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首页> 外文期刊>Microbiology >Structures of the glycopeptidolipid antigens of Mycobacterium abscessus and Mycobacterium chelonae and possible chemical basis of the serological cross-reactions in the Mycobacterium fortuitum complex
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Structures of the glycopeptidolipid antigens of Mycobacterium abscessus and Mycobacterium chelonae and possible chemical basis of the serological cross-reactions in the Mycobacterium fortuitum complex

机译:分枝杆菌的糖肽抗原抗原的结构和细胞分枝杆菌和血管杆菌复合物中的血清学交叉反应的可能化学基础

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Mycobacterium abscessus and Mycobacterium chelonae, two members of the Mycobacterium fortuitum complex, contain five major glycolipids. A combination of NMR spectroscopy, fast atom bombardment mass spectrometry and chemical degradation was used to elucidate their structures. All the compounds belong to the family of glycopeptidolipids. A 6-deoxy-α-l-talosyl unit, which may bear one or two acetyl groups, invariably occupies the site of glycosylation on the threonine residue in the various compounds. A 3,4-di-O-methyl- or 2,3,4-tri-O-methyl-α-l-rhamnosyl unit modifies the alaninol end of the diglycosylated molecules. Both species also contain a multiglycosylated compound consisting of -α-l-rhamnosyl-(1 → 2)-3,4-di-O-methyl-α-l-rhamnosyl linked to alaninol, which belongs to the class of new variants of glycopeptidolipids recently described. Using an ELISA, the latter glycolipid as well as the diglycosylated ones (not previously reported to be antigenic), were shown to react with the serum raised against the whole lipid antigens of M. chelonae. A comparative serologic study of the native and chemically modified glycopeptidolipid antigens allowed the identification of their epitope as the 3,4-di-O-methyl-α-l-rhamnosyl residue. Similar experiments conducted on the glycopeptidolipids isolated from the serologically cross-reacting species M. peregrinum led to the conclusion that the epitope identified in M. chelonae and M. abscessus was involved in the cross-reactions and demonstrated the existence of a second haptenic moiety in the glycolipids of M. peregrinum, the 3-O-methyl-α-l-rhamnosyl unit. In addition to this latter non-shared epitope, the recently described sulfated glycopeptidolipid antigen of M. peregrinum did not react with the M. chelonae serum, thus further explaining the difference in the seroreactivity within the complex.
机译:分枝杆菌脓肿和细胞分枝杆菌,两种重组复合体的两个成员含有五种主要糖脂。使用NMR光谱,快速原子轰击质谱和化学降解的组合来阐明它们的结构。所有化合物都属于糖肽的家族。可以承受一个或两个乙酰基的6-脱氧-α-L-缩放基单元总是占据各种化合物中苏氨酸残基上的糖基化位点。 3,4-甲基 - 甲基-或2,3,4-三-1-甲基-α-L- rhamnosyl单元改变了二糖基化分子的丙氨酸末端。两种物种还含有多糖基化化合物,由与丙氨酸连接的-α-L- r酚糖基 - (1→2)-3,4-Di-O-甲基-α-L- rhamnosyl组成,这属于新变种的类别糖肽脂脂脂最近描述。使用ELISA,后者糖脂以及二糖基化的(未据报道为抗原性),被证明与抑制在C.Chelonae的整个脂质抗原饲养的血清反应。对本地和化学改性的糖肽抗原的比较血清学研究允许鉴定其表位作为3,4-偶-甲基-α-L- rham溶解渣。在从血管交叉反应物种M. Peregrinum中分离的糖肽脂脂的类似实验导致了在副反应中鉴定在M. Chelonae和M.脓肿中鉴定的表位参与交叉反应,并证明了第二个Hapton in中的存在Peregrinum,3-O-甲基-α-L- rhamnosyl单元的糖脂。除了这种后一种非共用表位之外,最近描述的M. Peregrinum的硫酸化糖肽抗原并未与M. Chelonae血清反应,从而进一步解释了复合物中的血液中的激光率的差异。

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