Beaumont K, Skowronski R, Vaughn D A, Fanestil D D
Department of Medicine, University of California, San Diego, La Jolla 92093.
Biochem Pharmacol. 1988 Mar 15;37(6):1009-14. doi: 10.1016/0006-2952(88)90502-3.
Peripheral-type benzodiazepine receptors (PBRs) are present at high densities in the rat kidney distal tubule. [3H]RO 5-4864 binding to PBRs in kidney membranes is inhibited by several unidentified low molecular weight hydrophobic compounds in urine and serum. We tested representative hydrophobic compounds from several lipid classes for ability to inhibit binding to rat kidney PBRs of two high affinity ligands, [3H]RO 5-4864 and [3H]PK 11195. Unsaturated fatty acids and alcohols inhibited [3H]RO 5-4864 binding with half-maximal inhibition occurring at 3 X 10(-6) M to 10(-4) M. Inhibitory potency increased with the degree of unsaturation. Phospholipids inhibited [3H]RO 5-4864 in the same concentration range, with inhibitory potency in this case dependent both upon an unsaturated fatty acid moiety and upon the polar head group. Phosphatidylethanolamine was the most potent phospholipid tested (IC50 = 2 X 10(-6) M), whereas phosphatidylcholine was not inhibitory. Although phospholipids inhibited both [3H]RO 5-4864 and [3H]PK 11195 binding equally, unsaturated fatty acids had a much greater inhibitory effect upon [3H]RO 5-4864 than upon [3H]PK 11195 binding. Similar effects were obtained with digitonin-solubilized PBRs. These data demonstrate that in our experiments PBR binding was inhibited by specific lipids and that binding of proposed agonist (RO 5-4864) and antagonist (PK 11195) ligands was differentially affected by unsaturated fatty acids.
外周型苯二氮䓬受体(PBRs)在大鼠肾远曲小管中高密度存在。尿和血清中的几种未鉴定的低分子量疏水化合物可抑制[3H]RO 5 - 4864与肾膜中PBRs的结合。我们测试了来自几类脂质的代表性疏水化合物抑制两种高亲和力配体[3H]RO 5 - 4864和[3H]PK 11195与大鼠肾PBRs结合的能力。不饱和脂肪酸和醇类抑制[3H]RO 5 - 4864结合,半数最大抑制浓度在3×10⁻⁶ M至10⁻⁴ M之间。抑制效力随不饱和度增加而增强。磷脂在相同浓度范围内抑制[3H]RO 5 - 4864,在这种情况下抑制效力既取决于不饱和脂肪酸部分也取决于极性头部基团。磷脂酰乙醇胺是测试的最有效磷脂(IC50 = 2×10⁻⁶ M),而磷脂酰胆碱无抑制作用。尽管磷脂对[3H]RO 5 - 4864和[3H]PK 11195结合的抑制作用相同,但不饱和脂肪酸对[3H]RO 5 - 4864的抑制作用比对[3H]PK 11195结合的抑制作用大得多。用洋地黄皂苷增溶的PBRs也得到了类似结果。这些数据表明,在我们的实验中PBR结合受到特定脂质的抑制,并且不饱和脂肪酸对拟激动剂(RO 5 - 4864)和拮抗剂(PK 11195)配体的结合有不同影响。