PRABI-LG-Tissue Biology and Therapeutic Engineering Laboratory (LBTI) UMR UCBL CNRS 5305, University of Lyon. 7 Passage du Vercors, CEDEX 07, 69367 Lyon, France.
Pharmaceutical and biological Research Institute (ISPB), CEDEX 07, 69367 Lyon, France.
Int J Mol Sci. 2019 Nov 7;20(22):5556. doi: 10.3390/ijms20225556.
Explosives molecules have been widely used since World War II, leading to considerable contamination of soil and groundwater. Recently, bioremediation has emerged as an environmentally friendly approach to solve such contamination issues. However, the 1,3,5,7-tetranitro-1,3,5,7-tetrazocane (HMX) explosive, which has very low solubility in water, does not provide satisfying results with this approach. In this study, we used a rational design strategy for improving the specificity of the nitroreductase from (PDB ID 5J8G) toward HMX. We used the Coupled Moves algorithm from Rosetta to redesign the active site around HMX. Molecular Dynamics (MD) simulations and affinity calculations allowed us to study the newly designed protein. Five mutations were performed. The designed nitroreductase has a better fit with HMX. We observed more H-bonds, which productively stabilized the HMX molecule for the mutant than for the wild type enzyme. Thus, HMX's nitro groups are close enough to the reductive cofactor to enable a hydride transfer. Also, the HMX affinity for the designed enzyme is better than for the wild type. These results are encouraging. However, the total reduction reaction implies numerous HMX derivatives, and each of them has to be tested to check how far the reaction can' go.
自二战以来,爆炸物分子得到了广泛的应用,导致土壤和地下水受到了严重的污染。最近,生物修复作为一种环保的方法,被用于解决这些污染问题。然而,具有极低水溶性的 1,3,5,7-四硝基-1,3,5,7-四氮杂环辛烷(HMX)爆炸物,用这种方法并不能得到令人满意的结果。在本研究中,我们使用了一种合理的设计策略来提高硝基还原酶对 HMX 的特异性(PDB ID 5J8G)。我们使用 Rosetta 的 Coupled Moves 算法来重新设计 HMX 周围的活性位点。分子动力学(MD)模拟和亲和力计算使我们能够研究新设计的蛋白质。进行了五次突变。设计的硝基还原酶与 HMX 的结合更好。我们观察到更多的氢键,使突变体有效地稳定了 HMX 分子,而野生型酶则没有。因此,HMX 的硝基基团足够接近还原辅因子,从而能够进行氢化物转移。此外,设计的酶对 HMX 的亲和力优于野生型酶。这些结果令人鼓舞。然而,总还原反应意味着有许多 HMX 衍生物,需要对每一种进行测试,以检查反应能进行到多远。