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耻垢分枝杆菌中主要形式的聚异戊二烯磷酸甘露糖的分离与鉴定

Isolation and characterization of the major form of polyprenyl-phospho-mannose from Mycobacterium smegmatis.

作者信息

Wolucka B A, de Hoffmann E

机构信息

Department of Applied Chemistry and Bioindustries and Department of Chemistry, University of Louvain, Louvain, Belgium.

出版信息

Glycobiology. 1998 Oct;8(10):955-62. doi: 10.1093/glycob/8.10.955.

Abstract

We isolated from the endogenous polyprenyl-phospho-sugar pool of Mycobacterium smegmatis two mannose-containing compounds, i.e., a partially saturated C35-octahydroheptaprenyl-P-mannose and a fully unsaturated C50-decaprenyl-P-mannose. The relative amount of C35-polyprenyl-P-mannose in mycobacterial cells was comparable to that of decaprenyl- P-pentoses and, at least, an order of magnitude higher than that of C50-decaprenyl-P-mannose. The major form of mycobacterial polyprenyl-P-mannose was structurally characterized by combined gas chromatography-mass spectrometry, fast-atom bombardment tandem mass spectrometry and proton-nuclear magnetic resonance spectroscopy as beta-d-mannopyranosyl-monophospho-(C35)octahydroheptapren ol of which all three isoprene units have Z ( cis ) configuration. The differences in the structure and cellular concentrations of the mycobacterial mannosyl-P-polyprenols reflect distinct biochemical pathways of the two compounds and suggest the existence of specific GDP-Man:polyprenyl-P mannosyltransferases (synthetases) able to distinguish between C35-octahydroheptaprenyl- and C50-decaprenyl- phosphates of mycobacteria. Since the 6'-O-mycoloylated form of C35-octahydroheptaprenyl-P-mannose isolated from M. smegmatis is apparently involved in mycolate rather than mannosyl transfer reactions, we speculate that a catabolic pathway responsible for degradation of C35-P-mannose and recycling C35-octahydroheptaprenyl phosphate might exist in mycobacteria.

摘要

我们从耻垢分枝杆菌的内源性多聚异戊二烯磷酸糖池中分离出两种含甘露糖的化合物,即部分饱和的C35 - 八氢庚基 - P - 甘露糖和完全不饱和的C50 - 癸基 - P - 甘露糖。分枝杆菌细胞中C35 - 多聚异戊二烯 - P - 甘露糖的相对含量与癸基 - P - 戊糖相当,并且至少比C50 - 癸基 - P - 甘露糖高一个数量级。通过气相色谱 - 质谱联用、快原子轰击串联质谱和质子核磁共振光谱对分枝杆菌多聚异戊二烯 - P - 甘露糖的主要形式进行结构表征,结果表明其为β - D - 甘露吡喃糖基 - 单磷酸 - (C35)八氢庚醇,其中所有三个异戊二烯单元均具有Z(顺式)构型。分枝杆菌甘露糖基 - P - 多聚异戊二烯醇在结构和细胞浓度上的差异反映了这两种化合物不同的生化途径,并提示存在能够区分分枝杆菌C35 - 八氢庚基 - 和C50 - 癸基 - 磷酸的特异性GDP - 甘露糖:多聚异戊二烯 - P - 甘露糖基转移酶(合成酶)。由于从耻垢分枝杆菌中分离出的C35 - 八氢庚基 - P - 甘露糖的6'-O - 霉菌酰化形式显然参与霉菌酸而非甘露糖基转移反应,我们推测分枝杆菌中可能存在负责降解C35 - P - 甘露糖并回收C35 - 八氢庚基磷酸的分解代谢途径。

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