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Mechanistic insights of SrtA-LPXTG blockers targeting the transpeptidase mechanism in Streptococcus mutans

机译:针对变形链球菌中转肽酶机制的SrtA-LPXTG阻滞剂的机理研究

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Streptococcus mutans has been chiefly involved as the major etiological agent of dental caries and adherence to the tooth surface for dental plaque formation, occurring through cysteine transpeptidase sortase A (SrtA) mediated covalent anchoring of surface proteins. SrtA recognizes the LPXTG sequence substrate located in the C-terminus of surface proteins and also acts as a decisive therapeutic target for the development of novel antimicrobial agents. Recent experimental studies have defined the role of fully conserved Leu and Pro residues of the LPXTG substrate in modulating the dynamics of the SrtA structure. Therefore, in the present work, we have examined the invariant Leu residue of the substrate with a view to understand its role in altering the dynamics of the enzyme substrate complex structure using molecular dynamic simulations and energy calculation methods. The results revealed that the Leu residue of the substrate appears to play the crucial role in anchoring and directing the conformational transition of the enzyme. In addition, we have identified the potential lead compounds which target the Leu residue of the substrate as peptide blockers to impede SrtA-mediated transpeptidation reaction. Hence, this approach provides a new platform for therapeutic drug targeting and the rational design of inhibitors against bacterial infections.
机译:变形链球菌主要作为龋齿的主要病因,并通过半胱氨酸转肽酶分选酶A(SrtA)介导的表面蛋白共价锚定而粘附于牙齿表面形成牙菌斑。 SrtA识别位于表面蛋白C末端的LPXTG序列底物,并且还充当开发新型抗菌剂的决定性治疗靶标。最近的实验研究已经定义了LPXTG底物的完全保守的Leu和Pro残基在调节SrtA结构动力学中的作用。因此,在目前的工作中,我们研究了底物的恒定Leu残基,以了解其在利用分子动力学模拟和能量计算方法改变酶底物复杂结构动力学方面的作用。结果表明,底物的Leu残基似乎在锚定和指导酶的构象转变中起关键作用。此外,我们已经确定了靶向底物Leu残基的潜在先导化合物作为肽阻滞剂,以阻止SrtA介导的转肽反应。因此,该方法为靶向治疗药物和合理设计抗细菌感染的抑制剂提供了新平台。

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