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Epigenetic silencing of the kinase tumor suppressor WNK2 is tumor-type and tumor-grade specific

机译:激酶抑癌基因WNK2的表观遗传沉默是肿瘤类型和肿瘤级别特异性的

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摘要

Both genetic and epigenetic mechanisms contribute to meningioma development by altering gene expression and protein function. To determine the relative contribution of each mechanism to meningioma development, we used an integrative approach measuring copy number and DNA methylation changes genomewide. We found that genetic alterations affected 1.9%, 7.4%, and 13.3% of the 691 loci studied, whereas epigenetic mechanisms affected 5.4%, 9.9%, and 10.3% of these loci in grade I, II, and III meningiomas, respectively. Genetic and epigenetic mechanisms rarely involved the same locus in any given tumor. The predilection for epigenetic rather than genetic silencing was exemplified at the 5' CpG island of WNK2, a serine-threonine kinase gene on chromosome 9q22.31. WNK2 is known to negatively regulate epidermal growth factor receptor signaling via inhibition of MEK1 (mitogen-activated protein kinase kinase 1), and point mutations have been reported in WNK1, WNK2, WNK3, and WNK4. In meningiomas, WNK2 was aberrantly methylated in 83% and 71% of grade II and HI meningiomas, respectively, but rarely in a total of 209 tumors from 13 other tumor types. Aberrant methyla-rntion of the CpG island was associated with decreased expression in primary tumors. WNK2 could be reactivated with a methylation inhibitor in IOMM-Lee, a meningioma cell line with a densely methylated WNK2 CpG island and lack of WNK2 expression. Expression of exogenous WNK2 inhibited colony formation, implicating it as a potential cell growth suppressor. These findings indicate that epigenetic mechanisms are common across meningiomas of all grades and that for specific genes such as WNK2, epigenetic alteration may be the dominant, grade-specific mechanism of gene inacti-vation.
机译:遗传和表观遗传机制都通过改变基因表达和蛋白质功能来促进脑膜瘤的发展。为了确定每种机制对脑膜瘤发展的相对贡献,我们使用了一种综合方法来测量全基因组的拷贝数和DNA甲基化变化。我们发现遗传改变影响了研究的691个基因座的1.9%,7.4%和13.3%,而表观遗传机制分别影响了I,II和III级脑膜瘤的这些基因座的5.4%,9.9%和10.3%。遗传和表观遗传机制很少涉及任何给定肿瘤中的相同基因座。在WNK2的5'CpG岛上表现出表观遗传沉默而不是基因沉默,这是染色体9q22.31上的丝氨酸-苏氨酸激酶基因。已知WNK2通过抑制MEK1(促分裂原活化的蛋白激酶激酶1)来负调节表皮生长因子受体信号传导,并且在WNK1,WNK2,WNK3和WNK4中已报道了点突变。在脑膜瘤中,WNK2分别在II级和HI级脑膜瘤中分别有83%和71%异常甲基化,但在其他13种肿瘤类型的总共209个肿瘤中很少出现。 CpG岛的甲基化异常与原发性肿瘤表达降低有关。 WNK2可以在具有密集甲基化WNK2 CpG岛且缺乏WNK2表达的脑膜瘤细胞株IOMM-Lee中用甲基化抑制剂重新激活。外源性WNK2的表达抑制了菌落的形成,暗示它是潜在的细胞生长抑制剂。这些发现表明,表观遗传机制在所有级别的脑膜瘤中都是常见的,对于特定基因(例如WNK2),表观遗传改变可能是基因失活的主要,特定级别的机制。

著录项

  • 来源
    《Neuro-Oncology》 |2009年第4期|414-422|共9页
  • 作者单位

    The Brain Tumor Research Center and Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, USA;

    The Brain Tumor Research Center and Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, USA;

    The Brain Tumor Research Center and Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, USA;

    The Brain Tumor Research Center and Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, USA;

    The Brain Tumor Research Center and Department of Neurological Surgery, University of California, San Francisco, San Francisco, CA, USA;

    Department of Pathology, University of California, San Francisco, San Francisco, CA, USA;

    German Cancer Research Center, Toxicology and Cancer Risk Factors, Heidelberg, Germany;

    Department of Cancer Genetics, Roswell Park Cancer Institute, Buffalo, NY, USA;

    Department of Cancer Genetics, Roswell Park Cancer Institute, Buffalo, NY, USA;

    Department of Neurological Surgery, University of California, San Francisco, Cancer Center, Room N225, 2340 Sutter St., San Francisco, CA 94143, USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    epigenetic; genetic; meningioma; restriction landmark genome scanning; WNK2;

    机译:表观遗传遗传脑膜瘤限制性标记基因组扫描;WNK2;

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