A human-specific long noncoding RNA regulator of antigen-presenting cell viability and antimicrobial defense.

Publication date: Jul 21, 2026

Macrophages are essential for both, to clear pathogens and preserve tissue homeostasis, yet the molecular regulators of this equilibrium remain incompletely defined. Here, we identify SAILR (survival associated immune-regulatory RNA), a primate-specific long noncoding RNA (lncRNA), as a critical modulator of macrophage viability under infection conditions. SAILR is induced during monocyte-to-macrophage differentiation, but rapidly downregulated upon bacterial challenge in a nuclear factor kappa B (NF-_705B) dependent manner. In both nacEFve and immune-activated macrophages, SAILR dampens the expression of adhesion, phagocytosis, and invasion factors, which include SIGLEC1 and MMP7. During infection with Salmonella Typhimurium, depletion of SAILR sensitizes macrophages to apoptosis, resulting in loss of intracellular replication niches and reduced bacterial recovery. Conversely, enforced SAILR expression promotes macrophage survival and increases intracellular pathogen burden. Mechanistically, SAILR interacts with the antiapoptotic adaptor protein 14-3-3β to support macrophage survival. Notably, downregulation of SAILR is mirrored in circulating immune cells from patients with severe COVID-19 and sepsis. Together, our findings position SAILR as a central regulator in linking macrophage survival to host-pathogen interaction and disease pathophysiology.

Concepts Keywords
Animals
Antigen-Presenting Cells
Apoptosis
apoptosis
Cell Survival
Humans
immunity
lncRNA
macrophage
Macrophages
NF-kappa B
NF-kappa B
Phagocytosis
RNA, Long Noncoding
RNA, Long Noncoding
Salmonella
Salmonella Infections
Salmonella typhimurium

Semantics

Type Source Name
disease MESH infection
pathway REACTOME Apoptosis
disease MESH COVID-19
disease MESH sepsis
disease MESH Salmonella Infections

Original Article

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