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
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.