Neuroinflammation-Induced Interactions between Protease-Activated Receptor 1 and Proprotein Convertases in HIV-Associated Neurocognitive Disorder

Author:

Kim WooJin1,Zekas Erin1,Lodge Robert2,Susan-Resiga Delia1,Marcinkiewicz Edwidge1,Essalmani Rachid1,Mihara Koichiro3,Ramachandran Rithwik3,Asahchop Eugene4,Gelman Benjamin5,Cohen Éric A.2,Power Christopher4,Hollenberg Morley D.36,Seidah Nabil G.1

Affiliation:

1. Laboratory of Biochemical Neuroendocrinology, Clinical Research Institute of Montreal, University of Montreal, Montreal, Quebec, Canada

2. Laboratory of Human Retrovirology, Clinical Research Institute of Montreal, University of Montreal, Montreal, Quebec, Canada

3. Inflammation Research Network, Snyder Institute for Chronic Diseases, and Department of Physiology and Pharmacology, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada

4. Department of Medicine, University of Alberta, Edmonton, Alberta, Canada

5. Departments of Pathology and Neuroscience and Cell Biology, University of Texas Medical Branch, Galveston, Texas, USA

6. Department of Medicine, Faculty of Medicine, University of Calgary, Calgary, Alberta, Canada

Abstract

ABSTRACT The proprotein convertases (PCs) furin, PC5, PACE4, and PC7 cleave secretory proteins after basic residues, including the HIV envelope glycoprotein (gp160) and Vpr. We evaluated the abundance of PC mRNAs in postmortem brains of individuals exhibiting HIV-associated neurocognitive disorder (HAND), likely driven by neuroinflammation and neurotoxic HIV proteins (e.g., envelope and Vpr). Concomitant with increased inflammation-related gene expression (interleukin-1β [IL-1β]), the mRNA levels of the above PCs are significantly increased, together with those of the proteinase-activated receptor 1 (PAR1), an inflammation-associated receptor that is cleaved by thrombin at ProArg 41 ↓ (where the down arrow indicates the cleavage location), and potentially by PCs at Arg 41 XXXXArg 46 ↓. The latter motif in PAR1, but not its R46A mutant, drives its interactions with PCs. Indeed, PAR1 upregulation leads to the inhibition of membrane-bound furin, PC5B, and PC7 and inhibits gp160 processing and HIV infectivity. Additionally, a proximity ligation assay revealed that furin and PC7 interact with PAR1. Reciprocally, increased furin expression reduces the plasma membrane abundance of PAR1 by trapping it in the trans -Golgi network. Furthermore, soluble PC5A/PACE4 can target/disarm cell surface PAR1 through cleavage at Arg 46 ↓. PACE4/PC5A decreased calcium mobilization induced by thrombin stimulation. Our data reveal a new PC-PAR1-interaction pathway, which offsets the effects of HIV-induced neuroinflammation, viral infection, and potentially the development of HAND.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

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