首页> 外文期刊>Journal of the American Chemical Society >STRUCTURE, CONFORMATION, AND PROBABLE MECHANISM OF HYDROLYSIS OF A SPIN-LABELED PENICILLIN REVEALED BY ELECTRON NUCLEAR DOUBLE RESONANCE SPECTROSCOPY
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STRUCTURE, CONFORMATION, AND PROBABLE MECHANISM OF HYDROLYSIS OF A SPIN-LABELED PENICILLIN REVEALED BY ELECTRON NUCLEAR DOUBLE RESONANCE SPECTROSCOPY

机译:电子核双共振光谱显示自旋青霉素的结构,构型和可能的水解机理

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A spin-labeled penicillin derivative has been synthesized by acylation of the amino nitrogen of 6-aminopenicillanic acid with the nitroxyl spin-label 2,2,5,5-tetramethyl-1-oxypyrroline-3-carboxylic acid and has been characterized by chemical methods. With Bacillus cereus beta-lactamase I, the steady-state kinetic parameters k(cat) approximate to 1810 s(-1) and K-M approximate to 118 x 10(-6) M at 22 degrees C and pH 7 showed that this paramagnetic substrate probe is as kinetically specific and catalytically reactive as is the classical substrate benzylpenicillin. From analysis of electron nuclear double resonance (ENDOR) spectra, the principal hyperfine coupling (hfc) components of specific protons in the fused beta-lactam and thiazolidine ring were determined. The dipolar hfc components yielded electron-proton separations between the unpaired electron on the nitroxyl group and protons in the penicillin moiety. The conformation of the spin-labeled penicillin was determined on the basis of torsion angle search calculations constrained by ENDOR-determined distances. The ENDOR-assigned conformation of the spin-labeled penicillin is almost identical to the X-ray-defined structure of amoxycillin (Boles, M. O.; et al. Acta Crystallogr., Sect. B 1978, 34, 461-466). We have also determined by ENDOR the location of a methanol molecule that is hydrogen-bonded to the amide NH group, coinciding almost exactly with the position of a similarly hydrogen-bonded water molecule in the X-ray structure of amoxycillin. The location of the hydroxyl group of the methanol molecule, restricted to the ''endo'' side of the beta-lactam ring on the basis of ENDOR distance constraints, appears as if it were poised for nucleophilic attack on the carbonyl carbon of the beta-lactam. This observation is important with respect to the mechanism of hydrolysis of beta-lactams because ''endo'' attack of a fused beta-lactam compared to ''exo'' attack is considered to be hindered sterically but favored stereoelectronically. [References: 45]
机译:通过将6-氨基青霉酸的氨基氮与硝基氧基自旋标记的2,2,5,5-四甲基-1-氧基吡咯啉-3-羧酸酰化,合成了自旋标记的青霉素衍生物。方法。使用蜡样芽孢杆菌β-内酰胺酶I,在22摄氏度和pH值为7的稳态动力学参数k(cat)约为1810 s(-1),而KM约为118 x 10(-6)M,表明该顺磁性底物探针与经典底物苄青霉素一样具有动力学特异性和催化活性。通过电子核双共振(ENDOR)光谱分析,确定了融合的β-内酰胺和噻唑烷环中特定质子的主要超精细偶联(hfc)成分。偶极hfc组分在硝酰基基团的未配对电子与青霉素部分的质子之间产生电子-质子分离。自旋标记的青霉素的构象是根据受ENDOR确定的距离限制的扭转角搜索计算确定的。旋转标记的青霉素的ENDOR分配的构象与阿莫西林的X射线确定的结构几乎相同(Boles,M.O .;等,Acta Crystallogr。,Bect.B 1978,34,461-466)。我们还通过ENDOR确定了氢键合到酰胺NH基团上的甲醇分子的位置,几乎与阿莫西林的X射线结构中类似的氢键合水分子的位置一致。基于ENDOR距离限制,甲醇分子的羟基位置限制在β-内酰胺环的“内”侧,似乎似乎准备好对β的羰基碳进行亲核攻击-内酰胺该观察对于β-内酰胺的水解机理是重要的,因为与β-内攻击相比,融合β-内酰胺的“内”攻击在空间上是受阻的,但在立体电子学上是有利的。 [参考:45]

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