LEF1 isoforms regulate cellular senescence and aging

Author:

Jia Minxue12ORCID,Sayed Khaled13,Kapetanaki Maria G.14,Dion William5,Rosas Lorena6,Irfan Saad5,Valenzi Eleanor7,Mora Ana L.6,Lafyatis Robert A.7,Rojas Mauricio6,Zhu Bokai589ORCID,Benos Panayiotis V.124ORCID

Affiliation:

1. Department of Computational and Systems Biology University of Pittsburgh Pittsburgh Pennsylvania USA

2. Joint Carnegie Mellon University‐University of Pittsburgh Ph.D. Program in Computational Biology Pittsburgh Pennsylvania USA

3. Department of Electrical & Computer Engineering and Computer Science University of New Haven West Haven Connecticut USA

4. Department of Epidemiology University of Florida Gainesville Florida USA

5. Aging Institute of UPMC University of Pittsburgh Pittsburgh Pennsylvania USA

6. Division of Pulmonary, Critical Care and Sleep Medicine, Department of Internal Medicine The Ohio State University Columbus Ohio USA

7. Department of Rheumatology University of Pittsburgh Pittsburgh Pennsylvania USA

8. Department of Medicine University of Pittsburgh Pittsburgh Pennsylvania USA

9. Pittsburgh Liver Research Center University of Pittsburgh Pittsburgh Pennsylvania USA

Abstract

AbstractThe study of aging and its mechanisms, such as cellular senescence, has provided valuable insights into age‐related pathologies, thus contributing to their prevention and treatment. The current abundance of high‐throughput data combined with the surge of robust analysis algorithms has facilitated novel ways of identifying underlying pathways that may drive these pathologies. For the purpose of identifying key regulators of lung aging, we performed comparative analyses of transcriptional profiles of aged versus young human subjects and mice, focusing on the common age‐related changes in the transcriptional regulation in lung macrophages, T cells, and B immune cells. Importantly, we validated our findings in cell culture assays and human lung samples. Our analysis identified lymphoid enhancer binding factor 1 (LEF1) as an important age‐associated regulator of gene expression in all three cell types across different tissues and species. Follow‐up experiments showed that the differential expression of long and short LEF1 isoforms is a key regulatory mechanism of cellular senescence. Further examination of lung tissue from patients with idiopathic pulmonary fibrosis, an age‐related disease with strong ties to cellular senescence, revealed a stark dysregulation of LEF1. Collectively, our results suggest that LEF1 is a key factor of aging, and its differential regulation is associated with human and murine cellular senescence.

Funder

National Heart, Lung, and Blood Institute

National Institute of General Medical Sciences

National Institute on Alcohol Abuse and Alcoholism

Publisher

Wiley

Subject

Cell Biology,Aging

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