Pax3 Hypomorphs Reveal Hidden Pax7 Functional Genetic Compensation in Utero

dc.contributor.authorZhou, Hong-Ming
dc.contributor.authorConway, Simon J.
dc.contributor.departmentDermatology, School of Medicineen_US
dc.date.accessioned2023-06-15T13:24:09Z
dc.date.available2023-06-15T13:24:09Z
dc.date.issued2022-05-17
dc.description.abstractPax3 and Pax7 transcription factors are paralogs within the Pax gene family that that are expressed in early embryos in partially overlapping expression domains and have distinct functions. Significantly, mammalian development is largely unaffected by Pax7 systemic deletion but systemic Pax3 deletion results in defects in neural tube closure, neural crest emigration, cardiac outflow tract septation, muscle hypoplasia and in utero lethality by E14. However, we previously demonstrated that Pax3 hypomorphs expressing only 20% functional Pax3 protein levels exhibit normal neural tube and heart development, but myogenesis is selectively impaired. To determine why only some Pax3-expressing cell lineages are affected and to further titrate Pax3 threshold levels required for neural tube and heart development, we generated hypomorphs containing both a hypomorphic and a null Pax3 allele. This resulted in mutants only expressing 10% functional Pax3 protein with exacerbated neural tube, neural crest and muscle defects, but still a normal heart. To examine why the cardiac neural crest appears resistant to very low Pax3 levels, we examined its paralog Pax7. Significantly, Pax7 expression is both ectopically expressed in Pax3-expressing dorsal neural tube cells and is also upregulated in the Pax3-expressing lineages. To test whether this compensatory Pax7 expression is functional, we deleted Pax7 both systemically and lineage-specifically in hypomorphs expressing only 10% Pax3. Removal of one Pax7 allele resulted in partial outflow tract defects, and complete loss of Pax7 resulted in full penetrance outflow tract defects and in utero lethality. Moreover, combinatorial loss of Pax3 and Pax7 resulted in severe craniofacial defects and a total block of neural crest cell emigration from the neural tube. Pax7Cre lineage mapping revealed ectopic labeling of Pax3-derived neural crest tissues and within the outflow tract of the heart, experimentally confirming the observation of ectopic activation of Pax7 in 10% Pax3 hypomorphs. Finally, genetic cell ablation of Pax7Cre-marked cells is sufficient to cause outflow tract defects in hypomorphs expressing only 10% Pax3, confirming that ectopic and induced Pax7 can play an overlapping functional genetic compensational role in both cardiac neural crest lineage and during craniofacial development, which is normally masked by the dominant role of Pax3.en_US
dc.eprint.versionFinal published versionen_US
dc.identifier.citationZhou HM, Conway SJ. Pax3 Hypomorphs Reveal Hidden Pax7 Functional Genetic Compensation in Utero. J Dev Biol. 2022;10(2):19. Published 2022 May 17. doi:10.3390/jdb10020019en_US
dc.identifier.urihttps://hdl.handle.net/1805/33776
dc.language.isoen_USen_US
dc.publisherMDPIen_US
dc.relation.isversionof10.3390/jdb10020019en_US
dc.relation.journalJournal of Developmental Biologyen_US
dc.rightsAttribution 4.0 International*
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/*
dc.sourcePMCen_US
dc.subjectPax3en_US
dc.subjectPax7en_US
dc.subjectFunctional genetic compensationen_US
dc.subjectCardiac neural cresten_US
dc.subjectHeart defectsen_US
dc.subjectCraniorachischisisen_US
dc.subjectHypomorphen_US
dc.subjectLineage mappingen_US
dc.subjectGenetic cell ablationen_US
dc.titlePax3 Hypomorphs Reveal Hidden Pax7 Functional Genetic Compensation in Uteroen_US
dc.typeArticleen_US
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