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A switch from hBrm to Brgl at IFNy-activated sequences mediates the activation of human genes 被引量:1
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作者 Yi Zhang Mo-bin Cheng Yan-jun Zhang Xin Zhong Hui Dai Li Yan Ning-hua Wu Ye Zhang Yu-fei Shen 《Cell Research》 SCIE CAS CSCD 2010年第12期1345-1360,共16页
The SWI/SNF chromatin-remodeling complexes utilize energy from ATP hydrolysis to reposition nucleosomes and regulate the expression of human genes. Here, we studied the roles of human Brahma (hBrm) and Brahma-relate... The SWI/SNF chromatin-remodeling complexes utilize energy from ATP hydrolysis to reposition nucleosomes and regulate the expression of human genes. Here, we studied the roles of human Brahma (hBrm) and Brahma-related gene 1 (Brgl), the ATPase subunits of the SWI/SNF complexes, in regulating human genes. Our results indicate that both hBrm and Brgl interact with Signal transducer and activator of transcription (Stat) 1 in vitro. However, Statl in its native form only recruits hBrm to IFNy-activated sequences (GAS) of individual genes; by contrast, in a stress- induced phosphorylated form, Statl mainly binds to Brgl. Under basal conditions, hBrm is recruited by native Statl to the GAS and exists in a mSin3/HDAC co-repressor complex on the hsp90a gene, which shows a compact chromatin structure. Upon heat-shock, hBrm is acetylated by p300 and dissociates from the co-repressor complex, which the phosphorylated St^tl is increased, and binds and recruits Brgl to the GAS, leading to elevated induction of the gene. This hBrm/Brgl switch also occurs at the GAS of all of the three examined immune genes in heat-shocked cells; how- ever, this switch only occurs in specific cell types upon exposure to IFNy. Regardless of the stimulus, the hBrm/Brgl switch at the GAS elicits an increase in gene activity. Our data are consistent with the hypothesis that the hBrm/Brgl switch is an indicator of the responsiveness of a gene to heat-shock or IFNy stimulation and may represent an "on-off switch" of gene expression in vivo. 展开更多
关键词 chromatin remodeling hbrm Brg 1 Stat 1 P300 HEAT-SHOCK IFNΓ
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hSmarca2-b转录变体编码的hBRM-b异构体促进Hep-3B细胞凋亡
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作者 武寅龙 杨敏 《成都医学院学报》 CAS 2017年第3期247-253,共7页
目的考察hSmarca2-b转录变体编码的hBRM-b异构体蛋白是否具有促进Hep-3B肿瘤细胞凋亡的作用。方法利用pEGFP-N1质粒构建5种包含hSmarca2-b转录变体的5′调控序列、全长开放阅读框的部分cDNA序列以及能进一步编码产生hBRM-b-EGFP融合蛋... 目的考察hSmarca2-b转录变体编码的hBRM-b异构体蛋白是否具有促进Hep-3B肿瘤细胞凋亡的作用。方法利用pEGFP-N1质粒构建5种包含hSmarca2-b转录变体的5′调控序列、全长开放阅读框的部分cDNA序列以及能进一步编码产生hBRM-b-EGFP融合蛋白的过表达载体;脂质体转染过表达载体分别进入hSmarca2-b表达缺失的Hep-3B肝癌细胞,通过RT-PCR和Western Blot分别验证其mRNA的转录及hBRM-bEGFP融合蛋白的表达,并通过荧光成像进一步验证融合蛋白的产生;流式检测转染hBRM-b-EGFP过表达载体后的Hep-3B细胞,考察相对于空载体组凋亡情况的改变。结果 RT-PCR显示,Hep-3B细胞转染后hSmarca2-b变体表达水平从无到较高,Western Blot检测到符合理论大小的融合蛋白,荧光成像时可见转染细胞发出的绿色荧光,证明过表达载体构建成功;相对于空载体组,其中4种变体的过表达均使凋亡细胞比例增加近100%,单侧t检验显示差异有统计学意义(P<0.05)。结论 hSmarca2-b转录变体编码的hBRM-b异构体蛋白具有促进Hep-3B肝癌细胞凋亡的作用。 展开更多
关键词 hSmarca2-b hbrm-b异构体 可变剪接 溴区结构域 AT-hook模体
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