Department of Medicine, University of California, San Diego, La Jolla, CA 92093-0063, USA.
Steroids. 2011 Sep-Oct;76(10-11):1126-35. doi: 10.1016/j.steroids.2011.04.017. Epub 2011 May 11.
Three C(27) bile acids were found to be major biliary bile acids in the capuchinbird (Perissocephalus tricolor) and bare-throated bellbird (Procnias nudicollis), both members of the Cotingidae family of the order Passeriformes. The individual bile acids were isolated by preparative RP-HPLC, and their structures were established by RP-HPLC, LC/ESI-MS/MS and NMR as well as by a comparison of their chromatographic properties with those of authentic reference standards of their 12α-hydroxy derivatives. The most abundant bile acid present in the capuchinbird bile was the taurine conjugate of C(27) (24R,25R)-3α,7α,24-trihydroxy-5β-cholestan-27-oic acid, a diastereomer not previously identified as a natural bile acid. The four diastereomers of taurine-conjugated (24ξ,25ξ)-3α,7α,24-trihydroxy-5β-cholestan-27-oic acid could be distinguished by NMR and were resolved by RP-HPLC. The RRT of the diastereomers (with taurocholic acid as 1.0) were found to be increased in the following order: (24R,25R)<(24S,25R)<(24S,25S)<(24R,25S). Two epimers (25R and 25S) of C(27) 3α,7α-dihydroxy-5β-cholestan-27-oic acid were also present (as the taurine conjugates) in both bird species. Epimers of the two compounds could be distinguished by their NMR spectra and resolved by RP-HPLC with the (25S)-epimer eluting before the (25R)-epimer. Characterization of the taurine-conjugated (24R,25R)-3α,7α,24-trihydroxy-5β-cholestan-27-oic acid and two epimers (25R and 25S) of 3α,7α-dihydroxy-5β-cholestan-27-oic acid should facilitate their detection in peroxisomal disease and inborn errors of bile acid biosynthesis.
三种 C(27) 胆酸被发现是卷尾鸟(Perissocephalus tricolor)和裸颈钟鸟(Procnias nudicollis)的主要胆酸,它们均属于雀形目科的 Cotingidae 科。通过制备性反相高效液相色谱法分离出各个胆酸,并通过反相高效液相色谱法、LC/ESI-MS/MS 和 NMR 以及与它们的 12α-羟基衍生物的对照标准品的色谱性质比较确定了它们的结构。在卷尾鸟胆汁中含量最丰富的胆酸是 C(27)(24R,25R)-3α,7α,24-三羟基-5β-胆烷-27-酸的牛磺酸轭合物,这是一种先前未被鉴定为天然胆酸的非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。通过 NMR 可以区分并通过反相高效液相色谱法分离出牛磺酸轭合物(24ξ,25ξ)-3α,7α,24-三羟基-5β-胆烷-27-酸的四个非对映异构体。这四个非对映异构体的相对保留时间(以牛磺胆酸为 1.0)依次增加:(24R,25R)<(24S,25R)<(24S,25S)<(24R,25S)。两种 C(27) 3α,7α-二羟基-5β-胆烷-27-酸的差向异构体(25R 和 25S)也存在于这两种鸟类中(作为牛磺酸轭合物)。通过它们的 NMR 谱可以区分这两种化合物的差向异构体,并通过反相高效液相色谱法分离,(25S)-差向异构体在(25R)-差向异构体之前洗脱。(24R,25R)-3α,7α,24-三羟基-5β-胆烷-27-酸和两种 3α,7α-二羟基-5β-胆烷-27-酸的差向异构体(25R 和 25S)的鉴定应有助于在过氧化物酶体疾病和胆汁酸生物合成的先天性错误中检测它们。