Search bioRxiv⌕ Search

Biology subjects

Poeling, J.

Publications and source records attributed to Poeling, J..

2 recordsLinked to original sources

Junb acts downstream of the Il-11/Stat3 signaling axis to limit tissue damage induced fibro-inflammation during regeneration

Inflammation is essential for regeneration yet can also drive fibroinflammatory remodeling; what determines these opposing outcomes remains unclear. Comparative transcriptomic analyses revealed that injured mouse hearts activated a broad inflammatory program, whereas zebrafish hearts mounted a restricted response characterized by selective il11 induction. This divergence extended across tissues and species: the non-regenerative mammalian injuries examined shared an inflammatory signature distinct from regenerative vertebrate contexts. We identified the AP-1 transcription factor Junb as an Il-11-Stat3-dependent regulator that restrains inflammation during fin fold regeneration. Combined loss of junba and junbb amplified a mammalian-like inflammatory program, increased neutrophil recruitment and fibroinflammatory gene expression, and reduced proliferation and regenerative outgrowth. Strikingly, dexamethasone or ibuprofen substantially restored regeneration in Junb deficient zebrafish larvae, demonstrating that hyperinflammation is a major determinant of regenerative failure. Thus, the Il-11-Stat3-Junb axis maintains a regeneration permissive inflammatory state preventing a regenerative response from shifting toward mammalian-like fibroinflammation.

immunology↗

Reg3β removes aged neutrophils after myocardial infarction

AO_SCPLOWBSTRACTC_SCPLOWRecruitment and resolution of immune cell accumulation after myocardial infarction (MI) is critical for effective wound healing and prevention of maladaptive remodeling. Numerous signals are known to recruit neutrophils, critical drivers of inflammation, but knowledge about signals containing and resolving their accumulation is limited. We discovered that Regenerating-islet derived protein 3 beta (REG3{beta}) limits the persistence of neutrophils after MI, thereby promoting resolution of inflammation. REG3{beta} selectively binds to aged and hyperactive neutrophils and induces rapid cell death, enabling clearance via macrophage-mediated efferocytosis. Selective binding of REG3{beta} is achieved by interaction with paucimannosylated proteins that translocate from azurophile granules to the plasma membrane in an activation- and age-dependent manner. Endocytotic uptake and accumulation of REG3{beta} in lysosomes initiates programmed cell death of neutrophils via lyosomal membrane permeabilization and release of cathepsins. Our work establishes REG3{beta} as a local immune checkpoint essential for neutrophil resolution and cardiac repair.

immunology↗