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J. Biol. Chem., Vol. 263, Issue 7, 3225-3233, Mar, 1988
SB Hwang
Due to multiple molecular species of platelet-activating factor (PAF) and
the existence of high affinity binding sites in a variety of cells and
tissues, possible existence of PAF receptor subtypes has been suggested.
This report shows differences between specific PAF receptors in human
leukocytes and platelets. Human polymorphonuclear leukocyte membranes
showed high affinity binding sites for PAF with an equilibrium dissociation
constant (KD) of 4.4 (+/- 0.3) x 10(-10) M. We compared the relative
potencies of several PAF agonists and receptor antagonists between human
platelet and human leukocyte membranes. One receptor antagonist (Ono-6240)
was found to be 6-10 times less potent in inhibiting the specific [3H]PAF
receptor binding, PAF-induced GTPase activity, as well as the PAF-induced
aggregation in human leukocytes than in human platelets. Mg2+, Ca2+, and K+
ions potentiated the specific [3H]PAF binding in both systems. Na+ and Li+
ions inhibited the specific [3H]PAF binding to human platelets but showed
no effects in human leukocytes. K+ ions decreased the Mg2+-potentiated
[3H]PAF binding in human leukocytes but showed no effects in human
platelets. PAF stimulates the hydrolysis of [gamma-32P] GTP with an ED50 of
about 1 nM, whereas the biological inactive enantiomer shows no activity
even at 10 microM in both human platelets and human leukocytes. The PAF-
stimulated GTPase in human leukocytes can be abolished by the pretreatment
of membranes with pertussis toxin and cholera toxin. However, the
PAF-stimulated activity of GTPase in human platelets is insensitive to
pertussis toxin and cholera toxin. These results suggest that there exists
a second type of PAF receptor in human polymorphonuclear leukocytes, which
is structurally different from the one characterized in human platelets,
and that the guanine nucleotide- binding protein coupled to PAF receptors
in human leukocytes is also different from the one in human platelets.
Identification of a second putative receptor of platelet-activating factor from human polymorphonuclear leukocytes
Merck Sharp & Dohme Research Laboratories, Department of Biochemical Regulation, Rahway, New Jersey 07065.
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