The dynamics of chemoattractant receptors redistribution in the electrotaxis of 3T3 fibroblasts

2025
journal article
article
dc.abstract.enBackground: Electrotaxis, the directed cell movement in direct current electric field (dcEF), is crucial for wound healing and development. We recently proposed a biphasic electrotaxis mechanism, where an initial rapid response is driven by ionic mechanisms, while redistribution of membrane components come into play during prolonged exposure to dcEF. Methods: To verify this hypothesis, we studied the redistribution dynamics of EGFR, PDGFRα/β, and TGFβR1 in dcEF. For this purpose, we utilized cells transfected with plasmids encoding fluorescently tagged receptors, which were exposed to dcEF in a custom-designed electrotactic chamber. Fluorescent images were captured using wide-field or TIRF microscopy, enabling precise quantitative analysis of receptor redistribution. Additionally, the functional significance of these selected receptors in electrotaxis was evaluated by silencing their expression using an siRNA library. Results: Although EGFR moved immediately to cathode after dcEF application, maximum distribution asymmetry was reached after 30-40 min. This process was more efficient at higher dcEF intensities, specifically, asymmetry was greater at 3 V/cm compared to 1 V/cm, consistent with the biphasic mechanism observed only under the stronger dcEF. Additionally, redistribution was more effective under alkaline conditions and near the cell base, but decreased when glass was coated with poly-L-lysine, indicating electroosmosis as a key factor. Importantly, EGFR redistribution did not correlate with the rapid reaction of 3T3 cells to dcEF reversal, which occurred within 1–2 min, when receptor orientation was not yet reversed. PDGFRα exhibited similar but less marked cathodal redistribution, while PDGFRβ and TGFβR1 did not redistribute. siRNA knockdown experiments confirmed the importance of EGFR and ErbB4 in the electrotaxis. EGFR’s role was largely ligand-independent, and it had a significant impact on the response of 3T3 cells to dcEF during the first hour of the experiment, but was not involved in the fastest response, which was Kir-dependent. Conclusions: Our study suggests that EGFR redistribution may play a role in the early stages and partially contribute to the long-term electrotaxis of 3T3 fibroblasts. However, this mechanism alone does not fully explain rapid responses to dcEF orientation changes indicating a more complex, multimodal mechanism of electrotaxis in these cells.
dc.affiliationWydział Biochemii, Biofizyki i Biotechnologii : Zakład Biologii Komórki
dc.contributor.authorGorzkowska, Jagoda
dc.contributor.authorKozak, Wiktoria
dc.contributor.authorBobis-Wozowicz, Sylwia - 152444
dc.contributor.authorCherepashuk, Ivan
dc.contributor.authorMadeja, Zbigniew - 130173
dc.contributor.authorLasota, Sławomir - 150618
dc.date.accession2025-04-09
dc.date.accessioned2025-04-09T09:16:04Z
dc.date.available2025-04-09T09:16:04Z
dc.date.createdat2025-04-01T13:26:16Zen
dc.date.issued2025
dc.date.openaccess0
dc.description.accesstimew momencie opublikowania
dc.description.additionalBibliogr.
