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蛋白质构象动力学是嗜热酶选择性识别底物类似物的基础。

Protein Conformational Dynamics Underlie Selective Recognition of Thermophilic over Mesophilic Enzyme I by a Substrate Analogue.

机构信息

Department of Chemistry, Iowa State University, Ames, IA 50011, USA.

Roy J. Carver Department of Biochemistry, Biophysics and Molecular Biology, Iowa State University, Ames, IA 50011, USA.

出版信息

Biomolecules. 2023 Jan 12;13(1):160. doi: 10.3390/biom13010160.

Abstract

Substrate selectivity is an important preventive measure to decrease the possibility of cross interactions between enzymes and metabolites that share structural similarities. In addition, understanding the mechanisms that determine selectivity towards a particular substrate increases the knowledge base for designing specific inhibitors for target enzymes. Here, we combine NMR, molecular dynamics (MD) simulations, and protein engineering to investigate how two substrate analogues, allylicphosphonate (cPEP) and sulfoenolpyruvate (SEP), recognize the mesophilic (eEIC) and thermophilic (tEIC) homologues of the receptor domain of bacterial Enzyme I, which has been proposed as a target for antimicrobial research. Chemical Shift Perturbation (CSP) experiments show that cPEP and SEP recognize tEIC over the mesophilic homologue. Combined Principal Component Analysis of half-microsecond-long MD simulations reveals that incomplete quenching of a breathing motion in the eEIC-ligand complex destabilizes the interaction and makes the investigated substrate analogues selective toward the thermophilic enzyme. Our results indicate that residual protein motions need to be considered carefully when optimizing small molecule inhibitors of EI. In general, our work demonstrates that protein conformational dynamics can be exploited in the rational design and optimization of inhibitors with subfamily selectivity.

摘要

底物选择性是减少酶和具有结构相似性的代谢物之间交叉相互作用可能性的重要预防措施。此外,了解决定对特定底物选择性的机制可以增加为靶酶设计特定抑制剂的知识库。在这里,我们结合 NMR、分子动力学 (MD) 模拟和蛋白质工程来研究两种底物类似物,烯丙基膦酸酯 (cPEP) 和磺基烯醇丙酮酸 (SEP),如何识别细菌酶 I 的受体结构域的嗜温和嗜热同系物,该酶已被提议作为抗菌研究的目标。化学位移扰动 (CSP) 实验表明,cPEP 和 SEP 识别热稳定同系物而不是嗜温同系物。半微秒长 MD 模拟的主成分分析表明,eEIC-配体复合物中呼吸运动的不完全猝灭会使相互作用不稳定,并使研究的底物类似物对热稳定酶具有选择性。我们的结果表明,在优化 EI 的小分子抑制剂时,需要仔细考虑残留的蛋白质运动。总的来说,我们的工作表明,蛋白质构象动力学可以在具有亚家族选择性的抑制剂的合理设计和优化中得到利用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/68f7/9856155/cea44d51f862/biomolecules-13-00160-g001.jpg

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