemia-like phenotype in NUP98-PMX1 transgenic mice].[NUP98-PMX1转基因小鼠中人类髓系白血病样表型的发展]
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2
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4
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