DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis
Fibroblasts are an integral part of connective tissue and play a crucial role in developing and modulating the structural framework of tissues by acting as the primary source of extracellular matrix (ECM). A precise definition of the fibroblast remains elusive. Lung fibroblasts orchestrate the assem...
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doaj-f42ef35b557042399e5874d3fab8e8562021-08-26T13:37:17ZengMDPI AGCells2073-44092021-08-01101977197710.3390/cells10081977DNA Methylation of Fibroblast Phenotypes and Contributions to Lung FibrosisPoojitha Rajasekar0Jamie Patel1Rachel L. Clifford2Centre for Respiratory Research, Translational Medical Sciences, School of Medicine and NIHR Biomedical Research Centre, University of Nottingham, Nottingham NG7 2UH, UKCentre for Respiratory Research, Translational Medical Sciences, School of Medicine and NIHR Biomedical Research Centre, University of Nottingham, Nottingham NG7 2UH, UKCentre for Respiratory Research, Translational Medical Sciences, School of Medicine and NIHR Biomedical Research Centre, University of Nottingham, Nottingham NG7 2UH, UKFibroblasts are an integral part of connective tissue and play a crucial role in developing and modulating the structural framework of tissues by acting as the primary source of extracellular matrix (ECM). A precise definition of the fibroblast remains elusive. Lung fibroblasts orchestrate the assembly and turnover of ECM to facilitate gas exchange alongside performing immune functions including the secretion of bioactive molecules and antigen presentation. DNA methylation is the covalent attachment of a methyl group to primarily cytosines within DNA. DNA methylation contributes to diverse cellular phenotypes from the same underlying genetic sequence, with DNA methylation profiles providing a memory of cellular origin. The lung fibroblast population is increasingly viewed as heterogeneous with between 6 and 11 mesenchymal populations identified across health and lung disease to date. DNA methylation has been associated with different lung fibroblast populations in health and with alterations in lung disease, but to varying extents. In this review, we will discuss lung fibroblast heterogeneity and the evidence for a contribution from DNA methylation to defining cell populations and alterations in disease.https://www.mdpi.com/2073-4409/10/8/1977DNA methylationfibroblastphenotypefibrosislung |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Poojitha Rajasekar Jamie Patel Rachel L. Clifford |
spellingShingle |
Poojitha Rajasekar Jamie Patel Rachel L. Clifford DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis Cells DNA methylation fibroblast phenotype fibrosis lung |
author_facet |
Poojitha Rajasekar Jamie Patel Rachel L. Clifford |
author_sort |
Poojitha Rajasekar |
title |
DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis |
title_short |
DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis |
title_full |
DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis |
title_fullStr |
DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis |
title_full_unstemmed |
DNA Methylation of Fibroblast Phenotypes and Contributions to Lung Fibrosis |
title_sort |
dna methylation of fibroblast phenotypes and contributions to lung fibrosis |
publisher |
MDPI AG |
series |
Cells |
issn |
2073-4409 |
publishDate |
2021-08-01 |
description |
Fibroblasts are an integral part of connective tissue and play a crucial role in developing and modulating the structural framework of tissues by acting as the primary source of extracellular matrix (ECM). A precise definition of the fibroblast remains elusive. Lung fibroblasts orchestrate the assembly and turnover of ECM to facilitate gas exchange alongside performing immune functions including the secretion of bioactive molecules and antigen presentation. DNA methylation is the covalent attachment of a methyl group to primarily cytosines within DNA. DNA methylation contributes to diverse cellular phenotypes from the same underlying genetic sequence, with DNA methylation profiles providing a memory of cellular origin. The lung fibroblast population is increasingly viewed as heterogeneous with between 6 and 11 mesenchymal populations identified across health and lung disease to date. DNA methylation has been associated with different lung fibroblast populations in health and with alterations in lung disease, but to varying extents. In this review, we will discuss lung fibroblast heterogeneity and the evidence for a contribution from DNA methylation to defining cell populations and alterations in disease. |
topic |
DNA methylation fibroblast phenotype fibrosis lung |
url |
https://www.mdpi.com/2073-4409/10/8/1977 |
work_keys_str_mv |
AT poojitharajasekar dnamethylationoffibroblastphenotypesandcontributionstolungfibrosis AT jamiepatel dnamethylationoffibroblastphenotypesandcontributionstolungfibrosis AT rachellclifford dnamethylationoffibroblastphenotypesandcontributionstolungfibrosis |
_version_ |
1721194428140355584 |