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抑制外源3-脱氧-D-甘露糖辛酮酸掺入经甲苯处理的鼠伤寒沙门氏菌细胞的脂多糖A前体中。

Inhibition of exogenous 3-deoxy-D-manno-octulosonate incorporation into lipid A precursor of toluene-treated Salmonella typhimurium cells.

作者信息

Capobianco J O, Darveau R P, Goldman R C, Lartey P A, Pernet A G

出版信息

J Bacteriol. 1987 Sep;169(9):4030-5. doi: 10.1128/jb.169.9.4030-4035.1987.

Abstract

Analogs of 3-deoxy-D-manno-octulosonate (KDO) were designed to inhibit CTP:CMP-KDO cytidylyltransferase (CMP-KDO synthetase). Since these analogs lacked whole-cell antibacterial activity, a permeabilized-cell method was developed to measure intracellular compound activity directly. The method employed a mutant of Salmonella typhimurium defective in KDO-8-phosphate synthetase (kdsA), which accumulated lipid A precursor at 42 degrees C. Cells permeabilized with 1% toluene were used to evaluate inhibitor effect on [3H]KDO incorporation into preformed lipid A precursor. KDO incorporation proceeded through the enzymes CMP-KDO synthetase and CMP-KDO:lipid A KDO transferase. Optimum KDO incorporation occurred between pH 8 and 9 and required CTP, prior lipid A precursor accumulation, and a functional kdsB gene product, CMP-KDO synthetase. The apparent Km for KDO in this coupled system at pH 7.6 was 1.38 mM. The reaction products isolated and characterized contained 1 and 2 KDO residues per lipid A precursor molecule. Several KDO analogs produced concentration-related reductions of KDO incorporation in toluenized cells with 50% inhibitory concentrations comparable to those obtained in purified CMP-KDO synthetase systems. Two compounds, 8-amino-2-deoxy-KDO (A-60478) and 8-aminomethyl-2-deoxy-KDO (A-60821), competitively inhibited KDO incorporation, displaying Kis of 4.2 microM for A-60478 and 2.5 microM for A-60821. These data indicated that the inactivity of the KDO analogs on intact bacteria was the result of poor permeation into cells rather than intracellular inactivation.

摘要

设计3-脱氧-D-甘露糖辛酮酸(KDO)类似物以抑制CTP:CMP-KDO胞苷酰转移酶(CMP-KDO合成酶)。由于这些类似物缺乏全细胞抗菌活性,因此开发了一种透化细胞方法来直接测量细胞内化合物活性。该方法采用鼠伤寒沙门氏菌中KDO-8-磷酸合成酶(kdsA)缺陷的突变体,其在42℃下积累脂质A前体。用1%甲苯透化的细胞用于评估抑制剂对[3H]KDO掺入预先形成的脂质A前体的影响。KDO掺入通过CMP-KDO合成酶和CMP-KDO:脂质A KDO转移酶进行。最佳KDO掺入发生在pH 8至9之间,需要CTP、预先积累的脂质A前体以及功能性kdsB基因产物CMP-KDO合成酶。在pH 7.6时,该偶联系统中KDO的表观Km为1.38 mM。分离并表征的反应产物每个脂质A前体分子含有1个和2个KDO残基。几种KDO类似物在甲苯处理的细胞中产生与浓度相关的KDO掺入减少,其50%抑制浓度与在纯化的CMP-KDO合成酶系统中获得的浓度相当。两种化合物,8-氨基-2-脱氧-KDO(A-60478)和8-氨甲基-2-脱氧-KDO(A-60821),竞争性抑制KDO掺入,A-60478的Ki为4.2 microM, A-60821的Ki为2.5 microM。这些数据表明,KDO类似物对完整细菌无活性是细胞渗透不良而非细胞内失活的结果。

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