Aging-induced IL27Ra signaling impairs hematopoietic stem cells

Author:

He Hanqing1,Xu Panglian12,Zhang Xiaofei1,Liao Min1,Dong Qiongye3,Cong Tingting1,Tang Baixue1,Yang Xiuxiu1,Ye Maoqing4ORCID,Chang Yingjun5ORCID,Liu Weihua6,Wang Xiaowo3ORCID,Ju Zhenyu78,Wang Jianwei19

Affiliation:

1. School of Pharmaceutical Sciences,

2. Tsinghua-Peking Joint Center for Life Sciences, School of Life Sciences, and

3. Ministry of Education Key Laboratory of Bioinformatics, Center for Synthetic and Systems Biology, Bioinformatics Division, BNRIST, Department of Automation, Tsinghua University, Beijing, China;

4. Shanghai Key Laboratory of Clinical Geriatric Medicine, Department of Cardiology, Huadong Hospital Affiliated to Fudan University, Shanghai, China;

5. Peking University People’s Hospital & Peking University Institute of Hematology, Beijing Key Laboratory of Hematopoietic Stem Cell Transplantation, Beijing, China;

6. The Cardiac Care Unit of the Zibo Central Hospital, Zibo City, Shandong, China;

7. Key Laboratory of Regenerative Medicine of Ministry of Education, Institute of Aging and Regenerative Medicine, Jinan University, Guangzhou, China;

8. Institute of Aging Research, Hangzhou Normal University School of Medicine, Hangzhou, China; and

9. Beijing Advanced Innovation Center for Structural Biology, Tsinghua University, Beijing, China

Abstract

Abstract Hematopoietic stem cell (HSC) aging correlates with an increasing risk of myeloproliferative disease and immunosenescence. In this study, we show that aging-related inflammation promotes HSC aging through tumor necrosis factor-α (TNF-α)→ERK→ETS1→interleukin27Ra (IL27Ra) pathway. TNF-α, a well-known biomarker of inflammation, increases during aging and induces the expression of IL27Ra on HSCs via ERK-ETS1 signaling. Deletion of IL27Ra rescues the functional decline and myeloid bias of HSCs and also reverses the inhibitory effect of TNF-α on HSCs. Aged IL27Ra−/− mice had a reduced proportion of myeloid-biased HSCs and did not display the biased myeloid differentiation that occurs in aged wild-type mice. IL27Ra+ HSCs exhibit impaired reconstitution capacity and myeloid-bias compared with IL27Ra− HSCs and serve as a myeloid-recovery pool upon inflammatory insult. Inflammation-related genes were enriched in IL27Ra+ HSCs and this enrichment increases with aging. Our study demonstrates that age-induced IL27Ra signaling impairs HSCs and raises the possibility that interfering with IL27Ra signaling can counter the physiologically deleterious effect of aging on hematopoietic capacity.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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