Scientific Computing Research Unit, University of Cape Town, Rondebosch 7701, South Africa.
Carbohydr Res. 2013 Apr 19;371:52-60. doi: 10.1016/j.carres.2013.02.001. Epub 2013 Feb 21.
Here we show that a series of inhibitors, constructed from plumbagin conjugated to a phenyl thioglucoside via an alkyl chain of variable length, are bound in solution-favoured ligand conformations to a mycothiol biosynthetic enzyme MshB, a GlcNAc-Ins deacetylase. The kinetic studies of this ligand series show that MshB is more strongly inhibited as a function of increasing alkyl chain length. While docking studies yielded highest ranked conformations in which the ligands extended along the catalytic site, these conformations produced free energy values prone to large errors and which were inconsistent with experimental kinetic measurements. Solution-favoured conformations of the inhibitors feature a preference for intramolecular aromatic association that results in curled conformations. Free energy perturbation calculations of MshB bound to the inhibitors in the preconfigured solution-favoured curled conformations gave the same binding pattern observed in the kinetic experiments. On investigation of these conformations lodged in the catalytic domain, we found that the selective feature determining their relative binding strength was the result of an optimisation of the dispersion interactions between the ligand aromatic groups phenyl and plumbagin, and the enzyme aromatic groups His144 and Tyr142 respectively. These results show that rather than deform the preferred folded ligand solution conformation, such that the hydrophobic C-2 acyl chain is linearly projected into a buried hydrophobic rich binding cavity adjacent to the active site, MshB binds preconfigured solution inhibitor curled conformations with a preference for aromatic association.
在这里,我们展示了一系列抑制剂,它们通过烷基链将苯并呋喃与苯基硫代葡萄糖苷连接起来,在溶液中以有利于配体的构象与分枝杆菌硫醇生物合成酶 MshB(GlcNAc-Ins 去乙酰化酶)结合。该配体系列的动力学研究表明,MshB 的抑制作用随着烷基链长度的增加而增强。虽然对接研究得到了最高排名的构象,其中配体沿着催化位点延伸,但这些构象产生的自由能值容易出现较大误差,并且与实验动力学测量不一致。抑制剂的溶液有利构象表现出对分子内芳香族缔合的偏好,导致卷曲构象。对抑制剂与 MshB 结合的自由能扰动计算采用预配置的溶液有利卷曲构象,得到了与动力学实验观察到的相同的结合模式。在对这些位于催化域的构象进行研究时,我们发现,决定它们相对结合强度的选择性特征是配体芳环苯和苯并呋喃与酶芳环组氨酸 144 和酪氨酸 142 之间的色散相互作用得到优化的结果。这些结果表明,MshB 优先结合预先配置的溶液抑制剂卷曲构象,而不是使优选折叠的配体溶液构象变形,使得疏水性 C-2 酰基链线性地投射到邻近活性位点的富含疏水性的结合腔中,而是优先与芳香族缔合。