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AuthorMeier, Christindc.contributor.author
AuthorAnastasiadou, Sofiadc.contributor.author
AuthorKnöll, Bernddc.contributor.author
Date of accession2023-06-02T08:00:49Zdc.date.accessioned
Available in OPARU since2023-06-02T08:00:49Zdc.date.available
Date of first publication2011-10-11dc.date.issued
AbstractDuring brain development, growth cones respond to attractive and repulsive axon guidance cues. How growth cones integrate guidance instructions is poorly understood. Here, we demonstrate a link between BDNF (brain derived neurotrophic factor), promoting axonal branching and ephrin-A5, mediating axonal repulsion via Eph receptor tyrosine kinase activation. BDNF enhanced growth cone filopodial dynamics and neurite branching of primary neurons. We show that ephrin-A5 antagonized this BDNF-evoked neuronal motility. BDNF increased ERK phosphorylation (P-ERK) and nuclear ERK entry. Ephrin-A5 suppressed BDNF-induced ERK activity and might sequester P-ERK in the cytoplasm. Neurotrophins are well established stimulators of a neuronal immediate early gene (IEG) response. This is confirmed in this study by e.g. c-fos, Egr1 and Arc upregulation upon BDNF application. This BDNF-evoked IEG response required the transcription factor SRF (serum response factor). Notably, ephrin-A5 suppressed a BDNF-evoked neuronal IEG response, suggesting a role of Eph receptors in modulating gene expression. In opposite to IEGs, long-term ephrin-A5 application induced cytoskeletal gene expression of tropomyosin and actinin. To uncover specific Eph receptors mediating ephrin-As impact on neurotrophin signaling, EphA7 deficient mice were analyzed. In EphA7 deficient neurons alterations in growth cone morphology were observed. However, ephrin-A5 still counteracted neurotrophin signaling suggesting that EphA7 is not required for ephrin and BDNF crosstalk. In sum, our data suggest an interaction of ephrin-As and neurotrophin signaling pathways converging at ERK signaling and nuclear gene activity. As ephrins are involved in development and function of many organs, such modulation of receptor tyrosine kinase signaling and gene expression by Ephs might not be limited to the nervous system.dc.description.abstract
Languageendc.language.iso
PublisherUniversität Ulmdc.publisher
LicenseCC BY 4.0 Internationaldc.rights
Link to license texthttps://creativecommons.org/licenses/by/4.0/dc.rights.uri
KeywordERK signaling cascadedc.subject
KeywordNeuritesdc.subject
KeywordAxon guidancedc.subject
KeywordAxon guidance receptorsdc.subject
Dewey Decimal GroupDDC 570 / Life sciencesdc.subject.ddc
LCSHNeuronsdc.subject.lcsh
LCSHGene expressiondc.subject.lcsh
LCSHCytoskeletondc.subject.lcsh
TitleEphrin-A5 suppresses neurotrophin evoked neuronal motility, ERK activation and gene expressiondc.title
Resource typeWissenschaftlicher Artikeldc.type
VersionpublishedVersiondc.description.version
DOIhttp://dx.doi.org/10.18725/OPARU-48913dc.identifier.doi
URNhttp://nbn-resolving.de/urn:nbn:de:bsz:289-oparu-48989-0dc.identifier.urn
GNDNervenzelledc.subject.gnd
GNDAxondc.subject.gnd
GNDHippocampusdc.subject.gnd
GNDGenexpressiondc.subject.gnd
GNDZellskelettdc.subject.gnd
FacultyMedizinische Fakultätuulm.affiliationGeneral
InstitutionInstitut für Physiologische Chemieuulm.affiliationSpecific
Peer reviewjauulm.peerReview
DCMI TypeTextuulm.typeDCMI
CategoryPublikationenuulm.category
DOI of original publication10.1371/journal.pone.0026089dc.relation1.doi
Source - Title of sourcePLoS ONEsource.title
Source - Place of publicationPublic Library of Sciencesource.publisher
Source - Volume6source.volume
Source - Issue10source.issue
Source - Year2011source.year
Source - Article numbere26089source.articleNumber
Source - eISSN1932-6203source.identifier.eissn
Bibliographyuulmuulm.bibliographie
Is Supplemented Byhttps://journals.plos.org/plosone/article/file?type=supplementary&id=10.1371/journal.pone.0026089.s001dc.relation.isSupplementedBy
Is Supplemented Byhttps://journals.plos.org/plosone/article/file?type=supplementary&id=10.1371/journal.pone.0026089.s002dc.relation.isSupplementedBy
Is Supplemented Byhttps://journals.plos.org/plosone/article/file?type=supplementary&id=10.1371/journal.pone.0026089.s003dc.relation.isSupplementedBy
Is Supplemented Byhttps://journals.plos.org/plosone/article/file?type=supplementary&id=10.1371/journal.pone.0026089.s004dc.relation.isSupplementedBy
DFG project uulmTranskriptionale Regulation des Nervenwachstums in Entwicklung und Pathologie / DFG / Emmy Noether-Nachwuchsgruppen / 15171843 [KN543/2-1]uulm.projectDFG
DFG project uulmSFB 446 Teilprojekt B19 / Die Rolle von Histon Deacetylasen (HDACs) bei der Motilität neuronaler Zellen / DFG / 5481932uulm.projectDFG


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