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Article

A Transcriptomics Analysis of the Regulation of Lens Fiber Cell Differentiation in the Absence of FGFRs and PTEN

by
Anil Upreti
1,2,
Stephanie L. Padula
1,2,
Jacob M. Weaver
1,2,
Brad D. Wagner
2,
Allison M. Kneller
2,
Anthony L. Petulla
2,
Salil A. Lachke
3,4 and
Michael L. Robinson
1,2,*
1
Cell, Molecular and Structural Biology Program, Miami University, Oxford, OH 45056, USA
2
Department of Biology and Center for Visual Sciences, Miami University, Oxford, OH 45056, USA
3
Department of Biological Sciences, University of Delaware, Newark, DE 19716, USA
4
Center for Bioinformatics and Computational Biology, University of Delaware, Newark, DE 19716, USA
*
Author to whom correspondence should be addressed.
Cells 2024, 13(14), 1222; https://doi.org/10.3390/cells13141222
Submission received: 24 April 2024 / Revised: 28 June 2024 / Accepted: 17 July 2024 / Published: 19 July 2024
(This article belongs to the Collection Fibroblast Growth Factors: Pathophysiology and Therapeutics)

Abstract

Adding 50% vitreous humor to the media surrounding lens explants induces fiber cell differentiation and a significant immune/inflammatory response. While Fgfr loss blocks differentiation in lens epithelial explants, this blockage is partially reversed by deleting Pten. To investigate the functions of the Fgfrs and Pten during lens fiber cell differentiation, we utilized a lens epithelial explant system and conducted RNA sequencing on vitreous humor-exposed explants lacking Fgfrs, or Pten or both Fgfrs and Pten. We found that Fgfr loss impairs both vitreous-induced differentiation and inflammation while the additional loss of Pten restores these responses. Furthermore, transcriptomic analysis suggested that PDGFR-signaling in FGFR-deficient explants is required to mediate the rescue of vitreous-induced fiber differentiation in explants lacking both Fgfrs and Pten. The blockage of β-crystallin induction in explants lacking both Fgfrs and Pten in the presence of a PDGFR inhibitor supports this hypothesis. Our findings demonstrate that a wide array of genes associated with fiber cell differentiation are downstream of FGFR-signaling and that the vitreous-induced immune responses also depend on FGFR-signaling. Our data also demonstrate that many of the vitreous-induced gene-expression changes in Fgfr-deficient explants are rescued in explants lacking both Fgfrs and Pten.
Keywords: lens; lens explants; FGFRs; PDGFRs; PTEN; RNA-seq; inflammation; EMT lens; lens explants; FGFRs; PDGFRs; PTEN; RNA-seq; inflammation; EMT

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MDPI and ACS Style

Upreti, A.; Padula, S.L.; Weaver, J.M.; Wagner, B.D.; Kneller, A.M.; Petulla, A.L.; Lachke, S.A.; Robinson, M.L. A Transcriptomics Analysis of the Regulation of Lens Fiber Cell Differentiation in the Absence of FGFRs and PTEN. Cells 2024, 13, 1222. https://doi.org/10.3390/cells13141222

AMA Style

Upreti A, Padula SL, Weaver JM, Wagner BD, Kneller AM, Petulla AL, Lachke SA, Robinson ML. A Transcriptomics Analysis of the Regulation of Lens Fiber Cell Differentiation in the Absence of FGFRs and PTEN. Cells. 2024; 13(14):1222. https://doi.org/10.3390/cells13141222

Chicago/Turabian Style

Upreti, Anil, Stephanie L. Padula, Jacob M. Weaver, Brad D. Wagner, Allison M. Kneller, Anthony L. Petulla, Salil A. Lachke, and Michael L. Robinson. 2024. "A Transcriptomics Analysis of the Regulation of Lens Fiber Cell Differentiation in the Absence of FGFRs and PTEN" Cells 13, no. 14: 1222. https://doi.org/10.3390/cells13141222

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