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异烟肼对金黄色分枝杆菌敏感株和耐药株细胞提取物合成分枝菌酸的抑制作用。

Isoniazid inhibition of mycolic acid synthesis by cell extracts of sensitive and resistant strains of Mycobacterium aurum.

作者信息

Quémard A, Lacave C, Lanéelle G

机构信息

Centre de Biochimie et de Génétique Cellulaires du Centre National de la Recherche Scientifique, Toulouse, France.

出版信息

Antimicrob Agents Chemother. 1991 Jun;35(6):1035-9. doi: 10.1128/AAC.35.6.1035.

Abstract

Isonicotinic acid hydrazide (isoniazid; INH) inhibition of mycolic acid synthesis was studied by using cell extracts from both INH-sensitive and -resistant strains of Mycobacterium aurum. The cell extract of the INH-sensitive strain was inhibited by INH, while the preparation from the INH-resistant strain was not. This showed that the INH resistance of mycolic acid synthesis was not due to a difference in drug uptake or the level of peroxidase activity (similar in both extracts). As INH did not induce accumulation of any labeled intermediates, it is postulated that the drug acts either on production of labeled chain elongation precursors of mycolic acids or an early step of this elongation. The level of inhibition was not changed by addition of NAD or nicotinamide; thus, INH does not act on mycolic acid synthesis as an NAD antimetabolite. Benzoic or acetic acid hydrazides and known or postulated metabolites of INH (i.e., the corresponding acid, aldehyde, or alcohol) were not inhibitors of cell-free mycolic acid synthesis; the complete structure of INH was required, as already known for inhibition of mycobacterial culture growth. Extracts prepared from INH-treated cells showed reduced mycolic acid synthesis, and the inhibition level was not modified by either extensive dialysis or pyridoxal phosphate. This latter molecule efficiently antagonized INH action by reacting rapidly with INH, as shown by differential spectroscopy. Moreover, pyridoxal phosphate did not release inhibition of INH-treated extracts. It is proposed that INH may covalently react with an essential component of the mycolic acid synthesis system.

摘要

通过使用来自对异烟肼敏感和耐药的金黄色分枝杆菌菌株的细胞提取物,研究了异烟酸肼(异烟肼;INH)对分枝菌酸合成的抑制作用。INH敏感菌株的细胞提取物受到INH的抑制,而耐药菌株的提取物则不受抑制。这表明分枝菌酸合成的INH耐药性不是由于药物摄取差异或过氧化物酶活性水平(两种提取物中相似)。由于INH没有诱导任何标记中间体的积累,推测该药物要么作用于分枝菌酸标记链延长前体的产生,要么作用于该延长的早期步骤。添加NAD或烟酰胺不会改变抑制水平;因此,INH不作为NAD抗代谢物作用于分枝菌酸合成。苯甲酸或乙酸肼以及INH的已知或推测代谢物(即相应的酸、醛或醇)不是无细胞分枝菌酸合成的抑制剂;需要INH的完整结构,这在抑制分枝杆菌培养生长方面已为人所知。从经INH处理的细胞制备的提取物显示分枝菌酸合成减少,并且抑制水平不会因广泛透析或磷酸吡哆醛而改变。如差示光谱所示,后一种分子通过与INH快速反应有效地拮抗INH的作用。此外,磷酸吡哆醛不会解除对INH处理提取物的抑制。有人提出INH可能与分枝菌酸合成系统的一种必需成分发生共价反应。

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本文引用的文献

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Mycolic acid synthesis by Mycobacterium aurum cell-free extracts.
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