PLF‐1 (Proliferin‐1) Modulates Smooth Muscle Cell Proliferation and Development of Experimental Intimal Hyperplasia

Author:

Hu Lina123,Huang Zhe4,Ishii Hideki5,Wu Hongxian6,Suzuki Susumu5,Inoue Aiko37,Kim Weon8,Jiang Haiying9,Li Xiang2,Zhu Enbo2,Piao Limei23,Zhao Guangxian2,Lei Yanna2,Okumura Kenji5,Shi Guo‐Ping10,Murohara Toyoaki5,Kuzuya Masafumi37,Cheng Xian Wu2387

Affiliation:

1. Department of Public Health Guilin Medical College Guilin Guangxi China

2. Department of Cardiology/Hypertension and Heart Center Yanbian University Hospital Yanji Jilin China

3. Department of Community & Geriatrics Nagoya University Graduate School of Medicine Nagoya Japan

4. Department of Neurology Occupational and Environmental Health Kitakyushu Hukuoka Japan

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

6. Department of Cardiology Shanghai General Hospital Shanghai Jiao Tong University School of Medicine Shanghai China

7. Institute of Innovation for Future Society Nagoya University Nagoya Japan

8. Division of Cardiology Department of Internal Medicine Kyung Hee University Seoul South Korea

9. Department of Physiology and Pathophysiology Yanbian University School of Medicine Yanji Jinlin China

10. Department of Cardiovascular Medicine Brigham and Women's Hospital and Harvard Medical School Boston MA

Abstract

Background Although apoptosis and cell proliferation have been extensively investigated in atherosclerosis and restenosis postinjury, the communication between these 2 cellular events has not been evaluated. Here, we report an inextricable communicative link between apoptosis and smooth muscle cell proliferation in the promotion of vascular remodeling postinjury. Methods and Results Cathepsin K–mediated caspase‐8 maturation is a key initial step for oxidative stress–induced smooth muscle cell apoptosis. Apoptotic cells generate a potential growth‐stimulating signal to facilitate cellular mass changes in response to injury. One downstream mediator that cathepsin K regulates is PLF‐1 (proliferin‐1), which can potently stimulate growth of surviving neighboring smooth muscle cells through activation of PI3K/Akt/p38MAPK (phosphatidylinositol 3‐kinase/protein kinase B/p38 mitogen‐activated protein kinase)‐dependent and ‐independent mTOR (mammalian target of rapamycin) signaling cascades. We observed that cathepsin K deficiency substantially mitigated neointimal hyperplasia by reduction of Toll‐like receptor‐2/caspase‐8–mediated PLF ‐1 expression. Interestingly, PLF ‐1 blocking, with its neutralizing antibody, suppressed neointima formation and remodeling in response to injury in wild‐type mice. Contrarily, administration of recombinant mouse PLF ‐1 accelerated injury‐induced vascular actions. Conclusions This is the first study detailing PLF ‐1 as a communicator between apoptosis and proliferation during injury‐related vascular remodeling and neointimal hyperplasia. These data suggested that apoptosis‐driven expression of PLF ‐1 is thus a novel target for treatment of apoptosis‐based hyperproliferative disorders.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Cardiology and Cardiovascular Medicine

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