Specific binding of [3H-Tyr8]physalaemin to rat submaxillary gland substance P receptor
[3H]Physalaemin [( 3H]PHY) binds to a single class of noninteracting sites on rat submaxillary gland membranes suspended in high ionic strength media with a KD of 2.7 nM, a Bmax of 240 fmol/mg of protein, and low nonspecific binding. The relative potencies of substance P (SP) and its fragments in co...
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Veröffentlicht in: | Molecular pharmacology 1985-01, Vol.27 (1), p.38-45 |
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Sprache: | eng |
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Zusammenfassung: | [3H]Physalaemin [( 3H]PHY) binds to a single class of noninteracting sites on rat submaxillary gland membranes suspended in
high ionic strength media with a KD of 2.7 nM, a Bmax of 240 fmol/mg of protein, and low nonspecific binding. The relative
potencies of substance P (SP) and its fragments in competing with [3H]PHY correlate with their relative salivation potencies.
This indicates that [3H]PHY interacts with a physiologically relevant SP receptor. In low ionic strength media, the KD of
[3H]PHY does not change, but SP and some of its fragments are more potent than PHY in competing with [3H] PHY. Computer-assisted
analysis of [3H]PHY and [3H]SP binding in high and low ionic strength media demonstrated that both peptides are equipotent
in high ionic strength but that the affinity of SP increases by 70-fold in low ionic strength. The SP fragments that contain
a basic residue in positions 1 and/or 3 also display an increased affinity in low ionic strength. These findings document
that [3H]PHY binding in high ionic strength (mu = 0.6) accurately reflects the pharmacological potencies of agonists on the
SP-P receptor. The binding of [3H]PHY, like that of [3H]SP, increases by the addition of divalent cations (Mg2+ greater than
Ca2+ greater than Mn2+). Guanine nucleotides decrease [3H]PHY binding by decreasing the Bmax to the same level (160 fmol/mg
of protein), in the presence or absence of Mg2+. |
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ISSN: | 0026-895X 1521-0111 |