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分枝杆菌中的磷脂酰肌醇合成

Phosphatidylinositol synthesis in mycobacteria.

作者信息

Salman M, Lonsdale J T, Besra G S, Brennan P J

机构信息

SmithKline Beecham Pharmaceuticals, Collegeville, PA 19426, USA.

出版信息

Biochim Biophys Acta. 1999 Jan 4;1436(3):437-50. doi: 10.1016/s0005-2760(98)00151-9.

Abstract

The metabolism and synthesis of an important mycobacterial lipid component, phosphatidylinositol (PI), and its metabolites, was studied in Mycobacterium smegmatis and M. smegmatis subcellular fractions. Little is known about the synthesis of PI in prokaryotic cells. Only a cell wall fraction (P60) in M. smegmatis was shown to possess PI synthase activity. Product was identified as PI by migration on TLC, treatment with phospholipase C and ion exchange chromatography. PI was the only major product (92.3%) when both cells and P60 fraction were labeled with [3H]inositol. Also, a neutral lipid inositol-containing product (4.1% of the total label) was identified in the P60 preparations. Strangely, PI synthase substrates, CDP-dipalmitoyl-DAG and CDP-NBD-DAG, added to the assay did not stimulate [3H]PI and NBD-PI yield by M. smegmatis. At the same time, addition of both substrates to rat liver and Saccharomyces cerevisiae PI synthase assays resulted in an increase in the product yield. Upon addition of CHAPS to the mycobacterial PI synthase assay, both substrates were utilized in a dose-dependent manner for the synthesis of NBD-PI and [3H]PI. These results demonstrate a strict substrate specificity of mycobacterial PI synthase toward endogenous substrates. K(m) of the enzyme toward inositol was shown to be 25 microM; Mg2+ stimulated the enzyme to a greater degree than Mn2+. Structural analogs of myo-inositol, epi-inositol and scyllo-inositol and Zn2+ were shown to be more potent inhibitors of mycobacterial PI synthase than of mammalian analogs. Lack of sequence homology with mammalian PI synthases, different kinetic characteristics, existence of selective inhibitors and an important physiological role in mycobacteria, suggest that PI synthase may be a good potential target for antituberculosis therapy.

摘要

在耻垢分枝杆菌及其亚细胞组分中,对一种重要的分枝杆菌脂质成分磷脂酰肌醇(PI)及其代谢产物的代谢和合成进行了研究。关于原核细胞中PI的合成知之甚少。在耻垢分枝杆菌中,仅细胞壁组分(P60)显示具有PI合成酶活性。通过薄层层析迁移、用磷脂酶C处理和离子交换色谱法,产物被鉴定为PI。当细胞和P60组分都用[3H]肌醇标记时,PI是唯一的主要产物(92.3%)。此外,在P60制剂中鉴定出一种含中性脂质的肌醇产物(占总标记物的4.1%)。奇怪的是,添加到测定中的PI合成酶底物CDP - 二棕榈酰 - DAG和CDP - NBD - DAG并未刺激耻垢分枝杆菌产生[3H]PI和NBD - PI。同时,将这两种底物添加到大鼠肝脏和酿酒酵母的PI合成酶测定中会导致产物产量增加。在分枝杆菌PI合成酶测定中添加CHAPS后,两种底物都以剂量依赖方式用于合成NBD - PI和[3H]PI。这些结果证明了分枝杆菌PI合成酶对内源底物具有严格的底物特异性。该酶对肌醇的K(m)值显示为25 microM;Mg2+比Mn2+更能刺激该酶。肌醇的结构类似物表肌醇和 scyllo - 肌醇以及Zn2+被证明是分枝杆菌PI合成酶比哺乳动物类似物更有效的抑制剂。与哺乳动物PI合成酶缺乏序列同源性、不同的动力学特征、存在选择性抑制剂以及在分枝杆菌中的重要生理作用,表明PI合成酶可能是抗结核治疗的一个良好潜在靶点。

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