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Oxygen sensing in Drosophila: Multiple isoforms of the prolyl hydroxylase fatiga have different capacity to regulate HIFαSima

Title: Oxygen sensing in Drosophila: Multiple isoforms of the prolyl hydroxylase fatiga have different capacity to regulate HIFαSima
Authors: Acevedo, J.M.; Centanin, L.; Dekanty, A.; Wappner, P.
Source: PLoS ONE 2010;5(8)
Publication Year: 2010
Collection: Repositorio Digital Institucional - Universidad de Buenos Aires (RDI UBA)
Subject Terms: hypoxia inducible factor; oxygenase; polyhistidine tag; procollagen proline 2 oxoglutarate 4 dioxygenase; prolyl 4 hydroxylase 1; prolyl 4 hydroxylase 2; prolyl 4 hydroxylase 3; unclassified drug; DNA binding protein; Drosophila protein; isoenzyme; messenger RNA; oxygen; Sima protein; Drosophila; alternative RNA splicing; animal cell; article; cell hypoxia; controlled study; embryo; gene expression regulation; gene locus; gene overexpression; imago; in vivo study; insect cell culture; intron; loss of function mutation; molecular dynamics
Description: Background: The Hypoxia Inducible Factor (HIF) mediates cellular adaptations to low oxygen. Prolyl-4-hydroxylases are oxygen sensors that hydroxylate the HIF alpha-subunit, promoting its proteasomal degradation in normoxia. Three HIFprolyl hydroxylases, encoded by independent genes, PHD1, PHD2, and PHD3, occur in mammals. PHD2, the longest PHD isoform includes a MYND domain, whose biochemical function is unclear. PHD2 and PHD3 genes are induced in hypoxia to shut down HIF dependent transcription upon reoxygenation, while expression of PHD1 is oxygen-independent. The physiologic significance of the diversity of the PHD oxygen sensors is intriguing. Methodology and Principal Findings: We have analyzed the Drosophila PHD locus, fatiga, which encodes 3 isoforms, FgaA, FgaB and FgaC that are originated through a combination of alternative initiation of transcription and alternative splicing. FgaA includes a MYND domain and is homologous to PHD2, while FgaB and FgaC are shorter isoforms most similar to PHD3. Through a combination of genetic experiments in vivo and molecular analyses in cell culture, we show that fgaB but not fgaA is induced in hypoxia, in a Sima-dependent manner, through a HIF-Responsive Element localized in the first intron of fgaA. The regulatory capacity of FgaB is stronger than that of FgaA, as complete reversion of fga loss-of-function phenotypes is observed upon transgenic expression of the former, and only partial rescue occurs after expression of the latter. Conclusions and Significance: Diversity of PHD isoforms is a conserved feature in evolution. As in mammals, there are hypoxia-inducible and non-inducible Drosophila PHDs, and a fly isoform including a MYND domain co-exists with isoforms lacking this domain. Our results suggest that the isoform devoid of a MYND domain has stronger regulatory capacity than that including this domain. ; Fil:Acevedo, J.M. Universidad de Buenos Aires. Facultad de Ciencias Exactas y Naturales; Argentina. ; Fil:Centanin, L. Universidad de Buenos Aires. Facultad ...
Document Type: article in journal/newspaper
File Description: application/pdf
Language: unknown
Relation: https://hdl.handle.net/20.500.12110/paper_19326203_v5_n8_p_Acevedo
Availability: https://hdl.handle.net/20.500.12110/paper_19326203_v5_n8_p_Acevedo; https://repositoriouba.sisbi.uba.ar/gsdl/cgi-bin/library.cgi?a=d&c=artiaex&d=paper_19326203_v5_n8_p_Acevedo_oai
Rights: info:eu-repo/semantics/openAccess ; http://creativecommons.org/licenses/by/2.5/ar
Accession Number: edsbas.F1AFCDF1
Database: BASE