Giner José-Luis, Zhao Hui, Beach David H, Parish Edward J, Jayasimhulu Koka, Kaneshiro Edna S
Department of Chemistry, State University of New York, ESF, Syracuse, NY 13210, USA.
J Lipid Res. 2002 Jul;43(7):1114-24. doi: 10.1194/jlr.m200113-jlr200.
Pneumocystis causes a type of pneumonia in immunodeficient mammals, such as AIDS patients. Mammals cannot alkylate the C-24 position of the sterol side chain, nor can they desaturate C-22. Thus, the reactions leading to these sterol modifications are particularly attractive targets for the development of drugs against fungal and protozoan pathogens that make them. In the present study, the definitive structures of 43 sterol molecular species in rat-derived Pneumocystis carinii were elucidated by nuclear magnetic resonance spectroscopy. Ergosterol, Delta(5,7) sterols, trienes, and tetraenes were not among them. Most (32 of the 43) were 24-alkylsterols, products of S-adenosyl-L-methionine:C-24 sterol methyl transferase (SAM:SMT) enzyme activity. Their abundance is consistent with the suggestion that SAM:SMT is highly active in this organism and that the enzyme is an excellent anti-Pneumocystis drug target. In contrast, the comprehensive analysis strongly suggest that P. carinii does not form Delta(22) sterols, thus C-22 desaturation does not appear to be a drug target in this pathogen. The lanosterol derivatives, 24-methylenelanost-8-en-3 beta-ol and (Z)-24-ethylidenelanost-8-en-3 beta-ol (pneumocysterol), previously identified in human-derived Pneumocystis jiroveci, were also detected among the sterols of the rat-derived P. carinii organisms.
肺孢子菌可在免疫缺陷的哺乳动物(如艾滋病患者)中引发一种肺炎。哺乳动物无法使甾醇侧链的C-24位烷基化,也不能使C-22位去饱和。因此,导致这些甾醇修饰的反应是开发针对能进行这些修饰的真菌和原生动物病原体药物的特别有吸引力的靶点。在本研究中,通过核磁共振光谱法阐明了大鼠源卡氏肺孢子菌中43种甾醇分子种类的精确结构。其中不包括麦角甾醇、Δ(5,7)甾醇、三烯和四烯。大多数(43种中的32种)是24-烷基甾醇,即S-腺苷-L-甲硫氨酸:C-24甾醇甲基转移酶(SAM:SMT)酶活性的产物。它们的丰度与SAM:SMT在该生物体中高度活跃以及该酶是一个优秀的抗肺孢子菌药物靶点的观点一致。相比之下,综合分析强烈表明卡氏肺孢子菌不会形成Δ(22)甾醇,因此C-22去饱和似乎不是该病原体的药物靶点。在大鼠源卡氏肺孢子菌生物体的甾醇中也检测到了之前在人源耶氏肺孢子菌中鉴定出的羊毛甾醇衍生物24-亚甲基羊毛甾-8-烯-3β-醇和(Z)-24-亚乙基羊毛甾-8-烯-3β-醇(肺孢子菌醇)。