All-atoms molecular dynamics study to screen potent efflux pump inhibitors against KpnE protein of Klebsiella pneumoniae

被引:1
作者
Dey, Suchanda [1 ]
Rout, Madhusmita [2 ]
Pati, Sanghamitra [2 ]
Singh, Mahender Kumar [3 ]
Dehury, Budheswar [2 ]
Subudhi, Enketeswara [1 ]
机构
[1] Siksha O Anusandhan Deemed Univ, Biom & Biodivers lab, Bhubaneswar, Orissa, India
[2] ICMR Reg Med Res Ctr, Bioinformat Div, Nalco Sq, Bhubaneswar, Orissa, India
[3] Natl Brain Res Ctr, Data Sci Lab, Gurgaon, Haryana, India
关键词
Klebsiella pneumoniae; molecular docking simulation; lipid bilayers; drug repurposing; MULTIDRUG TRANSPORTER; ESCHERICHIA-COLI; EMRE; RESISTANCE; INSIGHTS; SIMULATIONS; GLUTAMATE; SOFTWARE; DATABASE; DOCKING;
D O I
10.1080/07391102.2023.2214232
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The Small Multidrug Resistance efflux pump protein KpnE, plays a pivotal role in multi-drug resistance in Klebsiella pneumoniae. Despite well-documented study of its close homolog, EmrE, from Escherichia coli, the mechanism of drug binding to KpnE remains obscure due to the absence of a high-resolution experimental structure. Herein, we exclusively elucidate its structure-function mechanism and report some of the potent inhibitors through drug repurposing. We used molecular dynamics simulation to develop a dimeric structure of KpnE and explore its dynamics in lipid-mimetic bilayers. Our study identified both semi-open and open conformations of KpnE, highlighting its importance in transport process. Electrostatic surface potential map suggests a considerable degree of similarity between KpnE and EmrE at the binding cleft, mostly occupied by negatively charged residues. We identify key amino acids Glu14, Trp63 and Tyr44, indispensable for ligand recognition. Molecular docking and binding free energy calculations recognizes potential inhibitors like acarbose, rutin and labetalol. Further validations are needed to confirm the therapeutic role of these compounds. Altogether, our membrane dynamics study uncovers the crucial charged patches, lipid-binding sites and flexible loop that could potentiate substrate recognition, transport mechanism and pave the way for development of novel inhibitors against K. pneumoniae.Communicated by Ramaswamy H. Sarma
引用
收藏
页码:3492 / 3506
页数:15
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