靶向奇异变形杆菌BAM复合蛋白开发新型抗生素

Raphael Abban, Sarpong Kwabena, Samuel Duodu, Lydia Mosi, Isawumi Abiola
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引用次数: 0

摘要

尿路感染是常见的医院获得性感染,大肠杆菌和奇异变形杆菌占并发症尿路感染的90%。耐多药细菌(MDR)的出现使尿路感染的治疗复杂化。与奇异杆菌相关的尿路感染与尿路结石的产生和导尿管患者的长期感染有关。奇异单胞杆菌和其他泌尿系统病原体构成了一个很大程度上未被探索的病原体群。由于其不渗透的外膜(OM),病原体对大多数抗生素具有耐药性。β-桶式组装机折叠插入外膜蛋白;然而,目前临床上还没有针对OM集合体的抗生素。因此,本研究旨在寻找能够抑制P. mirabilis B复合物蛋白活性的药物,并确定其对P. mirabilis OM生物发生的影响。这将通过使用基于计算机的硅筛选和基于细胞的测定来筛选针对P. mirabilis Bam复合物的批准药物来实现。首先,将使用对接算法确定药物对P. mirabilis B复合体蛋白的结合作用。从计算机分析中选择的药物的抗菌和抗毒活性将对耐多药奇异杆菌进行筛选。最后,利用肽核酸(PNA)测定活性药物对野生型和突变型奇异假单胞菌OM生物发生的影响。Western lot分析将用于确定参与OM生物发生的蛋白质的丰度。本研究的成功完成将有助于鉴定抗耐多药奇异单胞杆菌的新型抗生素及其相关机制,同时为未来对其他泌尿系统病原体的研究奠定基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Targeting Proteus mirabilis BAM Complex Proteins for Development of Novel Antibiotics
Urinary tract infections (UTIs) are frequent hospital-acquired infection, with Escherichia coli and Proteus mirabilis accounting for 90% of complicated UTIs. Emergence of multidrug-resistant (MDR) bacteria have complicated the treatment UTIs. P. mirabilis related UTIs has been associated with the production of urinary stones and long-term infections in patients with catheters. P. mirabilis and other uropathogens constitute a largely unexplored pathogen group. The pathogen is resistant to most antibiotics as a result of its impermeable outer membrane (OM). The β-barrel assemble machinery folds and inserts outer membrane proteins; however, there are no antibiotics targeting the OM assemble in clinical use currently. Therefore, this study seeks to identify drugs that will inhibit the activity of P. mirabilis B complex proteins and also determine their effects on P. mirabilis OM biogenesis. This would be achieved by screening approved drugs against the P. mirabilis Bam complex using computer-based in silico screening and cellular-based assays. First, the binding effects of drugs on P. mirabilis B complex proteins will be determined using docking algorithms. The antimicrobial and antivirulence activity of selected drugs from in silico analysis will be screened against MDR P. mirabilis . Finally, the effect of active drug(s) on the OM biogenesis of wild-type P. mirabilis and mutant P. mirabilis will be determined using peptide nucleic acids (PNA). Western lot analysis will be used to determine the abundance of proteins involved in OM biogenesis. Successful completion of this study will lead to the identification of novel antibiotics against MDR P. mirabilis and associated mechanisms while providing the foundation for future research endeavours on other uropathogens.
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