Ozen Can, Malek Joseph M, Serpersu Engin H
Graduate School of Genome Science and Technology, The University of Tennessee and Oak Ridge National Laboratories, Knoxville, Tennessee 37996, USA.
J Am Chem Soc. 2006 Nov 29;128(47):15248-54. doi: 10.1021/ja0643220.
In this work, for the first time, we report pKa values of the amino functions in a target-bound aminoglycoside antibiotic, which permitted dissection of the thermodynamic properties of an enzyme-aminoglycoside complex. Uniformly enriched 15N-neomycin was isolated from cultures of Streptomyces fradiae and used to study its binding to the aminoglycoside phosphotransferase(3')-IIIa (APH) by 15N NMR spectroscopy. 15N NMR studies showed that binding of neomycin to APH causes upshifts of approximately 1 pKa unit for the amines N2' and N2' '' while N6' experienced a 0.3 pKa unit shift. The pKa of N6' '' remained unaltered, and resonances of N1 and N3 showed significant broadening upon binding to the enzyme. The binding-linked protonation and pH dependence of the association constant (Kb) for the enzyme-aminoglycoside complex was determined by isothermal titration calorimetry. The enthalpy of binding became more favorable (negative) with increasing pH. At high pH, binding-linked protonation was attributable mostly to the amino functions of neomycin; however, at neutral pH, functional groups of the enzyme, possibly remote from the active site, also underwent protonation/deprotonation upon formation of the binary enzyme-neomycin complex. The Kb for the enzyme-neomycin complex showed a complicated dependence on pH, indicating that multiple interactions may affect the affinity of the ligand to the enzyme and altered conditions, such as pH, may favor one or another. This work highlights the importance of determining thermodynamic parameters of aminoglycoside-target interactions under different conditions before making attributions to specific sites and their effects on these global parameters.
在本研究中,我们首次报道了目标结合型氨基糖苷类抗生素中氨基官能团的pKa值,这使得剖析酶 - 氨基糖苷复合物的热力学性质成为可能。从弗氏链霉菌培养物中分离出均匀富集的15N - 新霉素,并通过15N NMR光谱研究其与氨基糖苷磷酸转移酶(3') - IIIa (APH)的结合。15N NMR研究表明,新霉素与APH的结合导致胺基N2'和N2'''的pKa值上移约1个单位,而N6'的pKa值移动了0.3个单位。N6'''的pKa值保持不变,并且N1和N3的共振在与酶结合时显示出明显变宽。通过等温滴定量热法测定了酶 - 氨基糖苷复合物的结合关联质子化和缔合常数(Kb)的pH依赖性。随着pH升高,结合焓变得更有利(负值)。在高pH下,结合关联质子化主要归因于新霉素的氨基官能团;然而,在中性pH下,酶的官能团,可能远离活性位点,在二元酶 - 新霉素复合物形成时也经历了质子化/去质子化。酶 - 新霉素复合物的Kb对pH表现出复杂的依赖性,表明多种相互作用可能影响配体与酶的亲和力,并且改变条件(如pH)可能有利于其中一种或另一种相互作用。这项工作强调了在将特定位点及其对这些全局参数的影响归因之前,在不同条件下测定氨基糖苷 - 靶点相互作用的热力学参数的重要性。