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靶向革兰氏阴性菌中脂多糖A生物合成的抗菌剂。含锌结合基序的底物类似物对多种UDP-3-O-(r-3-羟基十四酰基)-N-乙酰葡糖胺脱乙酰酶的抑制作用。

Antibacterial agents that target lipid A biosynthesis in gram-negative bacteria. Inhibition of diverse UDP-3-O-(r-3-hydroxymyristoyl)-n-acetylglucosamine deacetylases by substrate analogs containing zinc binding motifs.

作者信息

Jackman J E, Fierke C A, Tumey L N, Pirrung M, Uchiyama T, Tahir S H, Hindsgaul O, Raetz C R

机构信息

Department of Biochemistry, Duke University Medical Center, Durham, North Carolina 27710, USA.

出版信息

J Biol Chem. 2000 Apr 14;275(15):11002-9. doi: 10.1074/jbc.275.15.11002.

Abstract

UDP-3-O-(R-3-hydroxymyristoyl)-N-acetylglucosamine deacetylase (LpxC) catalyzes the second step in the biosynthesis of lipid A, a unique amphiphilic molecule found in the outer membranes of virtually all Gram-negative bacteria. Since lipid A biosynthesis is required for bacterial growth, inhibitors of LpxC have potential utility as antibiotics. The enzymes of lipid A biosynthesis, including LpxC, are encoded by single copy genes in all sequenced Gram-negative genomes. We have now cloned, overexpressed, and purified LpxC from the hyperthermophile Aquifex aeolicus. This heat-stable LpxC variant (the most divergent of all known LpxCs) displays 32% identity and 51% similarity over 277 amino acid residues out of the 305 in Escherichia coli LpxC. Although A. aeolicus LpxC deacetylates the substrate UDP-3-O-(R-3-hydroxymyristoyl)-N-acetylglucosamine at a rate comparable with E. coli LpxC, a phenyloxazoline-based hydroxamate that inhibits E. coli LpxC with K(i) of approximately 50 nM (Onishi, H. R., Pelak, B. A., Gerckens, L. S., Silver, L. L., Kahan, F. M., Chen, M. H., Patchett, A. A., Galloway, S. M., Hyland, S. A., Anderson, M. S., and Raetz, C. R. H. (1996) Science 274, 980-982) does not inhibit A. aeolicus LpxC. To determine whether or not broad-spectrum deacetylase inhibitors can be found, we have designed a new class of hydroxamate-containing inhibitors of LpxC, starting with the structure of the physiological substrate. Several of these compounds inhibit both E. coli and A. aeolicus LpxC at similar concentrations. We have also identified a phosphinate-containing substrate analog that inhibits both E. coli and A. aeolicus LpxC, suggesting that the LpxC reaction proceeds by a mechanism similar to that described for other zinc metalloamidases, like carboxypeptidase A and thermolysin. The differences between the phenyloxazoline and the substrate-based LpxC inhibitors might be exploited for developing novel antibiotics targeted either against some or all Gram-negative strains. We suggest that LpxC inhibitors with antibacterial activity be termed "deacetylins."

摘要

UDP-3-O-(R-3-羟基肉豆蔻酰基)-N-乙酰葡糖胺脱乙酰酶(LpxC)催化脂多糖A生物合成的第二步,脂多糖A是一种独特的两亲分子,几乎存在于所有革兰氏阴性菌的外膜中。由于细菌生长需要脂多糖A的生物合成,LpxC抑制剂具有作为抗生素的潜在用途。脂多糖A生物合成的酶,包括LpxC,在所有已测序的革兰氏阴性菌基因组中均由单拷贝基因编码。我们现已从嗜热栖热菌中克隆、过量表达并纯化了LpxC。这种热稳定的LpxC变体(所有已知LpxC中差异最大的)与大肠杆菌LpxC的305个氨基酸残基中的277个相比,具有32%的同一性和51%的相似性。尽管嗜热栖热菌LpxC以与大肠杆菌LpxC相当的速率使底物UDP-3-O-(R-3-羟基肉豆蔻酰基)-N-乙酰葡糖胺脱乙酰,但一种基于苯基恶唑啉的异羟肟酸酯,其对大肠杆菌LpxC的抑制常数K(i)约为50 nM(大西弘人、佩拉克、格肯斯等人,《科学》,1996年,第274卷,第980 - 982页),却不抑制嗜热栖热菌LpxC。为了确定是否能找到广谱脱乙酰酶抑制剂,我们从生理底物的结构出发,设计了一类新的含异羟肟酸酯的LpxC抑制剂。其中几种化合物在相似浓度下能同时抑制大肠杆菌和嗜热栖热菌的LpxC。我们还鉴定出一种含次膦酸酯的底物类似物,它能同时抑制大肠杆菌和嗜热栖热菌的LpxC,这表明LpxC反应的机制与其他锌金属酰胺酶(如羧肽酶A和嗜热菌蛋白酶)所描述的机制相似。苯基恶唑啉与基于底物的LpxC抑制剂之间的差异可用于开发针对部分或所有革兰氏阴性菌株的新型抗生素。我们建议将具有抗菌活性的LpxC抑制剂称为“脱乙酰菌素”。

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