Matches in SemOpenAlex for { <https://semopenalex.org/work/W4242080291> ?p ?o ?g. }
Showing items 1 to 63 of
63
with 100 items per page.
- W4242080291 abstract "Abstract Background: During eye lens development the fetal vasculature regresses leaving the lens without a direct oxygen source. Both embryonically and throughout adult life, the lens contains a decreasing oxygen gradient from the surface to the core that parallels the natural differentiation of immature surface epithelial cells into mature core transparent fiber cells. These properties of the lens suggest a potential role for hypoxia in the regulation of genes required for mature lens structure and function. Since HIF1α is a master regulator of the hypoxic response, these lens properties also implicate HIF1α as a potential requirement for lens formation and homeostasis. Here, we employed a multiomics approach combining CUT&RUN, RNAseq and ATACseq analysis to establish the genomic complement of lens HIF1α binding sites, genes activated or repressed by HIF1α and the chromatin states of HIF1α-regulated genes. Results : CUT&RUN analysis revealed 8,375 HIF1α-DNA binding complexes in the chick lens genome. 1,190 HIF1α-DNA binding complexes were significantly clustered within chromatin accessible regions (χ 2 test p < 1x10 -55 ) identified by ATACseq. Formation of the identified HIF1α-DNA complexes paralleled the activation or repression of 526 genes, 116 of which contained HIF1α binding sites within 10kB of the transcription start sites. Some of the identified HIF1α genes have previously established lens functions while others have novel functions never before examined in the lens. GO and pathway analysis of these genes implicate HIF1α in the control of a wide-variety of cellular pathways potentially critical for lens formation, structure and function including glycolysis, cell cycle regulation, chromatin remodeling, Notch and Wnt signaling, differentiation, development, and transparency. Conclusions: These data establish the first functional map of genomic HIF1α-DNA complexes in the eye lens. They identify HIF1α as an important regulator of a wide-variety of genes previously shown to be critical for lens formation and function and they reveal a requirement for HIF1α in the regulation of a wide-variety of genes not yet examined for lens function. They support a requirement for HIF1α in lens development, structure and function and they provide a basis for understanding the potential roles and requirements for HIF1α in the development, structure and function of more complex tissues." @default.
- W4242080291 created "2022-05-12" @default.
- W4242080291 creator A5011934276 @default.
- W4242080291 creator A5015535419 @default.
- W4242080291 creator A5037639513 @default.
- W4242080291 creator A5041498911 @default.
- W4242080291 creator A5083746709 @default.
- W4242080291 creator A5090663463 @default.
- W4242080291 date "2021-03-01" @default.
- W4242080291 modified "2023-10-16" @default.
- W4242080291 title "A Functional Map of Genomic HIF1α-DNA Complexes in The Eye Lens Revealed Through Multiomics Analysis" @default.
- W4242080291 doi "https://doi.org/10.21203/rs.3.rs-247248/v1" @default.
- W4242080291 hasPublicationYear "2021" @default.
- W4242080291 type Work @default.
- W4242080291 citedByCount "0" @default.
- W4242080291 crossrefType "posted-content" @default.
- W4242080291 hasAuthorship W4242080291A5011934276 @default.
- W4242080291 hasAuthorship W4242080291A5015535419 @default.
- W4242080291 hasAuthorship W4242080291A5037639513 @default.
- W4242080291 hasAuthorship W4242080291A5041498911 @default.
- W4242080291 hasAuthorship W4242080291A5083746709 @default.
- W4242080291 hasAuthorship W4242080291A5090663463 @default.
- W4242080291 hasBestOaLocation W42420802911 @default.
- W4242080291 hasConcept C104317684 @default.
- W4242080291 hasConcept C150194340 @default.
- W4242080291 hasConcept C151730666 @default.
- W4242080291 hasConcept C15336307 @default.
- W4242080291 hasConcept C186310378 @default.
- W4242080291 hasConcept C2780723820 @default.
- W4242080291 hasConcept C2909221355 @default.
- W4242080291 hasConcept C54355233 @default.
- W4242080291 hasConcept C83640560 @default.
- W4242080291 hasConcept C86339819 @default.
- W4242080291 hasConcept C86803240 @default.
- W4242080291 hasConcept C95444343 @default.
- W4242080291 hasConceptScore W4242080291C104317684 @default.
- W4242080291 hasConceptScore W4242080291C150194340 @default.
- W4242080291 hasConceptScore W4242080291C151730666 @default.
- W4242080291 hasConceptScore W4242080291C15336307 @default.
- W4242080291 hasConceptScore W4242080291C186310378 @default.
- W4242080291 hasConceptScore W4242080291C2780723820 @default.
- W4242080291 hasConceptScore W4242080291C2909221355 @default.
- W4242080291 hasConceptScore W4242080291C54355233 @default.
- W4242080291 hasConceptScore W4242080291C83640560 @default.
- W4242080291 hasConceptScore W4242080291C86339819 @default.
- W4242080291 hasConceptScore W4242080291C86803240 @default.
- W4242080291 hasConceptScore W4242080291C95444343 @default.
- W4242080291 hasLocation W42420802911 @default.
- W4242080291 hasOpenAccess W4242080291 @default.
- W4242080291 hasPrimaryLocation W42420802911 @default.
- W4242080291 hasRelatedWork W164816 @default.
- W4242080291 hasRelatedWork W17703454 @default.
- W4242080291 hasRelatedWork W18280525 @default.
- W4242080291 hasRelatedWork W20911189 @default.
- W4242080291 hasRelatedWork W27523757 @default.
- W4242080291 hasRelatedWork W39295725 @default.
- W4242080291 hasRelatedWork W40230220 @default.
- W4242080291 hasRelatedWork W41097070 @default.
- W4242080291 hasRelatedWork W8528407 @default.
- W4242080291 hasRelatedWork W169586 @default.
- W4242080291 isParatext "false" @default.
- W4242080291 isRetracted "false" @default.
- W4242080291 workType "article" @default.