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Search for non-lactam inhibitors of mtb β-lactamase led to its open shape in apo state: new concept for antibiotic design

机译:寻求mtbβ-内酰胺酶的非内酰胺抑制剂导致其在apo状态下呈开放形状:抗生素设计的新概念

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摘要

Mtb β-lactamase (BlaC) is extremely efficient in hydrolyzing ß-lactam antibiotics which renders/leads to protection and/or resistance to this bug. There is a compelling need to develop new non-lactam inhibitors which can bind and inhibit BlaC, but cannot be hydrolyzed, thus neutralizing this survival mechanism of Mtb. Using the crystal structure of BlaC we screened 750000 purchasable compounds from ZINC Database for their theoretical affinity to the enzyme’s active site. 32 of the best hits of the compounds having tetra-, tri- and thiadi-azole moiety were tested in vitro, and 4 efficiently inhibited the enzymatic activity of recombinant BlaC. Characterization of the shape of BlaC−/+ inhibitors by small angle X-ray scattering (SAXS) brought forth that BlaC adopts: (1) an open shape (radius of gyration of 2.3 nm compared to 1.9 nm of crystal structures) in solution; (2) closed shape similar to observed crystal structure(s) in presence of effective inhibitor; and (3) a closed shape which opens up when a hydrolysable inhibitor is present in solution. New BlaC inhibitors were: 1-(4-(pyridin-3-yl)-thiazol-2-ylamino)-2-(7,8,9-triaza-bicyclo[4.3.0]nona-1(6),2,4,8-tetraen-7-yl)-ethanone; 8-butyl-3-((5-(pyridin-2-yl)-4H-1,2,4-triazol-3-ylamino)-formyl)-8-aza-bicyclo[4.3.0]nona-1(6),2,4-triene-7,9-dione; 1-(3-((5-(5-bromo-thiophen-2-yl)-1,3,4-oxadiazol-2-yl)-methoxy)-phenyl)-1H-1,2,3,4-tetraazole; and 1-(2,3-dimethyl-phenylamino)-2-(2-(1-(2-methoxy-5-methyl-phenyl)-1H-1,2,3,4-tetraazol-5-ylsulfanyl)-acetylamino)-ethanone. The open-close shape of BlaC questions the physiological significance of the closed shape known for BlaC−/+ inhibitors and paves new path for structure aided design of novel inhibitors.
机译:Mtbβ-内酰胺酶(BlaC)在水解ß-内酰胺抗生素方面非常有效,从而可以/导致对这种小虫的保护和/或抗性。迫切需要开发可以结合和抑制BlaC但不能被水解从而中和Mtb的这种生存机制的新型非内酰胺抑制剂。利用BlaC的晶体结构,我们从ZINC数据库中筛选了75万种可购买的化合物,这些化合物对酶的活性位点具有理论亲和力。具有四,三和噻二唑部分的化合物的最佳命中值中的32种在体外进行了测试,其中4种有效抑制了重组BlaC的酶促活性。通过小角度X射线散射(SAXS)对BlaC-/ +抑制剂的形状进行表征,得出BlaC采用的是:(1)溶液中的开放形状(回转半径为2.3 nm,而晶体结构为1.9 nm); (2)在有效抑制剂存在下类似于观察到的晶体结构的闭合形状; (3)当溶液中存在可水解抑制剂时打开的闭合形状。新的BlaC抑制剂是:1-(4-(吡啶-3-基)-噻唑-2-基氨基)-2-(7,8,9-三氮杂双环[4.3.0] nona-1(6),2 ,4,8-四烯-7-基)-乙酮; 8-丁基-3-((5-(吡啶-2-基)-4H-1,2,4-三唑-3-基氨基)-甲酰基)-8-氮杂-双环[4.3.0] nona-1( 6),2,4-三烯-7,9-二酮; 1-(3-((5-(5-溴-噻吩-2-基)-1,3,4-恶二唑-2-基)-甲氧基)-苯基)-1H-1,2,3,4-四唑和1-(2,3-二甲基-苯基氨基)-2-(2-(1-(1-(2-甲氧基-5-甲基-苯基)-1H-1,2,3,4-四唑-5-基硫烷基)-乙酰氨基)-乙酮。 BlaC的开闭形状质疑BlaC-/ +抑制剂已知的闭合形状的生理学意义,并为新型抑制剂的结构辅助设计铺平了新道路。

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