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作为蛋白质-配体相互作用核磁共振探针的[3,4-(13)C(2)]富集胆盐的合成。

Synthesis of [3,4-(13)c(2)]-enriched bile salts as NMR probes of protein-ligand interactions.

作者信息

Tochtrop Gregory P, DeKoster Gregory T, Cistola David P, Covey Douglas F

机构信息

Department of Molecular Biology & Pharmacology, Washington University School of Medicine, 660 South Euclid Avenue, Campus Box 8103, St. Louis, Missouri 63110, USA.

出版信息

J Org Chem. 2002 Sep 20;67(19):6764-71. doi: 10.1021/jo0259109.

Abstract

Synthetic methodology that allows for incorporation of isotopic carbon at the C-3 and C-4 positions of bile salts is reported. Three [3,4-(13)C(2)]-enriched bile salts were synthesized from either deoxycholic or lithocholic acid. The steroid 3alpha-OH group was oxidized and the A-ring was converted into the Delta(4)-3-ketone. The C-24 carboxylic acid was next converted into the carbonate group and selectively reduced to the alcohol in the presence of the A-ring enone. Following protection of the 24-OH group, the Delta(4)-3-ketone was converted into the A-ring enol lactone. Condensation of the enol lactone with [1,2-(13)C(2)]-enriched acetyl chloride and subsequent Robinson annulation afforded a [3,4-(13)C(2)]-enriched Delta(4)-3-ketone that was subsequently converted back into a 3alpha-hydroxy-5beta-reduced bile steroid. C-7 hydroxylation, when necessary, was achieved via conversion of the Delta(4)-3-ketone into the corresponding Delta(4,6)-dien-3-one, epoxidation of the Delta(6)-double bond, and hydrogenolysis/hydrogenation of the 5,6-epoxy enone system. The [3,4-(13)C(2)]-enriched bile salts were subsequently complexed to human ileal bile acid binding protein (I-BABP), and (1)H-(13)C HSQC spectra were recorded to show the utility of the compounds for investigating the interactions of bile acids with I-BABP.

摘要

报道了一种能够在胆汁盐的C-3和C-4位引入同位素碳的合成方法。由脱氧胆酸或石胆酸合成了三种富含[3,4-(13)C(2)]的胆汁盐。甾体3α-OH基团被氧化,A环转化为Δ(4)-3-酮。接着,C-24羧酸被转化为碳酸酯基团,并在A环烯酮存在下选择性还原为醇。在保护24-OH基团后,Δ(4)-3-酮转化为A环烯醇内酯。烯醇内酯与富含[1,2-(13)C(2)]的乙酰氯缩合,随后进行罗宾逊环化反应,得到富含[3,4-(13)C(2)]的Δ(4)-3-酮,随后将其转化回3α-羟基-5β-还原胆汁甾体。必要时,通过将Δ(4)-3-酮转化为相应的Δ(4,6)-二烯-3-酮、环氧化Δ(6)-双键以及对5,6-环氧烯酮体系进行氢解/氢化反应来实现C-7羟基化。随后,将富含[3,4-(13)C(2)]的胆汁盐与人回肠胆汁酸结合蛋白(I-BABP)复合,并记录(1)H-(13)C HSQC谱,以展示这些化合物在研究胆汁酸与I-BABP相互作用方面的效用。

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