Abstract
Heart failure is a major cause of mortality following myocardial infarction. Neutrophils are among the first immune cells to accumulate in the infarcted region. Although beneficial functions of neutrophils in heart injury are now appreciated, neutrophils are also well known for their ability to exacerbate inflammation and promote tissue damage. Myocardial infarction induces hypoxia, where hypoxia-inducible factors (HIFs) are activated and play critical roles in cellular functions. In this context, the role of Hif2α in neutrophils during myocardial infarction is unknown. Here, we demonstrate that neutrophil Hif2α deletion markedly attenuates myocardial infarct size, improves cardiac function, reduces neutrophil survival and tissue accumulation, and correlates with increased macrophage engulfment rates. Mechanistic studies revealed that Hif2a promotes neutrophil survival through binding to hypoxia response element (HRE) in the promoter region of Birc2 to regulate expression of the prosurvival factor, cellular inhibitor of apoptosis protein-1 (cIAP1). Inhibition of cIAP1 in neutrophils using the pharmacological agent, Birinapant resulted in increased cell death, establishing a critical role of cIAP1 downstream of Hif2α in neutrophil survival. Taken together, our data demonstrate a protective effect of Hif2α deletion in neutrophils on cardiac injury outcomes through modulation of neutrophil cell survival.
Original language | English (US) |
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Pages (from-to) | H1230-H1243 |
Journal | American Journal of Physiology - Heart and Circulatory Physiology |
Volume | 327 |
Issue number | 5 |
DOIs | |
State | Published - Nov 2024 |
Funding
Imaging work was performed at the Northwestern University Center for Advanced Microscopy, generously supported by CCSG P30 CA060553 awarded to the Robert H Lurie Comprehensive Cancer Center. Graphical abstract was created with a licensed version of BioRender.com. This research was supported using National Institutes for Health Grants R21-AG086751 (to D.P.S.), R01-DK124199 (to R.S.), and R01HL122309 (to E.B.T.) and by the Sidney and Bess Eisenberg Memorial Endowment. This research was supported using National Institutes for Health Grants R21-AG086751 (to D.P.S.), R01-DK124199 (to R.S.), and R01HL122309 (to E.B.T.) and by the Sidney and Bess Eisenberg Memorial Endowment.
Keywords
- Hif2α
- apoptosis
- inflammation
- myocardial infarction
- neutrophil
ASJC Scopus subject areas
- Physiology
- Cardiology and Cardiovascular Medicine
- Physiology (medical)