ADAR regulates APOL1 via A-to-I RNA editing by inhibition of MDA5 activation in a paradoxical biological circuit

Author:

Riella Cristian V.12,McNulty Michelle34,Ribas Guilherme T.56,Tattersfield Calum F.1,Perez-Gill Chandra1,Eichinger Felix7,Kelly Jessica1,Chun Justin89ORCID,Subramanian Balajikarthick12,Guizelini Dieval5,Alper Seth L.124ORCID,Pollak Martin R.124,Sampson Matthew G.234,Friedman David J.124,Massengill S,Dell K,Sedor J,Martin B,Lemley K,Sharma S,Srivastava T,Markus K,Sethna C,Vento S,Canetta P,Pradhan A,Greenbaum L,Wang CS,Yun E,Adler S,LaPage J,Atkinson M,Williams M,McCarthy E,Fervenza F,Hogan M,Lieske J,Selewski D,Conley C,Kaskel F,Ross M,Flynn P,Kopp J,Malaga-Dieguez L,Zhdanova O,Pace B,Almaani S,Lafayette R,Dave S,Lee I,Quinn-Boyle S,Shah S,Reich H,Hladunewich M,Ling P,Romano M,Brakeman P,Podoll A,Fornoni A,Bidot C,Kretzler M,Gipson D,Williams A,Klida C,Derebail V,Gibson K,Froment A,Ochoa-Toro F,Holzman L,Meyers K,Kallem K,Swenson A,Sharma K,Sambandam K,Wang Z,Rogers M,Jefferson A,Hingorani S,Tuttle K,Manahan L,Pao E,Kuykendall K K,Lin JJ,Baker Stefanie,Dharnidharka V,

Affiliation:

1. Nephrology Division, Department of Medicine, Beth Israel Deaconess Medical Center, Boston, MA 02215

2. Department of Medicinie, Harvard Medical School, Boston, MA 02115

3. Division of Pediatric Nephrology, Boston Children's Hospital, Boston, MA 02215

4. Broad Institute of MIT and Harvard, Cambridge, MA 02142

5. Professional and Technological Education Sector, Federal University of Paraná, Curitiba 80060-000, Brazil

6. Massachusetts General Hospital, Boston, MA 02114

7. Michigan Kidney Translational Medical Core, University of Michigan, Ann Arbor, MI 48105-5714

8. Department of Medicine, University of Calgary, Calgary, AB T2N 1N4, Canada

9. Department of Medicine, Snyder Institute for Chronic Diseases, Calgary, AB T2N 1N4, Canada

Abstract

APOL1 risk variants are associated with increased risk of kidney disease in patients of African ancestry, but not all individuals with the APOL1 high-risk genotype develop kidney disease. As APOL1 gene expression correlates closely with the degree of kidney cell injury in both cell and animal models, the mechanisms regulating APOL1 expression may be critical determinants of risk allele penetrance. The APOL1 messenger RNA includes Alu elements at the 3′ untranslated region that can form a double-stranded RNA structure (Alu-dsRNA) susceptible to posttranscriptional adenosine deaminase acting on RNA (ADAR)–mediated adenosine-to-inosine (A-to-I) editing, potentially impacting gene expression. We studied the effects of ADAR expression and A-to-I editing on APOL1 levels in podocytes, human kidney tissue, and a transgenic APOL1 mouse model. In interferon-γ (IFN-γ)–stimulated human podocytes, ADAR down-regulates APOL1 by preventing melanoma differentiation-associated protein 5 (MDA5) recognition of dsRNA and the subsequent type I interferon (IFN-I) response. Knockdown experiments showed that recognition of APOL1 messenger RNA itself is an important contributor to the MDA5-driven IFN-I response. Mathematical modeling suggests that the IFN–ADAR–APOL1 network functions as an incoherent feed-forward loop, a biological circuit capable of generating fast, transient responses to stimuli. Glomeruli from human kidney biopsies exhibited widespread editing of APOL1 Alu-dsRNA, while the transgenic mouse model closely replicated the edited sites in humans. APOL1 expression in mice was inversely correlated with Adar1 expression under IFN-γ stimuli, supporting the idea that ADAR regulates APOL1 levels in vivo. ADAR-mediated A-to-I editing is an important regulator of APOL1 expression that could impact both penetrance and severity of APOL1-associated kidney disease.

Funder

HHS | NIH | National Institute on Minority Health and Health Disparities

Ellison Foundation

HHS | NIH | National Institute of Diabetes and Digestive and Kidney Diseases

National Kidney Foundation

Publisher

Proceedings of the National Academy of Sciences

Subject

Multidisciplinary

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