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Assessment of Methylthioadenosine/S-Adenosylhomocysteine Nucleosidases of Borrelia Burgdorferi as Targets for Novel Antimicrobials Using a Novel High-Throughput Method

机译:使用新型高通量方法评估博氏疏螺旋体的甲硫基腺苷/ S-腺苷同型半胱氨酸核糖核酸酶作为新型抗生素的靶标

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摘要

Background: Lyme disease is the most prevalent tick-borne disease in the USA with the highest number of cases (27444 patients) reported by CDC in the year 2007, representing an unprecedented 37% increase from the previous year. The haematogenous spread of Borrelia burgdorferi to various tissues results in multisystemic disease affecting the heart, joints, skin, musculoskeletal and nervous system of the patients.Objectives: Although Lyme disease can be effectively treated with doxycycline, amoxicillin and cefuroxime axetil, discovery of novel drugs will benefit the patients intolerant to these drugs and potentially those suffering from chronic Lyme disease that is refractory to these agents and to macrolides. In this study, we have explored 50-methylthioadenosine/S-adenosylhomocysteine nucleosidase as a drug target for B. burgdorferi, which uniquely possesses three genes expressing homologous enzymes with two of these proteins apparently exported.Methods: The recombinant B. burgdorferi Bgp and Pfs proteins were first used for the kinetic analysis of enzymatic activity with both substrates and with four inhibitors. We then determined the antispirochaetal activity of these compounds using a novel technique. The method involved detection of the live–dead B. burgdorferi by fluorometric analysis after staining with a fluorescent nucleic acids stain mixture containing Hoechst 33342 and Sytox Green.Results: Our results indicate that this method can be used for high-throughput screening of novel antimicrobials against bacteria. The inhibitors formycin A and 5u27-ρ-nitrophenythioadenosine particularly affected B. burgdorferi adversely on prolonged treatment.Conclusions: On the basis of our analysis, we expect that structure-based modification of the inhibitors can be employed to develop highly effective novel antibiotics against Lyme spirochaetes.
机译:背景:莱姆病是美国最常见的tick传疾病,CDC在2007年报告的病例数最高(27444例),比上一年增长了空前的37%。博氏疏螺旋体在血液上的扩散会扩散到各种组织,从而导致影响患者心脏,关节,皮肤,肌肉骨骼和神经系统的多系统疾病。目的:尽管强力霉素,阿莫西林和头孢呋辛酯可以有效治疗莱姆病,但新药的发现将使对这些药物不耐受的患者以及可能对这些药物和大环内酯类药物难治的慢性莱姆病患者受益。在这项研究中,我们探索了50-甲基硫代腺苷/ S-腺苷同型半胱氨酸核苷酸酶作为B.burgdorferi的药物靶标,该B.burgdorferi独特地拥有三个表达同源酶的基因,其中显然有两个蛋白质输出。方法:重组B.burgdorferi Bgp和Pfs蛋白质首先用于底物和四种抑制剂的酶活性的动力学分析。然后,我们使用一种新颖的技术确定了这些化合物的抗气胸活性。该方法涉及在用含有Hoechst 33342和Sytox Green的荧光核酸染料混合物染色后,通过荧光分析法检测活死的B. burgdorferi。结果:我们的结果表明,该方法可用于高通量筛选新型抗菌剂。对抗细菌。甲霉素A和5 u27-ρ-硝基苯并噻吩腺苷的抑制剂在长期治疗中对B. burgdorferi尤其有害。结论:根据我们的分析,我们期望基于结构的抑制剂修饰可用于开发高效新型抗生素反对莱姆螺旋藻。

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