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阿拉伯半乳聚糖/阿拉伯甘露聚糖生物合成中脂质中间体的识别及其与乙胺丁醇对分枝杆菌作用方式的关系。

Recognition of the lipid intermediate for arabinogalactan/arabinomannan biosynthesis and its relation to the mode of action of ethambutol on mycobacteria.

作者信息

Wolucka B A, McNeil M R, de Hoffmann E, Chojnacki T, Brennan P J

机构信息

Department of Chemistry, University of Louvain, Louvain-la-Neuve, Belgium.

出版信息

J Biol Chem. 1994 Sep 16;269(37):23328-35.

PMID:8083238
Abstract

Despite major advances in our understanding of the structure of mycobacterial cell walls, little is known of their biogenesis, and yet they are the site of action of many anti-tuberculosis drugs and implicated in much of the pathology of tuberculosis and leprosy. A family of monoglycosyl polyprenylphosphates was isolated from Mycobacterium smegmatis, containing arabinose, ribose, and mannose. The isoprenoid nature of the lipid components was established by 1H NMR, and fast atom bombardment mass spectroscopy (FAB-MS) demonstrated the presence of C50 decaprenyl-P derivatives and smaller amounts of the C35 octahydroheptaprenyl-P products. The configuration of the mycobacterial decaprenol was established as mono-trans, octa-cis, pointing to carriers of unusual structure. Combined gas chromatography (GC)/MS, FAB-MS/MS, and 1H NMR allowed characterization of one of the primary components as beta-D-arabinofuranosyl-1-monophosphodecaprenol. Pulse-chase metabolic labeling of cells with D-[14C]glucose indicated that the decaprenyl-P-arabinose is an active intermediate in the biosynthesis of the arabinan of cell wall arabinogalactan and arabinomannan. The identification of polyprenyl-P-ribose suggests the existence of ribose-containing polysaccharides in the cell walls of M. smegmatis or/and of a novel epimerase in the D-arabinose biosynthetic pathway. Ethambutol, a powerful anti-tuberculosis drug known to inhibit arabinogalactan and arabinomannan biosynthesis, results in the rapid accumulation of decaprenyl-P-arabinose, indicating that the drug interferes with either the transfer of arabinose from the donor or, alternatively, the synthesis of the arabinose acceptor itself.

摘要

尽管我们对分枝杆菌细胞壁结构的理解取得了重大进展,但对其生物合成却知之甚少,然而它们是许多抗结核药物的作用位点,并且与结核病和麻风病的许多病理过程有关。从耻垢分枝杆菌中分离出了一族单糖基多聚异戊二烯磷酸酯,其中含有阿拉伯糖、核糖和甘露糖。脂质成分的类异戊二烯性质通过1H核磁共振得以确定,快速原子轰击质谱(FAB-MS)证明存在C50癸异戊二烯基-P衍生物以及少量的C35八氢庚异戊二烯基-P产物。分枝杆菌癸异戊二烯醇的构型被确定为单反式、八顺式,表明其载体结构不同寻常。气相色谱(GC)/质谱联用、FAB-MS/MS和1H核磁共振使得能够将一种主要成分表征为β-D-阿拉伯呋喃糖基-1-单磷酸癸异戊二烯醇。用D-[14C]葡萄糖对细胞进行脉冲追踪代谢标记表明,癸异戊二烯基-P-阿拉伯糖是细胞壁阿拉伯半乳聚糖和阿拉伯甘露聚糖阿拉伯聚糖生物合成中的一种活性中间体。聚异戊二烯基-P-核糖的鉴定表明耻垢分枝杆菌细胞壁中存在含核糖的多糖,或者/并且在D-阿拉伯糖生物合成途径中存在一种新型差向异构酶。乙胺丁醇是一种已知能抑制阿拉伯半乳聚糖和阿拉伯甘露聚糖生物合成的强效抗结核药物,它会导致癸异戊二烯基-P-阿拉伯糖迅速积累,这表明该药物要么干扰阿拉伯糖从供体的转移,要么干扰阿拉伯糖受体本身的合成。

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