Mitochondrial ATP-Mg/phosphate carriers transport divalent inorganic cations in complex with ATP

作者:Monne Magnus; Daddabbo Lucia; Giannossa Lorena Carla; Nicolardi Maria Cristina; Palmieri Luigi; Miniero Daniela Valeria; Mangone Annarosa; Palmieri Ferdinando*
来源:Journal of Bioenergetics and Biomembranes, 2017, 49(5): 369-380.
DOI:10.1007/s10863-017-9721-0

摘要

The ATP-Mg/phosphate carriers (APCs) modulate the intramitochondrial adenine nucleotide pool size. In this study the concentration-dependent effects of Mg2+ and other divalent cations (Me2+) on the transport of [H-3]ATP in liposomes reconstituted with purified human and Arabidopsis APCs (hAPCs and AtAPCs, respectively, including some lacking their N-terminal domains) have been investigated. The transport of Me2+ mediated by these proteins was also measured. In the presence of a low external concentration of [H-3]ATP (12 mu M) and increasing concentrations of Me2+, Mg2+ stimulated the activity (measured as initial transport rate of [H-3]ATP) of hAPCs and decreased that of AtAPCs; Fe2+ and Zn2+ stimulated markedly hAPCs and moderately AtAPCs; Ca2+ and Mn2+ markedly AtAPCs and moderately hAPCs; and Cu2+ decreased the activity of both hAPCs and AtAPCs. All the Me2+-dependent effects correlated well with the amount of ATP-Me complex present. The transport of [C-14]AMP, which has a much lower ability of complexation than ATP, was not affected by the presence of the Me2+ tested, except Cu2+. Furthermore, the transport of [H-3]ATP catalyzed by the ATP/ADP carrier, which is known to transport only free ATP and ADP, was inhibited by all the Me2+ tested in an inverse relationship with the formation of the ATP-Me complex. Finally, direct measurements of Mg2+, Mn2+, Fe2+, Zn2+ and Cu2+ showed that they are cotransported with ATP by both hAPCs and AtAPCs. It is likely that in vivo APCs transport free ATP and ATP-Mg complex to different degrees, and probably trace amounts of other Me2+ in complex with ATP.

  • 出版日期2017-10