Mitamura Kuniko, Sogabe Mitsuru, Sakanashi Hironori, Watanabe Saai, Sakai Toshihiro, Yamaguchi Yoshihiro, Wakamiya Tateaki, Ikegawa Shigeo
Faculty of Pharmaceutical Sciences, Kinki University, Higashi, Osaka, Japan.
J Chromatogr B Analyt Technol Biomed Life Sci. 2007 Aug;855(1):88-97. doi: 10.1016/j.jchromb.2007.02.010. Epub 2007 Feb 15.
The formation of thioester-linked glutathione (GSH) conjugates of bile acids (BAs) is presumed to occur via trans-acylation reactions between GSH and reactive acyl-linked metabolites of BAs. The present study examines the chemical reactivity of cholyl-adenylate and cholyl-CoA thioester, acyl-linked metabolites of cholic acid (CA), with GSH to form CA-GSH conjugate in vitro. The authentic specimen of CA-GSH was synthesized along with GSH conjugates of four common BAs found in the human body. Their structures were confirmed by proton-nuclear magnetic resonance spectroscopy and electrospray ionization (ESI)-tandem mass spectrometry in positive- and negative-ion modes. Incubation of cholyl-adenylate or cholyl-CoA thioester with GSH was carried out at pH 7.5 and 37 degrees C for 30 min, with analysis of the reaction mixture by liquid chromatography/ESI-tandem mass spectrometry, where CA-GSH was detected on the product ion mass chromatograms monitored with stable and abundant dehydrated positive-ion M+HH(2)O at m/z 680.3 and fragmented negative-ion GSHH at m/z 306.0, and was definitely identified by CID spectra by comparison with those of the authentic sample. The results show that both cholyl-adenylate and cholyl-CoA thioester are able to acylate GSH in vitro.
胆汁酸(BAs)与硫酯连接的谷胱甘肽(GSH)共轭物的形成被推测是通过GSH与BAs的活性酰基连接代谢物之间的转酰基反应发生的。本研究检测了胆酰腺苷酸和胆酰辅酶A硫酯(胆酸(CA)的酰基连接代谢物)与GSH在体外形成CA-GSH共轭物的化学反应性。合成了CA-GSH的真品标本以及人体中发现的四种常见BAs的GSH共轭物。通过质子核磁共振光谱以及正离子和负离子模式下的电喷雾电离(ESI)串联质谱对其结构进行了确认。在pH 7.5和37℃条件下,将胆酰腺苷酸或胆酰辅酶A硫酯与GSH孵育30分钟,然后通过液相色谱/ESI串联质谱对反应混合物进行分析,在产物离子质量色谱图上检测到CA-GSH,其稳定且丰富的脱水正离子M + H - H₂O在m/z 680.3处,碎片负离子GSH - H在m/z 306.0处,并通过与真品样品的CID光谱比较在CID光谱中得到明确鉴定。结果表明,胆酰腺苷酸和胆酰辅酶A硫酯在体外均能够使GSH发生酰化反应。