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多功能共激活因子/共抑制因子复合物对HER2癌基因转录的调控

Regulation of HER2 oncogene transcription by a multifunctional coactivator/corepressor complex.

作者信息

Garee Jason P, Chien Christopher D, Li Jordan V, Wellstein Anton, Riegel Anna T

机构信息

Department of Oncology (J.P.G., C.D.C., J.V.L., A.W., A.T.R.), Lombardi Cancer Center, Georgetown University Medical Center, Washington, District of Columbia 20007; and Pediatric Oncology Branch (C.D.C.), National Cancer Institute, Bethesda, Maryland 20892.

出版信息

Mol Endocrinol. 2014 Jun;28(6):846-59. doi: 10.1210/me.2013-1379. Epub 2014 Mar 28.

Abstract

Transcription of the HER2 oncogene can be repressed by estrogen (E2). We now show that, a splice isoform of the nuclear receptor coactivator AIB1, AIB1-Δ4, is able to reverse E2 repression of HER2 gene expression in breast cancer cells. The first 224 amino acids of AIB1 that are absent in AIB1-Δ4, bind a co-repressor, ANCO1. Using chromatin immunoprecipitation assay approaches in MCF7 and BT474 cell lines, we demonstrate that AIB1 and AIB1-Δ4 can bind to the E2 regulatory site in the first intron of the HER2 gene, after E2 treatment, but only full-length AIB1 recruits ANCO1. Consistent with E2-induced chromatin repression, the AIB1-ANCO1 complex recruits HDAC3 and HDAC4 to the intronic estrogen response element and the proximal promoter acquires the repressive chromatin mark H3K9me3 and loses H3K4me1. In contrast, AIB1-Δ4 does not recruit ANCO 1, HDAC3, or HDAC4 and the proximal promoter retains activation marks of H3K4me1. In cell lines with low levels of ANCO1 (T47D), E2 does not repress HER2 gene transcription but the repressive response can be restored by overexpression of ANCO1. ANCO1 can also repress other E2-responsive genes, indicating that AIB1, AIB1-Δ4 and ANCO1 are important determinants of endocrine and growth factor responsiveness in breast cancer.

摘要

HER2癌基因的转录可被雌激素(E2)抑制。我们现在发现,核受体共激活因子AIB1的一种剪接异构体AIB1-Δ4能够逆转E2对乳腺癌细胞中HER2基因表达的抑制作用。AIB1中不存在于AIB1-Δ4中的前224个氨基酸与一种共抑制因子ANCO1结合。通过在MCF7和BT474细胞系中使用染色质免疫沉淀分析方法,我们证明,E2处理后,AIB1和AIB1-Δ4均可结合至HER2基因第一个内含子中的E2调控位点,但只有全长AIB1能募集ANCO1。与E2诱导的染色质抑制作用一致,AIB1-ANCO1复合物将HDAC3和HDAC4募集至内含子雌激素反应元件,近端启动子获得抑制性染色质标记H3K9me3并失去H3K4me1。相比之下,AIB1-Δ4不募集ANCO1、HDAC3或HDAC4,近端启动子保留H3K4me1的激活标记。在ANCO1水平较低的细胞系(T47D)中,E2不抑制HER2基因转录,但过表达ANCO1可恢复抑制反应。ANCO1还可抑制其他E2反应基因,表明AIB1、AIB1-Δ4和ANCO1是乳腺癌内分泌和生长因子反应性的重要决定因素。

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