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配体诱导的大肠杆菌肽脱甲酰基酶结构与动力学变化

Ligand-induced changes in the structure and dynamics of Escherichia coli peptide deformylase.

作者信息

Amero Carlos D, Byerly Douglas W, McElroy Craig A, Simmons Amber, Foster Mark P

机构信息

Biophysics Program, The Ohio StateUniversity, Columbus, Ohio 43210, USA.

出版信息

Biochemistry. 2009 Aug 18;48(32):7595-607. doi: 10.1021/bi900600b.

Abstract

Peptide deformylase (PDF) is an enzyme that is responsible for removing the formyl group from nascently synthesized polypeptides in bacteria, attracting much attention as a potential target for novel antibacterial agents. Efforts to develop potent inhibitors of the enzyme have progressed on the basis of classical medicinal chemistry, combinatorial chemistry, and structural approaches, yet the validity of PDF as an antibacterial target hangs, in part, on the ability of inhibitors to selectively target this enzyme in favor of structurally related metallohydrolases. We have used (15)N NMR spectroscopy and isothermal titration calorimetry to investigate the high-affinity interaction of EcPDF with actinonin, a naturally occurring potent EcPDF inhibitor. Backbone amide chemical shifts, residual dipolar couplings, hydrogen-deuterium exchange, and (15)N relaxation reveal structural and dynamic effects of ligand binding in the immediate vicinity of the ligand-binding site as well as at remote sites. A comparison of the crystal structures of free and actinonin-bound EcPDF with the solution data suggests that most of the consequences of the ligand binding to the protein are lost or obscured during crystallization. The results of these studies improve our understanding of the thermodynamic global minimum and have important implications for structure-based drug design.

摘要

肽脱甲酰基酶(PDF)是一种负责从细菌中新合成的多肽中去除甲酰基的酶,作为新型抗菌剂的潜在靶点备受关注。基于经典药物化学、组合化学和结构方法,开发该酶有效抑制剂的工作取得了进展,但PDF作为抗菌靶点的有效性部分取决于抑制剂能否选择性地靶向该酶,而不影响结构相关的金属水解酶。我们利用(15)N核磁共振光谱和等温滴定量热法研究了EcPDF与放线菌素(一种天然存在的强效EcPDF抑制剂)之间的高亲和力相互作用。主链酰胺化学位移、剩余偶极耦合、氢氘交换和(15)N弛豫揭示了配体结合位点附近以及远程位点处配体结合的结构和动态效应。将游离和结合放线菌素的EcPDF晶体结构与溶液数据进行比较表明,配体与蛋白质结合的大部分结果在结晶过程中丢失或模糊。这些研究结果提高了我们对热力学全局最小值的理解,并对基于结构的药物设计具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0d42/2881472/84c8a3df9be2/nihms199698f1.jpg

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