Isakson P C, Raz A, Denny S E, Wyche A, Needleman P
Prostaglandins. 1977 Nov;14(5):853-71. doi: 10.1016/0090-6980(77)90302-1.
The lipids of isolated Krebs perfused rabbit kidneys and hearts were labelled with [14C]arachidonic acid. Subsequent hormonal stimulation (e.g. bradykinin, ATP) of the pre-labelled tissue resulted in dose-dependent release of [14C]prostaglandins; little or no release of the precursor [14C]arachidonic acid was observed. When fatty acid-free bovine serum albumin was added to the perfusion medium as a trap for fatty acids substantial release of [14C]arachidonic acid was detected following hormonal stimulation. The release of [14C]arachidonic acid was dose-dependent and greater than 3 fold that of [14C]prostaglandin release. Indomethacin by inhibiting the cyclo-oxygenase, completely inhibited release of [14C]prostaglandins and only slightly inhibited release of [14C]arachidonic acid. These results demonstrate that in both rabbit kidney and heart much more substrate is released by hormonal stimulation than is converted to prostaglandins. This suggests that either the deacylation reaction is not tightly coupled to the prostaglandin synthetase system or that there are two deacylation mechanisms, one which is coupled to prostaglandin synthesis while the other is non-specific. It has previously been shown that prostaglandin release due to hormones such as bradykinin is transient despite continued presence of the hormone (tachyphylaxis). By utilizing albumin to trap released fatty acid, it was found that hormone-stimulated release of arachidonic acid is also transient. This directly demonstrates that tachyphylaxis occurs at a step prior to the cyclo-oxygenase.
用[14C]花生四烯酸标记分离的经Krebs灌注的兔肾和心脏的脂质。随后对预先标记的组织进行激素刺激(如缓激肽、ATP),导致[14C]前列腺素呈剂量依赖性释放;未观察到前体[14C]花生四烯酸有少量释放或无释放。当向灌注培养基中添加无脂肪酸的牛血清白蛋白作为脂肪酸捕获剂时,激素刺激后检测到大量[14C]花生四烯酸释放。[14C]花生四烯酸的释放呈剂量依赖性,且比[14C]前列腺素释放量高3倍以上。吲哚美辛通过抑制环氧化酶,完全抑制了[14C]前列腺素的释放,仅轻微抑制了[14C]花生四烯酸的释放。这些结果表明,在兔肾和心脏中,激素刺激释放的底物比转化为前列腺素的底物多得多。这表明要么去酰化反应与前列腺素合成酶系统没有紧密偶联,要么存在两种去酰化机制,一种与前列腺素合成偶联,另一种是非特异性的。先前已经表明,尽管激素持续存在(脱敏现象),但缓激肽等激素引起的前列腺素释放是短暂的。通过利用白蛋白捕获释放的脂肪酸,发现激素刺激的花生四烯酸释放也是短暂的。这直接证明脱敏现象发生在环氧化酶之前的步骤。