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SWI/SNF复合物对于NRSF介导的人类非小细胞肺癌细胞系中神经元基因的抑制至关重要。

SWI/SNF complex is essential for NRSF-mediated suppression of neuronal genes in human nonsmall cell lung carcinoma cell lines.

作者信息

Watanabe H, Mizutani T, Haraguchi T, Yamamichi N, Minoguchi S, Yamamichi-Nishina M, Mori N, Kameda T, Sugiyama T, Iba H

机构信息

1Division of Host-Parasite Interaction, Department of Microbiology and Immunology, Institute of Medical Science, University of Tokyo, Nagasaki, Tokyo, Japan.

出版信息

Oncogene. 2006 Jan 19;25(3):470-9. doi: 10.1038/sj.onc.1209068.

Abstract

Mammalian chromatin remodeling factor, SWI/SNF complex contains a single molecule of either Brm or BRG1 as the ATPase catalytic subunit. Here, we show that the SWI/SNF complex forms a larger complex with neuron-restrictive silencer factor (NRSF) and its corepressors, mSin3A and CoREST, in human nonsmall cell lung carcinoma cell lines. We also demonstrate that the strong transcriptional suppression of such neuron-specific genes as synaptophysin and SCG10 by NRSF in these non-neural cells requires the functional SWI/SNF complex; these neuronal genes were elevated in cell lines deficient in both Brm and BRG1, whereas retrovirus vectors expressing siRNAs targeting integral components of SWI/SNF complex (Brm/BRG1 or Ini1) induced expression of these neuronal genes in SWI/SNF-competent cell lines. In cell lines deficient in both Brm and BRG1, exogenous Brm or BRG1 suppressed expression of these neuronal genes in an ATP-dependent manner and induced efficient and specific deacetylation of histone H4 around the NRSF binding site present in the synaptophysin gene by a large complex containing the recruited functional SWI/SNF complex. Patients with Brm/BRG1-deficient lung carcinoma have been reported to carry poor prognosis; derepression of NRSF-regulated genes including these neuron-specific genes could contribute to enhance tumorigenicity and also would provide selective markers for Brm/BRG1-deficient tumors.

摘要

哺乳动物染色质重塑因子SWI/SNF复合物包含单个Brm或BRG1分子作为ATP酶催化亚基。在此,我们表明在人非小细胞肺癌细胞系中,SWI/SNF复合物与神经元限制性沉默因子(NRSF)及其共抑制因子mSin3A和CoREST形成更大的复合物。我们还证明,在这些非神经细胞中,NRSF对突触素和SCG10等神经元特异性基因的强烈转录抑制需要功能性的SWI/SNF复合物;在同时缺乏Brm和BRG1的细胞系中,这些神经元基因表达上调,而表达靶向SWI/SNF复合物整合成分(Brm/BRG1或Ini1)的小干扰RNA的逆转录病毒载体在具有SWI/SNF功能的细胞系中诱导这些神经元基因的表达。在同时缺乏Brm和BRG1的细胞系中,外源性Brm或BRG1以ATP依赖的方式抑制这些神经元基因的表达,并通过包含募集的功能性SWI/SNF复合物的大复合物诱导突触素基因中NRSF结合位点周围组蛋白H4的高效特异性去乙酰化。据报道,Brm/BRG1缺陷型肺癌患者预后较差;包括这些神经元特异性基因在内的NRSF调控基因的去抑制可能有助于增强肿瘤发生能力,也可为Brm/BRG1缺陷型肿瘤提供选择性标志物。

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