Publication:

Modeling the ferrochelatase c.315-48C modifier mutation for erythropoietic protoporphyria (EPP) in mice

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Date

Date
2017
Journal Article
Published version
cris.lastimport.scopus2025-08-16T04:17:49Z
cris.lastimport.wos2025-08-16T01:33:47Z
dc.contributor.institutionUniversity of Zurich
dc.date.accessioned2017-10-02T14:27:30Z
dc.date.available2017-10-02T14:27:30Z
dc.date.issued2017-03-01
dc.description.abstract

Erythropoietic protoporphyria (EPP) is caused by deficiency of ferrochelatase (FECH), which incorporates iron into protoporphyrin IX (PPIX) to form heme. Excitation of accumulated PPIX by light generates oxygen radicals that evoke excessive pain and, after longer light exposure, cause ulcerations in exposed skin areas of individuals with EPP. Moreover, ∼5% of the patients develop a liver dysfunction as a result of PPIX accumulation. Most patients (∼97%) have a severe FECH mutation (Mut) in trans to an intronic polymorphism (c.315-48C), which reduces ferrochelatase synthesis by stimulating the use of an aberrant 3' splice site 63 nt upstream of the normal site for exon 4. In contrast, with the predominant c.315-48T allele, the correct splice site is mostly used, and individuals with a T/Mut genotype do not develop EPP symptoms. Thus, the C allele is a potential target for therapeutic approaches that modify this splicing decision. To provide a model for pre-clinical studies of such approaches, we engineered a mouse containing a partly humanized Fech gene with the c.315-48C polymorphism. F1 hybrids obtained by crossing these mice with another inbred line carrying a severe Fech mutation (named m1Pas) show a very strong EPP phenotype that includes elevated PPIX in the blood, enlargement of liver and spleen, anemia, as well as strong pain reactions and skin lesions after a short period of light exposure. In addition to the expected use of the aberrant splice site, the mice also show a strong skipping of the partly humanized exon 3. This will limit the use of this model for certain applications and illustrates that engineering of a hybrid gene may have unforeseeable consequences on its splicing.

dc.identifier.doi10.1242/dmm.027755
dc.identifier.issn1754-8403
dc.identifier.scopus2-s2.0-85018243511
dc.identifier.urihttps://www.zora.uzh.ch/handle/20.500.14742/132697
dc.identifier.wos000395717100003
dc.language.isoeng
dc.subjectLiver dysfunction
dc.subjectMouse model
dc.subjectPhotosensitivity
dc.subjectProtoporphyrin IX (PPIX)
dc.subjectRare disease
dc.subjectSplicing defect
dc.subject.ddc610 Medicine & health
dc.title

Modeling the ferrochelatase c.315-48C modifier mutation for erythropoietic protoporphyria (EPP) in mice

dc.typearticle
dcterms.accessRightsinfo:eu-repo/semantics/openAccess
dcterms.bibliographicCitation.journaltitleDisease Models & Mechanisms
dcterms.bibliographicCitation.number3
dcterms.bibliographicCitation.originalpublishernameThe Company of Biologists
dcterms.bibliographicCitation.pageend233
dcterms.bibliographicCitation.pagestart225
dcterms.bibliographicCitation.pmid28093505
dcterms.bibliographicCitation.volume10
dspace.entity.typePublicationen
uzh.contributor.affiliationStadtspital Triemli
uzh.contributor.affiliationUniversity of Bern
uzh.contributor.affiliationUniversity of Bern
uzh.contributor.affiliationOzgene Pty Ltd
uzh.contributor.affiliationUniversity of Bern
uzh.contributor.affiliationUniversitat Basel
uzh.contributor.affiliationUniversitatsSpital Zurich
uzh.contributor.affiliationStadtspital Triemli
uzh.contributor.affiliationUniversity of Bern
uzh.contributor.affiliationStadtspital Triemli
uzh.contributor.authorBarman-Aksözen, Jasmin
uzh.contributor.authorCwiek, Paulina
uzh.contributor.authorBansode, Vijay B
uzh.contributor.authorKoentgen, Frank
uzh.contributor.authorTruöb, Judith
uzh.contributor.authorPelczar, Pawel
uzh.contributor.authorCinelli, Paolo
uzh.contributor.authorSchneider-Yin, Xiaoye
uzh.contributor.authorSchümperli, Daniel
uzh.contributor.authorMinder, Elisabeth I
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceNo
uzh.contributor.correspondenceYes
uzh.document.availabilitypublished_version
uzh.eprint.datestamp2017-10-02 14:27:30
uzh.eprint.lastmod2025-08-16 04:17:49
uzh.eprint.statusChange2017-10-02 14:27:30
uzh.funder.nameSNSF
uzh.funder.nameSNSF
uzh.funder.nameFP7
uzh.funder.nameFP7
uzh.funder.projectNumber31003A_153199
uzh.funder.projectNumber31003A_135644
uzh.funder.projectNumber211873
uzh.funder.projectNumber216480
uzh.funder.projectTitlemRNA metabolism and disease - histone RNA processing, alternative polyA site selection in neurons, pathogenesis and gene therapy studies in Spinal Muscular Atrophy
uzh.funder.projectTitleMammalian mRNA processing: basic studies on mRNA 3' end formation and medical implications of alternative splicing
uzh.funder.projectTitleISSOWAMA - Integrated Sustainable Solid Waste Management in Asia
uzh.funder.projectTitleSMART-VEI - The Smart-Vehicle
uzh.harvester.ethYes
uzh.harvester.nbNo
uzh.identifier.doi10.5167/uzh-139846
uzh.jdb.eprintsId23448
uzh.oastatus.unpaywallgold
uzh.oastatus.zoraGold
uzh.publication.citationBarman-Aksözen, Jasmin; Cwiek, Paulina; Bansode, Vijay B; Koentgen, Frank; Truöb, Judith; Pelczar, Pawel; Cinelli, Paolo; Schneider-Yin, Xiaoye; Schümperli, Daniel; Minder, Elisabeth I (2017). Modeling the ferrochelatase c.315-48C modifier mutation for erythropoietic protoporphyria (EPP) in mice. Disease Models & Mechanisms, 10(3):225-233.
uzh.publication.freeAccessAtdoi
uzh.publication.originalworkoriginal
uzh.publication.publishedStatusfinal
uzh.scopus.impact10
uzh.scopus.subjectsNeuroscience (miscellaneous)
uzh.scopus.subjectsMedicine (miscellaneous)
uzh.scopus.subjectsImmunology and Microbiology (miscellaneous)
uzh.scopus.subjectsGeneral Biochemistry, Genetics and Molecular Biology
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uzh.workflow.eprintid139846
uzh.workflow.fulltextStatuspublic
uzh.workflow.revisions61
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uzh.workflow.sourcePubMed:PMID:28093505
uzh.workflow.statusarchive
uzh.wos.impact7
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