Meflin/ISLR is a marker of adipose stem and progenitor cells in mice and humans that suppresses white adipose tissue remodeling and fibrosis

Author:

Ishihara Toshikazu12,Kato Katsuhiro2,Matsumoto Kotaro1,Tanaka Miyako34,Hara Akitoshi5,Shiraki Yukihiro1,Morisaki Hidenori12,Urano Yuya1,Ando Ryota1,Ito Kisuke1,Mii Shinji1ORCID,Esaki Nobutoshi1,Furuhashi Kazuhiro6,Takefuji Mikito2,Suganami Takayoshi34,Murohara Toyoaki2,Enomoto Atsushi17ORCID

Affiliation:

1. Department of Pathology Nagoya University Graduate School of Medicine Nagoya Japan

2. Department of Cardiology Nagoya University Graduate School of Medicine Nagoya Japan

3. Department of Immunometabolism Nagoya University Graduate School of Medicine Nagoya Japan

4. Department of Molecular Medicine and Metabolism Research Institute of Environmental Medicine, Nagoya University Nagoya Japan

5. Center for Cardiovascular Research, University of Hawaii at Manoa Honolulu Hawaii USA

6. Department of Nephrology Nagoya University Graduate School of Medicine Nagoya Japan

7. Center for One Medicine Innovative Translational Research, Gifu University Institute for Advanced Study Gifu Japan

Abstract

AbstractIdentifying specific markers of adipose stem and progenitor cells (ASPCs) in vivo is crucial for understanding the biology of white adipose tissues (WAT). PDGFRα‐positive perivascular stromal cells represent the best candidates for ASPCs. This cell lineage differentiates into myofibroblasts that contribute to the impairment of WAT function. However, ASPC marker protein(s) that are functionally crucial for maintaining WAT homeostasis are unknown. We previously identified Meflin as a marker of mesenchymal stem cells (MSCs) in bone marrow and tissue‐resident perivascular fibroblasts in various tissues. We also demonstrated that Meflin maintains the undifferentiated status of MSCs/fibroblasts. Here, we show that Meflin is expressed in WAT ASPCs. A lineage‐tracing experiment showed that Meflin+ ASPCs proliferate in the WAT of obese mice induced by a high‐fat diet (HFD), while some of them differentiate into myofibroblasts or mature adipocytes. Meflin knockout mice fed an HFD exhibited a significant fibrotic response as well as increases in adipocyte cell size and the number of crown‐like structures in WAT, accompanied by impaired glucose tolerance. These data suggested that Meflin expressed by ASPCs may have a role in reducing disease progression associated with WAT dysfunction.

Funder

Japan Agency for Medical Research and Development

Ministry of Education, Culture, Sports, Science and Technology

Publisher

Wiley

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