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Tuohy, M. C.

Publications and source records attributed to Tuohy, M. C..

2 recordsLinked to original sources

Endothelial Type I Interferon signaling modulates the vascular response to ischemic brain injury

Vascular normalization [stabilization of aberrant angiogenesis and restoration of blood-brain barrier (BBB)] is critical for reducing long-term secondary sequelae after ischemic stroke. How immune and developmental signaling pathways coordinate these processes is poorly understood. Here we identify a unique brain endothelial cell (BEC) type one interferon (IFN1) signature in human and mouse ischemic stroke tissue. By leveraging two clinically-relevant murine ischemic stroke models, single-cell transcriptomics, and BBB functional assays, we find that deletion of endothelial IFN1 receptor (Ifnar1) exacerbates post-stroke BBB disruption and expands a BEC population expressing angiogenic and immature BBB markers. Conversely, IFN{beta} administration after stroke reduces acute BBB disruption. Activation of IFN1 signaling in BECs in vitro reduces vascular endothelial growth factor (VEGF) signaling to promote junctional stabilization, enhance barrier properties, and suppress angiogenic features. Thus, endogenous endothelial IFN1 signaling modulates BBB dysfunction and angiogenesis to promote vascular normalization after ischemic brain injury.

neuroscience↗

Rab7a activation promotes degradation of select tight junction proteins at the blood-brain barrier after ischemic stroke

Adherens (AJ) and tight junction (TJ) integrity is critical for blood-brain barrier (BBB) function in the healthy brain. Junction disassembly due to degradation of AJ and TJ proteins leads to acute BBB dysfunction after ischemic stroke, but the mechanisms are not fully understood. Here, we show that endothelial cell deletion of Rab7a, a small GTPase crucial for protein degradation through the endolysosomal system, reduces acute BBB dysfunction and improves neuronal health in mice after ischemic stroke by preventing degradation of select junctional proteins and preserving TJ structural morphology. Two pro-inflammatory cytokines, TNF and IL1{beta}, that trigger barrier disruption in brain endothelial cells (BECs) in vitro and are upregulated in stroke, contribute to Rab7a activation. Silencing Rab7a in vitro partially rescues cytokine-driven barrier disruption in BECs by reducing internalization of some junctional proteins and the formation of F-actin bundles at cell junctions. Rab7a is, therefore, critical for degradation of select junctional proteins during the acute BBB damage after ischemic stroke.

cell biology↗