Natural and azido fatty acids inhibit phosphate transport and activate fatty acid anion uniport mediated by the mitochondrial phosphate carrier

Citation
H. Engstova et al., Natural and azido fatty acids inhibit phosphate transport and activate fatty acid anion uniport mediated by the mitochondrial phosphate carrier, J BIOL CHEM, 276(7), 2001, pp. 4683-4691
Citations number
45
Categorie Soggetti
Biochemistry & Biophysics
Journal title
JOURNAL OF BIOLOGICAL CHEMISTRY
ISSN journal
00219258 → ACNP
Volume
276
Issue
7
Year of publication
2001
Pages
4683 - 4691
Database
ISI
SICI code
0021-9258(20010216)276:7<4683:NAAFAI>2.0.ZU;2-1
Abstract
The electroneutral P-i uptake via the phosphate carrier (PIC) in rat liver and heart mitochondria is inhibited by fatty acids (FAs), by 12-(4-azido-2- nitrophenylamino)dodecanoic acid (AzDA) and heptylbenzoic acid (similar to1 muM doses) and by lauric, palmitic, or 12-azidododecanoic acids (similar t o0.1 mM doses). In turn, reconstituted E. coli-expressed yeast PIC mediated anionic FA uniport with a similar pattern leading to FA cycling and Hf uni port. The kinetics of P-i/P-i exchange on recombinant PIC in the presence o f AzDA better corresponded to a competitive inhibition mechanism. Methaneph osphonate was identified as a new PIC substrate. Decanephosphonate, butanep hosphonate, 4-nitrophenylphosphate, and other P-i analogs were not transloc ated and did not inhibit P-i transport. However, methylenediphosphonate and iminodi(methylenephosphonate) inhibited both electroneutral P-i uptake and FA cycling via PIG. AzDA analog 16-(4-azido-2-nitrophenylamino)-[H-3(4)]-h exadecanoic acid (H-3-AzHA) bound upon photoactivation to several mitochond rial proteins, including the 30- and 34-kDa bands. The latter was ascribed to PIC due to its specific elution pattern on Blue Sepharose and Affi-Gel. H-3-AzHA photolabeling of recombinant PIC was prevented by methanephosphona te and diphosphonates and after premodification with 4-azido-2-nitrophenylp hosphate. Hence, the demonstrated PIC interaction with monovalent long-chai n FA anions, but with divalent phosphonates of short chain only, indicates a pattern distinct from that valid for the mitochondrial uncoupling protein -1.