X-adrenoleukodystrophy (X-ALD) is an inherited disorder of very long chain (VLC) fatty acid (C22) metabolism that subsequently leads to the secondary manifestation of a neuroinflammatory response, demyelination/ dysmyelination and loss of myelinated axons and oligodendrocytes. The metabolic defect of pathognomonic accumulation of VLC fatty acids, as constituent complex lipids, is due to the deficient activity of VLC acyl-CoA ligase (lignoceroyl-CoA ligase) present in the peroxisomal membranes. The objective of this proposal is to decipher the function of the ALDP (X-ALD gene product) transporter in relation to the metabolism of VLC fatty acids and the elucidation of molecular events in the transition from a metabolic disease to a neuroinflammatory process in X-ALD. Achievement of these goals will be facilitated by cloning and sequencing the cDNA for PMP62, a partner of the ALDP transporter (ALDP-PMP62), and of the function of this transporter in the metabolism of VLC fatty acids. The antibodies and cDNA generated under specific aim I for PMP62 and the cDNA and antibodies against ALDP and lignoceroyl-CoA ligase already available, will be utilized to decipher the functional organization of ALDP, PMP62 and lignoceroyl-CoA ligase in peroxisomes. The possible role of pathologically accumulated lipids (lipids containing VLC fatty acids) in the transition of metabolic disease into a neuroinflammatory disease process observed in X-ALD will be examined by investigating the metabolic derangement induced modulation of brain cells in the neuroinflammatory response and the functions of peroxisomes and oligodendrocytes. The proposed studies will provide a better understanding of the normal metabolism of VLC fatty acids in peroxisomes and will help decipher the molecular relationship between abnormal lignoceroyl-CoA ligase activity with ALDP-PMP62 transporter and the pathological manifestations in X-ALD.

Agency
National Institute of Health (NIH)
Institute
National Institute of Neurological Disorders and Stroke (NINDS)
Type
Research Project (R01)
Project #
5R01NS022576-16
Application #
6330424
Study Section
Medical Biochemistry Study Section (MEDB)
Program Officer
Spinella, Giovanna M
Project Start
1985-09-09
Project End
2001-12-14
Budget Start
2000-12-01
Budget End
2001-12-14
Support Year
16
Fiscal Year
2001
Total Cost
$267,695
Indirect Cost
Name
Medical University of South Carolina
Department
Pediatrics
Type
Schools of Medicine
DUNS #
183710748
City
Charleston
State
SC
Country
United States
Zip Code
29425
Shah, Navjot; Singh, Inderjit (2017) MicroRNA Profiling Identifies miR-196a as Differentially Expressed in Childhood Adrenoleukodystrophy and Adult Adrenomyeloneuropathy. Mol Neurobiol 54:1392-1403
Nie, Xingju; Lowe, Danielle W; Rollins, Laura Grace et al. (2016) Sex-specific effects of N-acetylcysteine in neonatal rats treated with hypothermia after severe hypoxia-ischemia. Neurosci Res 108:24-33
Baarine, Mauhamad; Beeson, Craig; Singh, Avtar et al. (2015) ABCD1 deletion-induced mitochondrial dysfunction is corrected by SAHA: implication for adrenoleukodystrophy. J Neurochem 133:380-96
Samuvel, Devadoss J; Saxena, Nishant; Dhindsa, Jasdeep S et al. (2015) AKP-11 - A Novel S1P1 Agonist with Favorable Safety Profile Attenuates Experimental Autoimmune Encephalomyelitis in Rat Model of Multiple Sclerosis. PLoS One 10:e0141781
Baarine, Mauhamad; Khan, Mushfiquddin; Singh, Avtar et al. (2015) Functional Characterization of IPSC-Derived Brain Cells as a Model for X-Linked Adrenoleukodystrophy. PLoS One 10:e0143238
Khan, Mushfiquddin; Shunmugavel, Anandakumar; Dhammu, Tajinder S et al. (2015) Oral administration of cytosolic PLA2 inhibitor arachidonyl trifluoromethyl ketone ameliorates cauda equina compression injury in rats. J Neuroinflammation 12:94
Contreras, Miguel A; Alzate, Oscar; Singh, Avtar K et al. (2014) PPAR? activation induces N(?)-Lys-acetylation of rat liver peroxisomal multifunctional enzyme type 1. Lipids 49:119-31
Paintlia, Ajaib S; Paintlia, Manjeet K; Mohan, Sarumathi et al. (2013) AMP-activated protein kinase signaling protects oligodendrocytes that restore central nervous system functions in an experimental autoimmune encephalomyelitis model. Am J Pathol 183:526-41
Paintlia, Manjeet K; Paintlia, Ajaib S; Singh, Avtar K et al. (2013) S-nitrosoglutathione induces ciliary neurotrophic factor expression in astrocytes, which has implications to protect the central nervous system under pathological conditions. J Biol Chem 288:3831-43
Singh, Jaspreet; Khan, Mushfiquddin; Singh, Inderjit (2013) Caffeic acid phenethyl ester induces adrenoleukodystrophy (Abcd2) gene in human X-ALD fibroblasts and inhibits the proinflammatory response in Abcd1/2 silenced mouse primary astrocytes. Biochim Biophys Acta 1831:747-58

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