From an Hsp90 - binding protein to a peptide drug.

microLife Pub Date : 2023-01-01 DOI:10.1093/femsml/uqac023
Aparna Viswanathan Ammanath, Anders Jarneborn, Minh-Thu Nguyen, Laura Wessling, Paula Tribelli, Mulugeta Nega, Christian Beck, Arif Luqman, Khaled A Selim, Hubert Kalbacher, Boris Macek, Sandra Beer Hammer, Tao Jin, Friedrich Götz
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引用次数: 1

Abstract

The Lpl proteins represent a class of lipoproteins that was first described in the opportunistic bacterial pathogen Staphylococcus aureus, where they contribute to pathogenicity by enhancing F-actin levels of host epithelial cells and thereby increasing S. aureus internalization. The model Lpl protein, Lpl1 was shown to interact with the human heat shock proteins Hsp90α and Hsp90ß, suggesting that this interaction may trigger all observed activities. Here we synthesized Lpl1-derived peptides of different lengths and identified two overlapping peptides, namely, L13 and L15, which interacted with Hsp90α. Unlike Lpl1, the two peptides not only decreased F-actin levels and S. aureus internalization in epithelial cells but they also decreased phagocytosis by human CD14+ monocytes. The well-known Hsp90 inhibitor, geldanamycin, showed a similar effect. The peptides not only interacted directly with Hsp90α, but also with the mother protein Lpl1. While L15 and L13 significantly decreased lethality of S. aureus bacteremia in an insect model, geldanamycin did not. In a mouse bacteremia model L15 was found to significantly decreased weight loss and lethality. Although the molecular bases of the L15 effect is still elusive, in vitro data indicate that simultaneous treatment of host immune cells with L15 or L13 and S. aureus significantly increase IL-6 production. L15 and L13 represent not antibiotics but they cause a significant reduction in virulence of multidrug-resistant S. aureus strains in in vivo models. In this capacity, they can be an important drug alone or additive with other agents.

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从热休克蛋白90结合蛋白到多肽药物。
Lpl蛋白代表一类脂蛋白,首次在机会性细菌病原体金黄色葡萄球菌中被描述,它们通过提高宿主上皮细胞的f -肌动蛋白水平,从而增加金黄色葡萄球菌的内化,从而促进致病性。模型Lpl蛋白Lpl1被证明与人热休克蛋白Hsp90α和Hsp90ß相互作用,表明这种相互作用可能触发所有观察到的活性。本文合成了不同长度的lpl1衍生肽,并鉴定出与Hsp90α相互作用的两个重叠肽L13和L15。与Lpl1不同,这两种肽不仅降低了上皮细胞中的F-actin水平和金黄色葡萄球菌的内化,而且还降低了人CD14+单核细胞的吞噬作用。众所周知的Hsp90抑制剂格尔达霉素也显示出类似的效果。这些肽不仅能直接与Hsp90α相互作用,还能与母蛋白Lpl1相互作用。虽然L15和L13在昆虫模型中显著降低金黄色葡萄球菌菌血症的致死率,但格尔达霉素没有。在小鼠菌血症模型中,发现L15显著降低体重减轻和死亡率。尽管L15作用的分子基础尚不清楚,但体外数据表明,L15或L13与金黄色葡萄球菌同时处理宿主免疫细胞可显著增加IL-6的产生。L15和L13不代表抗生素,但它们在体内模型中显著降低了耐多药金黄色葡萄球菌菌株的毒力。在这种情况下,它们可以是一种重要的药物单独或与其他药物的添加剂。
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