PLoS ONE 2015-01-01

Induction of Neuron-Specific Degradation of Coenzyme A Models Pantothenate Kinase-Associated Neurodegeneration by Reducing Motor Coordination in Mice.

Stephanie A Shumar, Paolo Fagone, Adolfo Alfonso-Pecchio, John T Gray, Jerold E Rehg, Suzanne Jackowski, Roberta Leonardi

Index: PLoS ONE 10 , e0130013, (2015)

Full Text: HTML

Abstract

Pantothenate kinase-associated neurodegeneration, PKAN, is an inherited disorder characterized by progressive impairment in motor coordination and caused by mutations in PANK2, a human gene that encodes one of four pantothenate kinase (PanK) isoforms. PanK initiates the synthesis of coenzyme A (CoA), an essential cofactor that plays a key role in energy metabolism and lipid synthesis. Most of the mutations in PANK2 reduce or abolish the activity of the enzyme. This evidence has led to the hypothesis that lower CoA might be the underlying cause of the neurodegeneration in PKAN patients; however, no mouse model of the disease is currently available to investigate the connection between neuronal CoA levels and neurodegeneration. Indeed, genetic and/or dietary manipulations aimed at reducing whole-body CoA synthesis have not produced a desirable PKAN model, and this has greatly hindered the discovery of a treatment for the disease.Cellular CoA levels are tightly regulated by a balance between synthesis and degradation. CoA degradation is catalyzed by two peroxisomal nudix hydrolases, Nudt7 and Nudt19. In this study we sought to reduce neuronal CoA in mice through the alternative approach of increasing Nudt7-mediated CoA degradation. This was achieved by combining the use of an adeno-associated virus-based expression system with the synapsin (Syn) promoter. We show that mice with neuronal overexpression of a cytosolic version of Nudt7 (scAAV9-Syn-Nudt7cyt) exhibit a significant decrease in brain CoA levels in conjunction with a reduction in motor coordination. These results strongly support the existence of a link between CoA levels and neuronal function and show that scAAV9-Syn-Nudt7cyt mice can be used to model PKAN.

Related Compounds

Structure Name/CAS No. Articles
Sodium acetate Structure Sodium acetate
CAS:127-09-3
sodium chloride Structure sodium chloride
CAS:7647-14-5
Acetonitrile Structure Acetonitrile
CAS:75-05-8
Hydrogen peroxide Structure Hydrogen peroxide
CAS:7722-84-1
BIS-TRIS PROPANE Structure BIS-TRIS PROPANE
CAS:64431-96-5
3,3'-diaminobenzidine Structure 3,3'-diaminobenzidine
CAS:91-95-2
SODIUM CHLORIDE-35 CL Structure SODIUM CHLORIDE-35 CL
CAS:20510-55-8
Monopotassium phosphate Structure Monopotassium phosphate
CAS:7778-77-0
DL-Glyceraldehyde 3-phosphate Structure DL-Glyceraldehyde 3-phosphate
CAS:591-59-3
acetic acid Structure acetic acid
CAS:1173022-32-6