Metabolic and behavioral features of acute hyperpurinergia and the maternal immune activation mouse model of autism spectrum disorder

Author:

Zolkipli-Cunningham Zarazuela,Naviaux Jane C.,Nakayama Tomohiro,Hirsch Charlotte M.,Monk Jonathan M.,Li Kefeng,Wang Lin,Le Thuy P.,Meinardi Simone,Blake Donald R.,Naviaux Robert K.ORCID

Abstract

Since 2012, studies in mice, rats, and humans have suggested that abnormalities in purinergic signaling may be a final common pathway for many genetic and environmental causes of autism spectrum disorder (ASD). The current study in mice was conducted to characterize the bioenergetic, metabolomic, breathomic, and behavioral features of acute hyperpurinergia triggered by systemic injection of the purinergic agonist and danger signal, extracellular ATP (eATP). Responses were studied in C57BL/6J mice in the maternal immune activation (MIA) model and controls. Basal metabolic rates and locomotor activity were measured in CLAMS cages. Plasma metabolomics measured 401 metabolites. Breathomics measured 98 volatile organic compounds. Intraperitoneal eATP dropped basal metabolic rate measured by whole body oxygen consumption by 74% ± 6% (mean ± SEM) and rectal temperature by 6.2˚ ± 0.3˚C in 30 minutes. Over 200 metabolites from 37 different biochemical pathways where changed. Breathomics showed an increase in exhaled carbon monoxide, dimethylsulfide, and isoprene. Metabolomics revealed an acute increase in lactate, citrate, purines, urea, dopamine, eicosanoids, microbiome metabolites, oxidized glutathione, thiamine, niacinamide, and pyridoxic acid, and decreased folate-methylation-1-carbon intermediates, amino acids, short and medium chain acyl-carnitines, phospholipids, ceramides, sphingomyelins, cholesterol, bile acids, and vitamin D similar to some children with ASD. MIA animals were hypersensitive to postnatal exposure to eATP or poly(IC), which produced a rebound increase in body temperature that lasted several weeks before returning to baseline. Acute hyperpurinergia produced metabolic and behavioral changes in mice. The behaviors and metabolic changes produced by ATP injection were associated with mitochondrial functional changes that were profound but reversible.

Funder

National Institute of Neurological Disorders and Stroke

UCSD Christini Fund

William E. and Josephine B. Buchanan Family Foundation

Lennox Foundation

JMS Fund

N of One Foundation

Westreich Foundation

Kirbie and Katie Mano Family Foundation

Brent Kaufman Family Foundation

Malone Family Foundation

Daniel and Kelly White Family

Cannistraro Family Foundation

UCSD Mitochondrial Research Fund

Aloe Family Autism Research Fund

Harb and Spilo families

Jane Botsford Johnson Foundation

Publisher

Public Library of Science (PLoS)

Subject

Multidisciplinary

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