dc.description.versionostateczna wersja wydawcy
dc.description.volume23
dc.identifier.articleid173
dc.identifier.doi10.1186/s12964-025-02165-4
dc.identifier.issn1478-811X
dc.identifier.projectDRC AI
dc.identifier.urihttps://ruj.uj.edu.pl/handle/item/551270
dc.identifier.weblinkhttps://biosignaling.biomedcentral.com/articles/10.1186/s12964-025-02165-4#citeas
dc.languageeng
dc.language.containereng
dc.rightsUdzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa
dc.rights.licenceCC-BY
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/legalcode.pl
dc.share.typeotwarte czasopismo
dc.subject.enelectrotaxis
dc.subject.enelectric field
dc.subject.endcEF
dc.subject.enreceptor redistribution
dc.subject.enEGFR
dc.subject.enelectroosmosis
dc.subtypeArticle
dc.titleThe dynamics of chemoattractant receptors redistribution in the electrotaxis of 3T3 fibroblasts
dc.title.journalCell Communication and Signaling
dc.typeJournalArticle
dspace.entity.typePublicationen
dc.abstract.en
Background: Electrotaxis, the directed cell movement in direct current electric field (dcEF), is crucial for wound healing and development. We recently proposed a biphasic electrotaxis mechanism, where an initial rapid response is driven by ionic mechanisms, while redistribution of membrane components come into play during prolonged exposure to dcEF. Methods: To verify this hypothesis, we studied the redistribution dynamics of EGFR, PDGFRα/β, and TGFβR1 in dcEF. For this purpose, we utilized cells transfected with plasmids encoding fluorescently tagged receptors, which were exposed to dcEF in a custom-designed electrotactic chamber. Fluorescent images were captured using wide-field or TIRF microscopy, enabling precise quantitative analysis of receptor redistribution. Additionally, the functional significance of these selected receptors in electrotaxis was evaluated by silencing their expression using an siRNA library. Results: Although EGFR moved immediately to cathode after dcEF application, maximum distribution asymmetry was reached after 30-40 min. This process was more efficient at higher dcEF intensities, specifically, asymmetry was greater at 3 V/cm compared to 1 V/cm, consistent with the biphasic mechanism observed only under the stronger dcEF. Additionally, redistribution was more effective under alkaline conditions and near the cell base, but decreased when glass was coated with poly-L-lysine, indicating electroosmosis as a key factor. Importantly, EGFR redistribution did not correlate with the rapid reaction of 3T3 cells to dcEF reversal, which occurred within 1–2 min, when receptor orientation was not yet reversed. PDGFRα exhibited similar but less marked cathodal redistribution, while PDGFRβ and TGFβR1 did not redistribute. siRNA knockdown experiments confirmed the importance of EGFR and ErbB4 in the electrotaxis. EGFR’s role was largely ligand-independent, and it had a significant impact on the response of 3T3 cells to dcEF during the first hour of the experiment, but was not involved in the fastest response, which was Kir-dependent. Conclusions: Our study suggests that EGFR redistribution may play a role in the early stages and partially contribute to the long-term electrotaxis of 3T3 fibroblasts. However, this mechanism alone does not fully explain rapid responses to dcEF orientation changes indicating a more complex, multimodal mechanism of electrotaxis in these cells.
dc.affiliation
Wydział Biochemii, Biofizyki i Biotechnologii : Zakład Biologii Komórki
dc.contributor.author
Gorzkowska, Jagoda
dc.contributor.author
Kozak, Wiktoria
dc.contributor.author
Bobis-Wozowicz, Sylwia - 152444
dc.contributor.author
Cherepashuk, Ivan
dc.contributor.author
Madeja, Zbigniew - 130173
dc.contributor.author
Lasota, Sławomir - 150618
dc.date.accession
2025-04-09
dc.date.accessioned
2025-04-09T09:16:04Z
dc.date.available
2025-04-09T09:16:04Z
dc.date.createdaten
2025-04-01T13:26:16Z
dc.date.issued
2025
dc.date.openaccess
0
dc.description.accesstime
w momencie opublikowania
dc.description.additional
Bibliogr.
dc.description.version
ostateczna wersja wydawcy
dc.description.volume
23
dc.identifier.articleid
173
dc.identifier.doi
10.1186/s12964-025-02165-4
dc.identifier.issn
1478-811X
dc.identifier.project
DRC AI
dc.identifier.uri
https://ruj.uj.edu.pl/handle/item/551270
dc.identifier.weblink
https://biosignaling.biomedcentral.com/articles/10.1186/s12964-025-02165-4#citeas
dc.language
eng
dc.language.container
eng
dc.rights
Udzielam licencji. Uznanie autorstwa 4.0 Międzynarodowa
dc.rights.licence
CC-BY
dc.rights.uri
http://creativecommons.org/licenses/by/4.0/legalcode.pl
dc.share.type
otwarte czasopismo
dc.subject.en
electrotaxis
dc.subject.en
electric field
dc.subject.en
dcEF
dc.subject.en
receptor redistribution
dc.subject.en
EGFR
dc.subject.en
electroosmosis
dc.subtype
Article
dc.title
The dynamics of chemoattractant receptors redistribution in the electrotaxis of 3T3 fibroblasts
dc.title.journal
Cell Communication and Signaling
dc.type
JournalArticle
dspace.entity.typeen
Publication
Affiliations

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