Aamir Mohd, Singh Vinay Kumar, Dubey Manish Kumar, Meena Mukesh, Kashyap Sarvesh Pratap, Katari Sudheer Kumar, Upadhyay Ram Sanmukh, Umamaheswari Amineni, Singh Surendra
Laboratory of Mycopathology and Microbial Technology, Centre of Advanced Study in Botany, Institute of Science, Banaras Hindu University, Varanasi, India.
Centre for Bioinformatics, School of Biotechnology, Institute of Science, Banaras Hindu University, Varanasi, India.
Front Pharmacol. 2018 Oct 22;9:1038. doi: 10.3389/fphar.2018.01038. eCollection 2018.
Vascular wilt of tomato caused by f.sp. (FOL) is one of the most devastating diseases, that delimits the tomato production worldwide. Fungal short-chain dehydrogenases/reductases (SDRs) are NADP(H) dependent oxidoreductases, having shared motifs and common functional mechanism, have been demonstrated as biochemical targets for commercial fungicides. The 1,3,6,8 tetra hydroxynaphthalene reductase (T4HNR) protein, a member of SDRs family, catalyzes the naphthol reduction reaction in fungal melanin biosynthesis. We retrieved an orthologous member of T4HNR, (complexed with NADP(H) and pyroquilon from ) in the FOL (namely; FOXG_04696) based on homology search, percent identity and sequence similarity (93% query cover; 49% identity). The hypothetical protein FOXG_04696 (T4HNR like) had conserved T-G-X-X-X-G-X-G motif (cofactor binding site) at N-terminus, similar to (1JA9) and Y-X-X-X-K motif, as a part of the active site, bearing homologies with two fungal keto reductases T4HNR () and 17-β-hydroxysteroid dehydrogenase from (teleomorph: PDB ID: 3IS3). The catalytic tetrad of T4HNR was replaced with ASN, SER, TYR, and LYS in the FOXG_04696. The structural alignment and superposition of FOXG_04696 over the template proteins (3IS3 and 1JA9) revealed minimum RMSD deviations of the C alpha atomic coordinates, and therefore, had structural conservation. The best protein model (FOXG_04696) was docked with 37 fungicides, to evaluate their binding affinities. The Glide XP and YASARA docked complexes showed discrepancies in results, for scoring and ranking the binding affinities of fungicides. The docked complexes were further refined and rescored from their docked poses through 50 ns long MD simulations, and binding free energies (ΔG) calculations, using MM/GBSA analysis, revealed Oxathiapiprolin and Famoxadone as better fungicides among the selected one. However, Famoxadone had better interaction of the docked residues, with best protein ligand contacts, minimum RMSD (high accuracy of the docking pose) and RMSF (structural integrity and conformational flexibility of docking) at the specified docking site. The Famoxadone was found to be acceptable based on toxicity and growth inhibition assessment. We conclude that the FOXG_04696, could be employed as a novel candidate protein, for structure-based design, and screening of target fungicides against the FOL pathogen.
由番茄尖镰孢菌古巴专化型(FOL)引起的番茄维管束萎蔫病是最具毁灭性的病害之一,限制了全球番茄产量。真菌短链脱氢酶/还原酶(SDRs)是依赖NADP(H)的氧化还原酶,具有共同的基序和功能机制,已被证明是商业杀菌剂的生化靶点。1,3,6,8-四羟基萘还原酶(T4HNR)蛋白是SDRs家族的成员,催化真菌黑色素生物合成中的萘酚还原反应。我们基于同源性搜索、百分比一致性和序列相似性(查询覆盖率93%;一致性49%),在FOL中检索到T4HNR的一个直系同源成员(与NADP(H)和咯喹酮复合)(即:FOXG_04696)。假定蛋白FOXG_04696(类T4HNR)在N端具有保守的T-G-X-X-X-G-X-G基序(辅因子结合位点),类似于(1JA9)和Y-X-X-X-K基序,作为活性位点的一部分,与两种真菌酮还原酶T4HNR()和来自(有性型:PDB ID:3IS3)的17-β-羟基类固醇脱氢酶具有同源性。在FOXG_04696中,T4HNR的催化四联体被天冬酰胺、丝氨酸、酪氨酸和赖氨酸取代。FOXG_04696在模板蛋白(3IS3和1JA9)上的结构比对和叠加显示Cα原子坐标的均方根偏差最小,因此具有结构保守性。最佳蛋白模型(FOXG_04696)与37种杀菌剂进行对接,以评估它们的结合亲和力。Glide XP和YASARA对接复合物在杀菌剂结合亲和力的评分和排名结果上存在差异。对接复合物通过50 ns长的分子动力学模拟从其对接构象进一步优化并重评分,使用MM/GBSA分析计算的结合自由能(ΔG)显示,在所选杀菌剂中,恶唑菌酮和噁唑菌酰胺是更好的杀菌剂。然而,噁唑菌酰胺与对接残基的相互作用更好,在指定对接位点具有最佳的蛋白-配体接触、最小的均方根偏差(对接构象的高精度)和均方根波动(对接的结构完整性和构象灵活性)。基于毒性和生长抑制评估,噁唑菌酰胺被认为是可接受的。我们得出结论,FOXG_04696可作为一种新型候选蛋白,用于基于结构的设计以及筛选针对FOL病原体的目标杀菌剂。