Irfan Muhammad, Tariq Muhammad, Basharat Zarrin, Abid Khan Rao Muhammad, Jahanzaeb Muhammad, Shakeel Muhammad, Nisa Zaib Un, Shahzad Mohsin, Jahanzaib Muhammad, Moin Syed Tarique, Hassan Syed Shah, Khan Ishtiaq Ahmad
Jamil-ur-Rahman Center for Genome Research, Dr. Panjwani Center for Molecular Medicine and Drug Research, International Center for Chemical and Biological Sciences, University of Karachi, Karachi-75270, Pakistan.
Third World Center for Science and Technology, H.E.J. Research Institute of Chemistry, International Center for Chemical and Biological Sciences, University of Karachi, Karachi-75270, Pakistan.
Res Microbiol. 2023 Jan-Feb;174(1-2):103990. doi: 10.1016/j.resmic.2022.103990. Epub 2022 Sep 8.
Chrysobacterium indologenes is an emerging MDR pathogen that belongs to the family Flavobacteriaceae. The genome of the C. indologenes, isolated from the nephrotic patient, was sequenced through Illumina MiSeq. The pangenomics of available 56 C. indologenes strains using BPGA revealed an open pangenome (n=5553 CDS), core genome (2141), and accessory genome (2013). The CEG/DEG database identified 662 essential genes that drastically reduced to 68 genes after non-homology analyses towards human and gut microbiome. Further filtering the data for other drug target prioritizing parameters resulted in 32 putative targets. Keeping in view the crucial role played in cell wall biosynthesis, dacB was selected as the final target that encodes D-alanyl-d-alanine carboxypeptidase/endopeptidase (DD-peptidase). The 3D structure of dacB was modelled and rendered to docking analyses against two compound libraries of African plants (n=6842) and Tibetan medicines (n=52). The ADMET profiling exhibited the physicochemical properties of final compounds. The MD simulations showed the stability of inhibitor-DD-peptidase complex and interactions in terms of RMSD, RMSF, binding free energy calculation and H-bonding. We propose that the novel compounds Leptopene and ZINC95486338 from our findings might be potent DD-peptidase inhibitors that could aid in the development of new antibiotic-resistant therapy for the emerging MDR C. indologenes.
产吲哚金黄杆菌是一种新兴的多重耐药病原体,属于黄杆菌科。从肾病患者中分离出的产吲哚金黄杆菌基因组通过Illumina MiSeq进行测序。使用BPGA对56株产吲哚金黄杆菌菌株进行泛基因组分析,结果显示其开放泛基因组(5553个编码序列)、核心基因组(2141个)和辅助基因组(2013个)。CEG/DEG数据库鉴定出662个必需基因,在对人类和肠道微生物群进行非同源性分析后,这些基因大幅减少至68个。进一步根据其他药物靶点优先排序参数对数据进行筛选,得到32个假定靶点。鉴于dacB在细胞壁生物合成中发挥的关键作用,选择其作为最终靶点,它编码D-丙氨酰-D-丙氨酸羧肽酶/内肽酶(DD-肽酶)。对dacB的三维结构进行建模,并针对两个非洲植物化合物库(6842种)和藏药化合物库(52种)进行对接分析。ADMET分析展示了最终化合物的物理化学性质。分子动力学模拟显示了抑制剂-DD-肽酶复合物的稳定性以及在均方根偏差、均方根波动、结合自由能计算和氢键方面的相互作用。我们提出,根据我们的研究结果,新型化合物Leptopene和ZINC95486338可能是有效的DD-肽酶抑制剂,有助于为新兴的多重耐药产吲哚金黄杆菌开发新的抗耐药治疗方法。