Comparative transcriptomics coupled to developmental grading via transgenic zebrafish reporter strains identifies conserved features in neutrophil maturation.
Stefanie KirchbergerMohamed R ShoebDaria LazicAndrea Wenninger-WeinzierlKristin FischerLisa Ellen ShawFilomena NogueiraFirkret RifatbegovicEva BozsakyRuth Lydia LadensteinBernd BodenmillerThomas LionDavid TraverMatthias FarlikChristian SchöferSabine Taschner-MandlFlorian HalbritterMartin DistelPublished in: Nature communications (2024)
Neutrophils are evolutionarily conserved innate immune cells playing pivotal roles in host defense. Zebrafish models have contributed substantially to our understanding of neutrophil functions but similarities to human neutrophil maturation have not been systematically characterized, which limits their applicability to studying human disease. Here we show, by generating and analysing transgenic zebrafish strains representing distinct neutrophil differentiation stages, a high-resolution transcriptional profile of neutrophil maturation. We link gene expression at each stage to characteristic transcription factors, including C/ebp-β, which is important for late neutrophil maturation. Cross-species comparison of zebrafish, mouse, and human samples confirms high molecular similarity of immature stages and discriminates zebrafish-specific from pan-species gene signatures. Applying the pan-species neutrophil maturation signature to RNA-sequencing data from human neuroblastoma patients reveals association between metastatic tumor cell infiltration in the bone marrow and an overall increase in mature neutrophils. Our detailed neutrophil maturation atlas thus provides a valuable resource for studying neutrophil function at different stages across species in health and disease.
Keyphrases
- endothelial cells
- gene expression
- transcription factor
- single cell
- bone marrow
- high resolution
- induced pluripotent stem cells
- escherichia coli
- small cell lung cancer
- genome wide
- pluripotent stem cells
- squamous cell carcinoma
- mental health
- public health
- end stage renal disease
- ejection fraction
- chronic kidney disease
- crispr cas
- oxidative stress
- risk assessment
- mass spectrometry
- mesenchymal stem cells
- deep learning
- artificial intelligence
- cell therapy
- genetic diversity