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Targeting PAK4 to reprogram the vascular microenvironment and improve CAR-T immunotherapy for glioblastoma

Authors :
Joseph A. Fraietta
Rongxin Zhang
Duo Zhang
Lin Zhang
Wenjuan Ma
Yanqing Gong
Fan Yang
Yanling Wang
Yi Fan
Donald M. O'Rourke
Jay F. Dorsey
Menggui Huang
Zev A. Binder
Source :
Nat Cancer
Publication Year :
2020

Abstract

Malignant solid tumors are characterized by aberrant vascularity that fuels the formation of an immune-hostile microenvironment and induces resistance to immunotherapy. Vascular abnormalities may be driven by pro-angiogenic pathway activation and genetic reprogramming in tumor endothelial cells (ECs). Here, our kinome-wide screening of mesenchymal-like transcriptional activation in human glioblastoma (GBM)-derived ECs identifies p21-activated kinase 4 (PAK4) as a selective regulator of genetic reprogramming and aberrant vascularization. PAK4 knockout induces adhesion protein re-expression in ECs, reduces vascular abnormalities, improves T cell infiltration and inhibits GBM growth in mice. Moreover, PAK4 inhibition normalizes the tumor vascular microenvironment and sensitizes GBM to chimeric antigen receptor–T cell immunotherapy. Finally, we reveal a MEF2D/ZEB1- and SLUG-mediated mechanism by which PAK4 reprograms the EC transcriptome and downregulates claudin-14 and VCAM-1 expression, enhancing vessel permeability and reducing T cell adhesion to the endothelium. Thus, targeting PAK4-mediated EC plasticity may offer a unique opportunity to recondition the vascular microenvironment and strengthen cancer immunotherapy. Fan and colleagues report that inhibition of PAK4 normalizes the tumor vascular microenvironment and sensitizes glioblastomas to CAR-T cell immunotherapy.

Details

ISSN :
26621347
Volume :
2
Issue :
1
Database :
OpenAIRE
Journal :
Nature cancer
Accession number :
edsair.doi.dedup.....6ab85763b15bbb01195219e2375db8c9