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Integrin 5 Is Regulated by miR-218-5p in Endothelial Progenitor Cells. | LitMetric

AI Article Synopsis

  • Endothelial cell injury plays a significant role in acute kidney injury (AKI) during the COVID-19 pandemic and is linked to the integrin 5 (ITGA5) and the Tie2 signaling pathway.
  • Various experiments showed that miR-218-5p, a microRNA, is upregulated in kidney-derived endothelial progenitor cells (EPCs) following ischemia and leads to decreased ITGA5 protein expression, adversely affecting signaling pathways involved in cell migration.
  • Using a genetic knockout model, it was found that the absence of miR-218-5p specifically in angioblasts resulted in severe vascular issues, highlighting miR-218-5p's crucial role in regulating EPC movement and its potential impact

Article Abstract

Background: Endothelial cell injury is a common nidus of renal injury in patients and consistent with the high prevalence of AKI reported during the coronavirus disease 2019 pandemic. This cell type expresses integrin 5 (ITGA5), which is essential to the Tie2 signaling pathway. The microRNA miR-218-5p is upregulated in endothelial progenitor cells (EPCs) after hypoxia, but microRNA regulation of Tie2 in the EPC lineage is unclear.

Methods: We isolated human kidney-derived EPCs (hkEPCs) and surveyed microRNA target transcripts. A preclinical model of ischemic kidney injury was used to evaluate the effect of hkEPCs on capillary repair. We used a genetic knockout model to evaluate the effect of deleting endogenous expression of miR-218 specifically in angioblasts.

Results: After ischemic preconditioning, miR-218-5p was elevated in hkEPCs. We found miR-218-5p bound to mRNA transcript and decreased ITGA5 protein expression. Phosphorylation of 42/44 MAPK decreased by 73.6% in hkEPCs treated with miR-218-5p. Cells supplemented with miR-218-5p downregulated ITGA5 synthesis and decreased 42/44 MAPK phosphorylation. In a CD309-Cre/miR-218-2-LoxP mammalian model (a conditional knockout mouse model designed to delete pre-miR-218-2 exclusively in CD309 cells), homozygotes at e18.5 contained avascular glomeruli, whereas heterozygote adults showed susceptibility to kidney injury. Isolated EPCs from the mouse kidney contained high amounts of ITGA5 and showed decreased migratory capacity in three-dimensional cell culture.

Conclusions: These results demonstrate the critical regulatory role of miR-218-5p in kidney EPC migration, a finding that may inform efforts to treat microvascular kidney injury therapeutic cell delivery.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8975065PMC
http://dx.doi.org/10.1681/ASN.2021020140DOI Listing

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