PKR activation-induced mitochondrial dysfunction in HIV-transgenic mice with nephropathy

Author:

Yoshida Teruhiko1ORCID,Latt Khun Zaw1,Rosenberg Avi Z.2,Santo Briana A.3,Myakala Komuraiah4,Ishimoto Yu5,Zhao Yongmei6,Shrivastav Shashi1,Jones Bryce A.4ORCID,Yang Xiaoping2,Wang Xiaoxin X.4,Tutino Vincent M.3,Sarder Pinaki37,Levi Moshe4ORCID,Okamoto Koji18,Winkler Cheryl A.6,Kopp Jeffrey B.1

Affiliation:

1. Kidney Disease Section, Kidney Diseases Branch, NIDDK, NIH

2. Department of Pathology, Johns Hopkins Medical Institutions

3. Department of Pathology and Anatomical Sciences, Jacobs School of Medicine & Biomedical Sciences, University at Buffalo

4. Department of Biochemistry and Molecular & Cellular Biology, Georgetown University

5. Polycystic Kidney Disease Section, Kidney Diseases Branch, NIDDK, NIH

6. Frederick National Laboratory for Cancer Research, NCI, NIH

7. College of Medicine, University of Florida

8. Nephrology Endocrinology and Vascular Medicine, Tohoku University Hospital

Abstract

HIV disease remains prevalent in the USA and chronic kidney disease remains a major cause of morbidity in HIV-1-positive patients. Host double-stranded RNA (dsRNA)-activated protein kinase (PKR) is a sensor for viral dsRNA, including HIV-1. We show that PKR inhibition by compound C16 ameliorates the HIV-associated nephropathy (HIVAN) kidney phenotype in the Tg26 transgenic mouse model, with reversal of mitochondrial dysfunction. Combined analysis of single-nucleus RNA-seq and bulk RNA-seq data revealed that oxidative phosphorylation was one of the most downregulated pathways and identified signal transducer and activator of transcription (STAT3) as a potential mediating factor. We identified in Tg26 mice a novel proximal tubular cell cluster enriched in mitochondrial transcripts. Podocytes showed high levels of HIV-1 gene expression and dysregulation of cytoskeleton-related genes; and these cells dedifferentiated. In injured proximal tubules, cell-cell interaction analysis indicated activation of the profibrogenic PKR-STAT3-platelet derived growth factor (PDGF)-D pathway. These findings suggest that PKR inhibition and mitochondrial rescue are potential novel therapeutic approaches for HIVAN.

Publisher

eLife Sciences Publications, Ltd

Reference68 articles.

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2. Prevention CfDCa;HIV Surveillance Report,2019

3. Mapping HIV prevalence in sub-Saharan Africa between 2000 and 2017;Nature,2019

4. HIV-associated nephropathy: links, risks and management;HIV AIDS (Auckl,2018

5. Pharmacotherapy and treatment options for HIV-associated nephropathy;Expert Opin Pharmacother,2018

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