Kramer W, Schneider S
Institut für Organische Chemie und Biochemie, Universität Freiburg, Federal Republic of Germany.
J Lipid Res. 1989 Aug;30(8):1281-8.
New carbene-generating photolabile bile salt derivatives, 3,3-azo-7 alpha,12 alpha-dihydroxy-5 beta [7 beta-3H]cholan-24-oic acid and (3,3-azo-7 alpha,12 alpha-dihydroxy-5 beta [7 beta-3H]cholan-24-oyl)-2- aminoethanesulfonic acid were synthesized with high specific radioactivity. These 3-diazirine-derivatives could be activated to the corresponding carbenes by irradiation with ultraviolet light at 350 nm with a half-life time of 2 min. The 3-diazirine derivatives behaved in enterohepatic circulation like the natural bile salts. The uptake of [3H]taurocholate into isolated hepatocytes was competitively inhibited by (3,3-azo-7 alpha,12 alpha-dihydroxy-5 beta-cholan-24-oyl)-2- aminoethanesulfonic acid indicating that the 3,3-azo-derivative of taurocholate shares the hepatic transport systems for natural bile salts. It was demonstrated that the radioactively labeled 3-diazirine bile salt derivatives are useful probes for photoaffinity labeling of bile salt binding proteins especially in intact cells and tissues.
新型生成卡宾的光不稳定胆汁盐衍生物,3,3-偶氮-7α,12α-二羟基-5β[7β-³H]胆烷-24-酸和(3,3-偶氮-7α,12α-二羟基-5β[7β-³H]胆烷-24-酰基)-2-氨基乙烷磺酸以高比放射性合成。这些3-重氮衍生物通过在350nm波长下用紫外光照射可被激活为相应的卡宾,半衰期为2分钟。3-重氮衍生物在肝肠循环中的行为与天然胆汁盐相似。(3,3-偶氮-7α,12α-二羟基-5β-胆烷-24-酰基)-2-氨基乙烷磺酸竞争性抑制[³H]牛磺胆酸盐进入分离的肝细胞,这表明牛磺胆酸盐的3,3-偶氮衍生物与天然胆汁盐共享肝脏转运系统。已证明放射性标记的3-重氮胆汁盐衍生物是用于胆汁盐结合蛋白光亲和标记的有用探针,特别是在完整细胞和组织中。