首页> 美国卫生研究院文献>Biochemical Journal >Characterization of specific binding sites of 3H-labelled platelet-activating factor (3HPAF) and a new antagonist 3HSR 27417 on guinea-pig tracheal epithelial cells.
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Characterization of specific binding sites of 3H-labelled platelet-activating factor (3HPAF) and a new antagonist 3HSR 27417 on guinea-pig tracheal epithelial cells.

机译:在豚鼠气管上皮细胞上鉴定3H标记的血小板活化因子(3H PAF)和新的拮抗剂3H SR 27417的特异性结合位点。

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摘要

Binding of 3H-labelled platelet-activating factor ([3H]PAF) to guinea-pig tracheal epithelial cells was time-dependent, reversible and saturable. Scatchard analysis of the saturation-binding data indicated that [3H]PAF bound to one class of specific binding sites with high affinity (KD = 4.3 +/- 0.03 nM; Bmax. = 0.172 +/- 0.02 fmol/10(5) cells; n = 3). Unlabelled PAF competitively and selectively inhibited the specific binding of [3H]PAF with 50% inhibition at 4.8 +/- 0.07 nM (n = 3). SR 27417, the first member of a newly developed PAF antagonist series, competitively displaced [3H]PAF from its binding sites on guinea-pig tracheal epithelial cells with a Ki of 100 +/- 3 pM (n = 3). Studies carried out in parallel demonstrated that SR 27417 was 40 times more potent than C16-PAF itself and more than 100-fold as active as the best synthetic PAF-receptor antagonist yet described. [3H]SR 27417 displayed high-affinity, specific, reversible as well as saturable binding to a single class of binding sites on tracheal epithelial cells (KD = 94 +/- 7 pM; Bmax. = 0.181 +/- 0.04 fmol/10(5) cells; n = 3). C16-PAF, lyso-PAF, enantio-PAF, SR 27417 and other PAF-receptor antagonists had Ki values which were nearly identical for both [3H]PAF and [3H]SR 27417, demonstrating that in guinea-pig tracheal epithelial cells they have the same binding sites. In conclusion, these data suggest that tracheal epithelial cells contain PAF-specific receptors and indicate that SR 27417 is an extremely potent PAF-receptor antagonist, as well as being a suitable radioligand for labelling PAF receptors on intact cells.
机译:3H标记的血小板活化因子([3H] PAF)与豚鼠气管上皮细胞的结合具有时间依赖性,可逆性和饱和性。饱和结合数据的Scatchard分析表明[3H] PAF以高亲和力结合到一类特异性结合位点(KD = 4.3 +/- 0.03 nM; Bmax。= 0.172 +/- 0.02 fmol / 10(5)细胞; n = 3)。未标记的PAF竞争性和选择性地抑制[3H] PAF的特异性结合,在4.8 +/- 0.07 nM时抑制50%(n = 3)。 SR 27417是新开发的PAF拮抗剂系列的第一个成员,竞争性地使[3H] PAF从其在豚鼠气管上皮细胞上的结合位点移位,Ki为100 +/- 3 pM(n = 3)。并行进行的研究表明,SR 27417的效力是C16-PAF本身的40倍,活性是迄今描述的最佳合成PAF受体拮抗剂的100倍以上。 [3H] SR 27417对气管上皮细胞上的一类结合位点显示出高亲和力,特异性,可逆性和饱和性结合(KD = 94 +/- 7 pM; Bmax。= 0.181 +/- 0.04 fmol / 10 (5)个单元; n = 3)。 C16-PAF,溶血-PAF,对映体-PAF,SR 27417和其他PAF受体拮抗剂的Ki值对于[3H] PAF和[3H] SR 27417几乎相同,表明在豚鼠气管上皮细胞中具有相同的结合位点。总之,这些数据表明气管上皮细胞含有PAF特异性受体,并表明SR 27417是一种非常有效的PAF受体拮抗剂,也是在完整细胞上标记PAF受体的合适放射性配体。

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