The SIN3A histone deacetylase complex is required for a complete transcriptional response to hypoxia

生物 加压器 HDAC1型 基因 基因表达调控 组蛋白 组蛋白脱乙酰基酶 转录调控 抑制因子 基因表达 抄写(语言学) HDAC10型 HDAC4型 下调和上调 转录因子 HDAC11型 细胞生物学 遗传学 哲学 语言学
作者
María Tiana,Bárbara Acosta‐Iborra,Laura Puente-Santamaría,Pablo Hernansanz‐Agustín,Rebecca Worsley-Hunt,Norma Masson,Francisco García‐Río,David R. Mole,Peter J. Ratcliffe,Wyeth W. Wasserman,Benilde Jiménez,Luis del Peso
出处
期刊:Nucleic Acids Research [Oxford University Press]
卷期号:46 (1): 120-133 被引量:99
标识
DOI:10.1093/nar/gkx951
摘要

Cells adapt to environmental changes, including fluctuations in oxygen levels, through the induction of specific gene expression programs. To identify genes regulated by hypoxia at the transcriptional level, we pulse-labeled HUVEC cells with 4-thiouridine and sequenced nascent transcripts. Then, we searched genome-wide binding profiles from the ENCODE project for factors that correlated with changes in transcription and identified binding of several components of the Sin3A co-repressor complex, including SIN3A, SAP30 and HDAC1/2, proximal to genes repressed by hypoxia. SIN3A interference revealed that it participates in the downregulation of 75% of the hypoxia-repressed genes in endothelial cells. Unexpectedly, it also blunted the induction of 47% of the upregulated genes, suggesting a role for this corepressor in gene induction. In agreement, ChIP-seq experiments showed that SIN3A preferentially localizes to the promoter region of actively transcribed genes and that SIN3A signal was enriched in hypoxia-repressed genes, prior exposure to the stimulus. Importantly, SINA3 occupancy was not altered by hypoxia in spite of changes in H3K27ac signal. In summary, our results reveal a prominent role for SIN3A in the transcriptional response to hypoxia and suggest a model where modulation of the associated histone deacetylase activity, rather than its recruitment, determines the transcriptional output.

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