Abstract

The regulation of phosphatidylserine (PS) distribution across the plasma membrane of eukaryotic cells has been implicated in numerous cell functions (e.g. apoptosis and coagulation). In a recent study, fluorescent phospholipids labeled in the acyl chain with 7-nitrobenz-2-oxa-1, 3-diazol-4-yl (NBD) were used to identify two members of the P4 subfamily of P-type ATPases, Dnf1p and Dnf2p, that are necessary for the inward-directed transport of phospholipids across the plasma membrane (flip) of yeast ( Pomorski, T., Lombardi, R., Riezman, H., Devaux, P. F., Van Meer, G., and Holthuis, J. C. (2003) Mol. Biol. Cell 14, 1240-1254 ). Herein, we present evidence that the flip of NBD-labeled PS (NBD-PS) across the plasma membrane does not require the expression of Dnf1p or Dnf2p. In strains in which DNF1 and DNF2 are both deleted, the flip of NBD-PS is increased approximately 2-fold over that of the isogenic parent strain, whereas the flip of NBD-labeled phosphatidylcholine and NBD-labeled phosphatidylethanolamine are reduced to approximately 20 and approximately 50%, respectively. The mechanism responsible for NBD-PS flip is similar to that for NBD-labeled phosphatidylcholine and NBD-labeled phosphatidylethanolamine in its dependence on cellular ATP and the plasma membrane proton electrochemical gradient, as well as its regulation by the transcription factors Pdr1p and Pdr3p. Based on the observation that deletion or inactivation of all four members of the DRS2/DNF essential subfamily of P-type ATPases does not affect NBD-PS flip, we conclude that the activity reflected by NBD-PS internalization is not the essential function of the DRS2/DNF subfamily of P-type ATPases.

Highlights

  • Phospholipids with fluorescent or spin-labeled reporter groups attached to their sn2 acyl chain have been used to investigate the mechanisms by which phospholipids are transported across the plasma membrane (4, 6 –9)

  • NBD-labeled PS (NBD-PS) Flip Is Not Dependent on Dnf1p or Dnf2p Expression—In this study, we have shown that the inward-transport of NBD-PS across the plasma membrane of S. cerevisiae at 2 °C does not require the expression of DNF1 or DNF2 as has been reported previously [12]

  • Whereas the flip of NBD-PC and NBD-PE measured at 2 °C is inhibited in strains in which both DNF1 and DNF2 have been deleted [12], the flip of NBD-PS is increased (Figs. 1A, 4, 6B, and 7)

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Summary

Saccharomyces cerevisiae strains used in this study

MAT␣ his3⌬1 leu2⌬0 ura3⌬0 lys2⌬0 MATa his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 lys2⌬0 dnf1⌬::KanMX4 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 lys2⌬0 dnf2⌬::KanMX4 MATa his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf2⌬::KanMX4 dnf3⌬::KanMX4 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4 dnf3⌬::KanMX4 MATa his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4 dnf3⌬::KanMX4 MATa his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4 drs2⌬::KanMX4 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 dnf3⌬::KanMX4 drs2⌬::KanMX4 MATa his3⌬1 leu2⌬0 ura3⌬0 dnf2⌬::KanMX4 dnf3⌬::KanMX4 drs2⌬::KanMX4 MAT␣ his leu ura lys drs2⌬::KanMX4 dnf1⌬::KanMX4 MATa his leu ura met dnf1⌬::KanMX4 dnf3⌬::KanMX4 MATa his leu ura met dnf1⌬::KanMX4 dnf3⌬::KanMX4 drs2::LEU2 MAT␣ leu ura drs2⌬::KanMX4 dnf2⌬::KanMX4 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4. Dnf3⌬::KanMX4 drs2⌬::LEU2 pRS313::DRS2 MAT␣ his3⌬1 leu2⌬0 ura3⌬0 met15⌬0 dnf1⌬::KanMX4 dnf2⌬::KanMX4. Dnf3⌬::KanMX4 drs2⌬::LEU2 pRS313::drs MATa ura leu2⌬1 his3⌬200 trp1⌬63 MATa ura leu2⌬1 his3⌬200 trp1⌬63 pdr1⌬::TRP1 pdr3⌬::HIS3 MAT␣ can100 ade leu112 trp ura lys MAT␣ can100 ade leu112 trp ura lys PDR1-11 MAT␣ can100 ade leu112 trp ura lys pdr. Riezman require the expression of DNF1 or DNF2 suggesting that it is flipped across the plasma membrane by a different mechanism from that of NBD-PC and NBD-PE. Based on the observation that deletion or inactivation of all four members of the DRS2/ DNF essential subfamily of P-type ATPases [13, 14] does not affect NBD-PS flip, we conclude that the activity reflected by NBD-PS internalization is not the essential function of the DRS2/DNF subfamily of P-type ATPases

EXPERIMENTAL PROCEDURES
Findings
DISCUSSION
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