Single cell sequencing reveals endothelial plasticity with transient mesenchymal activation after myocardial infarction.
Lukas S TomborDavid JohnSimone F GlaserGuillermo LuxánElvira ForteMilena FurtadoNadia RosenthalNina BaumgartenMarcel H SchulzJanina WittigEva-Maria RoggYosif ManavskiAriane FischerMarion Muhly-ReinholzKathrin KleeMario LoosoCarmen SelignowTill AckerSofia-Iris BibliIngrid FlemingRalph PatrickRichard P HarveyWesley T AbplanalpStefanie DimmelerPublished in: Nature communications (2021)
Endothelial cells play a critical role in the adaptation of tissues to injury. Tissue ischemia induced by infarction leads to profound changes in endothelial cell functions and can induce transition to a mesenchymal state. Here we explore the kinetics and individual cellular responses of endothelial cells after myocardial infarction by using single cell RNA sequencing. This study demonstrates a time dependent switch in endothelial cell proliferation and inflammation associated with transient changes in metabolic gene signatures. Trajectory analysis reveals that the majority of endothelial cells 3 to 7 days after myocardial infarction acquire a transient state, characterized by mesenchymal gene expression, which returns to baseline 14 days after injury. Lineage tracing, using the Cdh5-CreERT2;mT/mG mice followed by single cell RNA sequencing, confirms the transient mesenchymal transition and reveals additional hypoxic and inflammatory signatures of endothelial cells during early and late states after injury. These data suggest that endothelial cells undergo a transient mes-enchymal activation concomitant with a metabolic adaptation within the first days after myocardial infarction but do not acquire a long-term mesenchymal fate. This mesenchymal activation may facilitate endothelial cell migration and clonal expansion to regenerate the vascular network.
Keyphrases
- endothelial cells
- single cell
- rna seq
- bone marrow
- stem cells
- high glucose
- gene expression
- cerebral ischemia
- high throughput
- vascular endothelial growth factor
- cell migration
- cell proliferation
- genome wide
- oxidative stress
- dna methylation
- type diabetes
- metabolic syndrome
- intellectual disability
- blood brain barrier
- skeletal muscle
- transcription factor
- copy number
- big data
- cell cycle
- aqueous solution
- cell fate