Literature DB >> 33010000

Amniotic fluid mesenchymal stem cells repair mouse corneal cold injury by promoting mRNA N4-acetylcytidine modification and ETV4/JUN/CCND2 signal axis activation.

Xinfeng Fei1,2, Yuying Cai2,3,4,5,6, Feng Lin2,3,4,5,6, Yongyi Huang7, Te Liu8, Yan Liu9,10,11,12,13.   

Abstract

Severe corneal injury is one of the main causes of loss of visual function. Mesenchymal stem cells (MSCs) have the ability to repair damaged cells in vivo. The present study aimed to explore whether MSCs could function as a cell therapy tool to replace traditional methods to treat corneal injury. CD44 + /CD105 + mesenchymal stem cells isolated from mouse amniotic fluid (mAF-MSCs) were injected into mice after cryoinjury to induce corneal endothelial cell injury. Histopathological assays indicated that mAF-MSCs could promote the growth of corneal epithelial cells, reduce keratitis, and repair the corneal damage caused by low temperature. cDNA microarray analysis revealed that the mAF-MSCs affected the expression patterns of mRNAs related to cell proliferation and differentiation pathways in the mice after transplantation. The results of quantitative real-time PCR and western blotting revealed that NAT12, NAT10, and the ETV4/JUN/CCND2 signaling axis were elevated significantly in the mAF-MSC-transplantation group, compared with those in the phosphate-buffered saline-treated groups. High performance liquid chromatography-mass spectroscopy results revealed that mAF-MSCs could promote mRNA N4-acetylcytidine (ac4C) modification and high expression of N-acetyltransferase in the eyeballs. RNA immunoprecipitation-PCR results showed that a specific product comprising Vegfa, Klf4, Ccnd2, Jun, and Etv4 mRNA specific coding region sites could be amplified using PCR from complexes formed in mAF-MSC-transplanted samples cross-linked with anti-ac4C antibodies. Thus, mouse amniotic fluid MSCs could repair the mouse corneal cold injury by promoting the ETV4/JUN/CCND2 signal axis activation and improving its stability by stimulating N4-acetylcytidine modification of their mRNAs.

Entities:  

Keywords:  Corneal cold injury stem cell repair; Etv4/Jun/Ccnd2 pathway; NAT; mRNA N4-acetylcytidine modification

Mesh:

Substances:

Year:  2020        PMID: 33010000      PMCID: PMC7788028          DOI: 10.1007/s13577-020-00442-7

Source DB:  PubMed          Journal:  Hum Cell        ISSN: 0914-7470            Impact factor:   4.174


  5 in total

1.  Activation of ectopic Oct-4 and Rex-1 promoters in human amniotic fluid cells.

Authors:  Karlin R Karlmark; Angelika Freilinger; Erika Marton; Margit Rosner; Gert Lubec; Markus Hengstschläger
Journal:  Int J Mol Med       Date:  2005-12       Impact factor: 4.101

Review 2.  Novel therapeutic approaches for corneal disease.

Authors:  Keryn A Williams; Yazad D Irani; Sonja Klebe
Journal:  Discov Med       Date:  2013-05       Impact factor: 2.970

3.  Induction of dopaminergic neuronal-like cells from CD44+ human amniotic fluids that are ameliorative to behavioral recovery in a Parkinson's disease rat model.

Authors:  Te Liu; Lihe Guo; Zhixue Liu; Yongyi Huang; Weiwei Cheng
Journal:  Int J Mol Med       Date:  2011-06-27       Impact factor: 4.101

4.  The role of the minor base N4-acetylcytidine in the function of the Escherichia coli noninitiator methionine transfer RNA.

Authors:  L Stern; L H Schulman
Journal:  J Biol Chem       Date:  1978-09-10       Impact factor: 5.157

5.  A mouse model of corneal endothelial decompensation using cryoinjury.

Authors:  Sang Beom Han; Hengpei Ang; Deepa Balehosur; Gary Peh; Shyam S Chaurasia; Donald T H Tan; Jodhbir S Mehta
Journal:  Mol Vis       Date:  2013-06-05       Impact factor: 2.367

  5 in total
  3 in total

1.  Macular corneal dystrophy related to novel mutations of CHST6 in a Chinese family and clinical observation after penetrating keratoplasty.

Authors:  Dewei Li; Le Tian; Xiaochuan Wang; Min Chen
Journal:  BMC Med Genomics       Date:  2021-10-13       Impact factor: 3.063

2.  Human Amniotic Fluid Mesenchymal Stem Cell-Derived Exosomes Inhibit Apoptosis in Ovarian Granulosa Cell via miR-369-3p/YAF2/PDCD5/p53 Pathway.

Authors:  Zixiang Geng; Haiyang Chen; Gang Zou; Long Yuan; Peng Liu; Bingrong Li; Kaiyong Zhang; Fangyuan Jing; Xiaoli Nie; Te Liu; Bimeng Zhang
Journal:  Oxid Med Cell Longev       Date:  2022-07-26       Impact factor: 7.310

3.  Atranorin driven by nano materials SPION lead to ferroptosis of gastric cancer stem cells by weakening the mRNA 5-hydroxymethylcytidine modification of the Xc-/GPX4 axis and its expression.

Authors:  Zhentian Ni; Xiaoli Nie; Hairong Zhang; Lingquan Wang; Zixiang Geng; Xiling Du; Haiyang Qian; Wentao Liu; Te Liu
Journal:  Int J Med Sci       Date:  2022-09-25       Impact factor: 3.642

  3 in total

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