Mg. Houle et al., Tyrosine kinase-regulated small GTPase translocation and the activation ofphospholipase D in HL60 granulocytes, J LEUK BIOL, 66(6), 1999, pp. 1021-1030
We focus on the mechanisms of regulation of phospholipase D (PLD) activity,
Three agonists known to stimulate PLD activity, fMet-Leu-Phe (fMLP), phorb
ol 12-myristate 13-acetate (PMA) and V4+-OOH, induced a differential transl
ocation of ADP-ribosylation factor (ARF), RhoA, and protein kinase C alpha
(PKC alpha), all cofactors for PLD activation. Whereas fMLP recruited all t
hree proteins to membranes, V4+-OOH only elicited RhoA translocation and PM
A induced ARF and PKC alpha translocation. Three tyrosine kinases inhibitor
s, ST-638, methyl 2,5-dihydroxycinnamate, and genistein reduced fMLP-stimul
ated PLD activity by up to 80%. Furthermore, tyrosine kinase inhibitors red
uced the fMLP-induced increase of GTP gamma S-stimulated PLD activity in me
mbranes and recruitment of ARF, RhoA, and PKC alpha to the membrane fractio
n. The data suggest that a tyrosine phosphorylation event is located upstre
am of the translocation of ARF, RhoA, and PKC alpha in the signaling pathwa
y leading to PLD activation by fMLP. RO 31-8220, a specific inhibitor of PK
C, reduced PMA-induced PLD activity by 80% in intact HL60 granulocytes but
enhanced fMLP-stimulated PLD activity by 60%. Although PMA alone had no eff
ect on RhoA recruitment to the membrane fraction in the presence of RO 31-8
220 the levels of membrane-bound RhoA were increased. The levels of membran
e-bound ARF and PKC alpha were unaffected by RO 31-8220 during PMA stimulat
ion. in contrast, fMLP-induced recruitment of ARF and RhoA was insensitive
to RO 31-8220 but PKC alpha translocation was increased, We propose that Rh
oA translocation may be regulated by PKC in an ATP-independent manner. Furt
hermore, increased fMLP-induced PKC alpha translocation in the presence of
RO 31-8220 may partially account for the synergistic activation of PLD obse
rved when both fMLP and RO 31-8220 are used together in intact HL60 cells.