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Solving the riddle: Unraveling the mechanisms of blocking the binding of leukotoxin by therapeutic antagonists in periodontal diseases

机译:解决谜语:解开阻断白酮毒素的致毒剂在牙周病中阻断白酮毒素的结合

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Abstract Aggregatibacter actinomycetemcomitans is a Gram‐negative bacteria that has gained wide recognition for its causative role in the development of various immune diseases, which includes localized aggressive periodontitis. Its ability to evade host defense mechanisms is mediated by the secretion of leukotoxin (LtxA), which induces death of white blood cells (leukocytes) by specific binding to their surface‐expressed leukocyte function–associated receptor (LFA‐1) in its active state. Therapeutic compounds that interfere with this pathogenic process and abrogate A. actinomycetemcomitans virulence have been reported in literature. These include doxycycline, and more recently phytochemical compounds such as hamamelitanin, resveratrol, naringin, and quercetin. However, the question remains how do they work? Therefore, with the aid of computational tools, we explore the molecular mechanisms by which they possibly elicit their therapeutic functions. Molecular mechanics Poisson/Boltzmann surface area analyses revealed that these compounds bind favorably to active LFA‐1 with high affinity and considerable stability, indicative of their ability to occupy the LtxA binding site (LBS) and prevent LtxA binding. The conformational transition of open LFA‐1 to its closed state further describe the mechanistic activity of these compounds. In addition to notable reductions in structural mobility and flexibility, the burial of surface‐exposed interactive side chains at the LBS was observed, an occurrence that could alter the complementary binding of LtxA. It is also important to mention that these occurrences were induced more prominently by the phytochemicals. We believe that these findings will enhance the scope of drug design and discovery for potent LtxA antagonists with improved activities and therapeutic efficacies in the treatment of virulent A. actinomycetemcomitans diseases.
机译:摘要Algregatibacter actinomycetem10是一种革兰氏阴性细菌,对其各种免疫疾病的发展中的致病作用越来越广泛,包括局部侵略性牙周炎。其逃避宿主防御机制的能力是由白酮毒素(LTXA)的分泌介导的,该毒素(LTXA)在其活性状态下通过与其表面表达的白细胞功能相关的受体(LFA-1)的特异性结合来诱导白细胞(白细胞)死亡。在文献中据报道,干扰该致病过程和废除A. actinomycetemcoNs毒力的治疗化合物。这些包括十二胞环素,更近最近的植物化合物,如Hamamelitanin,白藜芦醇,柚皮素和槲皮素。但是,问题仍然是他们如何工作?因此,借助计算工具,我们探讨了他们可能引起其治疗功能的分子机制。分子力学泊松/博尔兹曼表面区域分析显示,这些化合物有利地与活性LFA-1具有高亲和力和相当大的稳定性,表明它们能够占据LTXA结合位点(LBS)并防止LTXA结合能力。开放LFA-1的构象过渡到其关闭状态进一步描述了这些化合物的机械活性。除了显着降低结构迁移率和灵活性之外,观察到LBS的表面暴露的相互动物侧链的墓穴,可能改变LTXA的互补结合的发生。提及这些发生的植物化学症也令人欣然诱导。我们认为,这些调查结果将提高有效LTXA拮抗剂的药物设计和发现范围,具有改善的活性和治疗毒性A.毒性A.致癌症的治疗疗效。

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