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Co-immunoprecipitation Assay Using Endogenous Nuclear Proteins from Cells Cultured Under Hypoxic Conditions
Published on: August 2, 2018
Hypoxic regulation of hypoxia inducible factor 1 alpha via antisense transcription
Nicholas Downes1, Henri Niskanen1, Vanesa Tomas Bosch1
1A.I. Virtanen Institute, University of Eastern Finland, Kuopio, North-Savo, Finland.
Abstract:
Impaired oxygen homeostasis is a frequently encountered pathophysiological factor in multiple complex diseases, including cardiovascular disease and cancer. While the canonical hypoxia response pathway is well characterized, less is known about the role of noncoding RNAs in this process. Here, we investigated the nascent and steady-state noncoding transcriptional responses in endothelial cells and their potential roles in regulating the hypoxic response. Notably, we identify a novel antisense long noncoding RNA that convergently overlaps the majority of the hypoxia inducible factor 1 alpha (HIF1A) locus, which is expressed across several cell types and elevated in atherosclerotic lesions. The antisense (HIF1A-AS) is produced as a stable, unspliced, and polyadenylated nuclear retained transcript. HIF1A-AS is highly induced in hypoxia by both HIF1A and HIF2A and exhibits anticorrelation with the coding HIF1A transcript and protein expression. We further characterized this functional relationship by CRISPR-mediated bimodal perturbation of the HIF1A-AS promoter. We provide evidence that HIF1A-AS represses the expression of HIF1a in cis by repressing transcriptional elongation and deposition of H3K4me3, and that this mechanism is dependent on the act of antisense transcription itself. Overall, our results indicate a critical regulatory role of antisense mediated transcription in regulation of HIF1A expression and cellular response to hypoxia.
Insights
A novel long noncoding RNA, HIF1A-AS, regulates the hypoxia response. It represses hypoxia-inducible factor 1 alpha (HIF1A) expression, impacting cellular responses to low oxygen conditions.
Area of Science:
- Molecular Biology
- Genetics
- Cell Biology
Background:
- Impaired oxygen homeostasis is central to diseases like cardiovascular disease and cancer.
- The canonical hypoxia response pathway is understood, but the role of noncoding RNAs remains unclear.
Purpose of the Study:
- Investigate noncoding RNA transcriptional responses in endothelial cells during hypoxia.
- Identify novel noncoding RNAs involved in regulating the hypoxic response.
Main Methods:
- Analysis of nascent and steady-state noncoding transcription in endothelial cells.
- Identification and characterization of a novel antisense long noncoding RNA (HIF1A-AS).
- CRISPR-mediated promoter perturbation to study HIF1A-AS function.
Main Results:
- Identified HIF1A-AS, a novel antisense long noncoding RNA overlapping the HIF1A locus.
- HIF1A-AS is induced by hypoxia and shows anticorrelation with HIF1A expression.
- HIF1A-AS represses HIF1A expression in cis by inhibiting transcriptional elongation and H3K4me3 deposition.
Conclusions:
- Antisense transcription plays a critical role in regulating HIF1A expression.
- HIF1A-AS acts as a negative regulator of HIF1A, influencing cellular responses to hypoxia.
- This finding offers new insights into the noncoding RNA-mediated regulation of oxygen homeostasis.
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