Unknown,Transcriptomics,Genomics,Proteomics

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Regulation of Mammalian Cell Growth and Survival By an RNA Polymerase II-Pausing Factor (ChIP-seq)


ABSTRACT: Many mammalian genes are occupied by paused RNA polymerase II (pol II) at promoter-proximal regions on both sides of transcription start sites (TSSs). However, the consequences of pol II pausing on gene expression and cell biology are not fully understood. Here we report that genetic ablation of the b subunit of mouse negative elongation factor (Nelf-b), a key pol II-pausing factor, results in slower progression at multiple cell cycle stages and increased apoptosis. Consistently, a whole-genome analysis indicates that growth and cell death-related genes are highly enriched among the direct target genes of Nelf-b. In particular, Nelf-b deletion increases pol II density in the promoter-distal region of stress response genes and their overall expression levels in the absence of any external stress signals. In addition, our work also reveals a previously unappreciated role of Nelf-b role in curbing TSS-upstream transcription of many mammalian genes. We suggest that Nelf-mediated pol II pausing balances the cellular needs for growth/survival and stress response by preventing excessive basal transcription of stress-induced genes. Examination of Nelf-b bindings sites on chromosomes in mouse embryonic fibroblasts

ORGANISM(S): Mus musculus

SUBMITTER: Jianlong Sun 

PROVIDER: E-GEOD-24113 | biostudies-arrayexpress |

REPOSITORIES: biostudies-arrayexpress

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Publications

Genetic and genomic analyses of RNA polymerase II-pausing factor in regulation of mammalian transcription and cell growth.

Sun Jianlong J   Pan Haihui H   Lei Chengwei C   Yuan Bin B   Nair Sreejith J SJ   April Craig C   Parameswaran Balaji B   Klotzle Brandy B   Fan Jian-Bing JB   Ruan Jianhua J   Li Rong R  

The Journal of biological chemistry 20110824 42


Many mammalian genes are occupied by paused RNA polymerase II (pol II) in the promoter-proximal region on both sides of the transcription start site. However, the impact of pol II pausing on gene expression and cell biology is not fully understood. In this study, we used a Cre-Lox system to conditionally knock out the b subunit of mouse negative elongation factor (Nelf-b), a key pol II-pausing factor, in mouse embryonic fibroblasts. We found that Nelf-b was associated with the promoter-proximal  ...[more]

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