Abcd2 is a strong modifier of the metabolic impairments in peritoneal macrophages of ABCD1-deficient mice.
Zahid Muneer, Christoph Wiesinger, Till Voigtländer, Hauke B Werner, Johannes Berger, Sonja Forss-Petter
Index: PLoS ONE 9(9) , e108655, (2014)
Full Text: HTML
Abstract
The inherited peroxisomal disorder X-linked adrenoleukodystrophy (X-ALD), associated with neurodegeneration and inflammatory cerebral demyelination, is caused by mutations in the ABCD1 gene encoding the peroxisomal ATP-binding cassette (ABC) transporter ABCD1 (ALDP). ABCD1 transports CoA-esters of very long-chain fatty acids (VLCFA) into peroxisomes for degradation by β-oxidation; thus, ABCD1 deficiency results in VLCFA accumulation. The closest homologue, ABCD2 (ALDRP), when overexpressed, compensates for ABCD1 deficiency in X-ALD fibroblasts and in Abcd1-deficient mice. Microglia/macrophages have emerged as important players in the progression of neuroinflammation. Human monocytes, lacking significant expression of ABCD2, display severely impaired VLCFA metabolism in X-ALD. Here, we used thioglycollate-elicited primary mouse peritoneal macrophages (MPMΦ) from Abcd1 and Abcd2 single- and double-deficient mice to establish how these mutations affect VLCFA metabolism. By quantitative RT-PCR, Abcd2 mRNA was about half as abundant as Abcd1 mRNA in wild-type and similarly abundant in Abcd1-deficient MPMΦ. VLCFA (C26∶0) accumulated about twofold in Abcd1-deficient MPMΦ compared with wild-type controls, as measured by gas chromatography-mass spectrometry. In Abcd2-deficient macrophages VLCFA levels were normal. However, upon Abcd1/Abcd2 double-deficiency, VLCFA accumulation was markedly increased (sixfold) compared with Abcd1-deficient MPMΦ. Elovl1 mRNA, encoding the rate-limiting enzyme for elongation of VLCFA, was equally abundant across all genotypes. Peroxisomal β-oxidation of C26∶0 amounted to 62% of wild-type activity in Abcd1-deficient MPMΦ and was significantly more impaired (29% residual activity) upon Abcd1/Abcd2 double-deficiency. Single Abcd2 deficiency did not significantly compromise β-oxidation of C26∶0. Thus, the striking accumulation of VLCFA in double-deficient MPMΦ compared with single Abcd1 deficiency was due to the loss of ABCD2-mediated, compensatory transport of VLCFA into peroxisomes. We propose that moderate endogenous expression of Abcd2 in Abcd1-deficient murine macrophages prevents the severe metabolic phenotype observed in human X-ALD monocytes, which lack appreciable expression of ABCD2. This supports upregulation of ABCD2 as a therapeutic concept in X-ALD.
Related Compounds
Related Articles:
Kinetics and utilization of lipid sources during acute exercise and acipimox.
2014-07-15
[Am. J. Physiol. Endocrinol. Metab. 307(2) , E199-208, (2014)]
2014-08-01
[J. Virol. 88(16) , 9233-44, (2014)]
The nuclear receptor DAF-12 regulates nutrient metabolism and reproductive growth in nematodes.
2015-03-01
[PLoS Genet. 11(3) , e1005027, (2015)]
Inhibition of CD40-induced N-Ras activation reduces leishmania major infection.
2015-04-15
[J. Immunol. 194(8) , 3852-60, (2015)]
Reduction of oxidative stress attenuates lipoapoptosis exacerbated by hypoxia in human hepatocytes.
2015-01-01
[Int. J. Mol. Sci. 16(2) , 3323-34, (2015)]