首页> 美国卫生研究院文献>Toxins >Impact of the Nature and Size of the Polymeric Backbone on the Ability of Heterobifunctional Ligands to Mediate Shiga Toxin and Serum Amyloid P Component Ternary Complex Formation
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Impact of the Nature and Size of the Polymeric Backbone on the Ability of Heterobifunctional Ligands to Mediate Shiga Toxin and Serum Amyloid P Component Ternary Complex Formation

机译:聚合物骨架的性质和大小对异双功能配体介导志贺毒素和血清淀粉样P组分三元复合物形成能力的影响。

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摘要

Inhibition of AB5-type bacterial toxins can be achieved by heterobifunctional ligands (BAITs) that mediate assembly of supramolecular complexes involving the toxin’s pentameric cell membrane-binding subunit and an endogenous protein, serum amyloid P component, of the innate immune system. Effective in vivo protection from Shiga toxin Type 1 (Stx1) is achieved by polymer-bound, heterobifunctional inhibitors-adaptors (PolyBAITs), which exhibit prolonged half-life in circulation and by mediating formation of face-to-face SAP-AB5 complexes, block receptor recognition sites and redirect toxins to the spleen and liver for degradation. Direct correlation between solid-phase activity and protective dose of PolyBAITs both in the cytotoxicity assay and in vivo indicate that the mechanism of protection from intoxication is inhibition of toxin binding to the host cell membrane. The polymeric scaffold influences the activity not only by clustering active binding fragments but also by sterically interfering with the supramolecular complex assembly. Thus, inhibitors based on N-(2-hydroxypropyl) methacrylamide (HPMA) show significantly lower activity than polyacrylamide-based analogs. The detrimental steric effect can partially be alleviated by extending the length of the spacer, which separates pendant ligand from the backbone, as well as extending the spacer, which spans the distance between binding moieties within each heterobifunctional ligand. Herein we report that polymer size and payload of the active ligand had moderate effects on the inhibitor’s activity.
机译:抑制AB5型细菌毒素可以通过异双功能配体(BAIT)来实现,该介导的超分子复合物的组装涉及毒素的五聚体细胞膜结合亚基和先天免疫系统的内源性蛋白质(血清淀粉样蛋白P成分)。聚合物结合的异双功能抑制剂-适配器(PolyBAITs)可以有效保护体内免受志贺毒素1型(Stx1)侵害,该适配器具有延长的循环半衰期并介导了面对面的SAP-AB5复合物的形成,阻断受体识别位点,并将毒素重新导向脾脏和肝脏进行降解。在细胞毒性测定和体内,固相活性和PolyBAITs的保护剂量之间的直接相关性表明,防止中毒的机制是抑制毒素与宿主细胞膜的结合。聚合物支架不仅通过聚集活性结合片段而影响活性,而且还通过空间干扰超分子复合物组装而影响活性。因此,与基于聚丙烯酰胺的类似物相比,基于N-(2-羟丙基)甲基丙烯酰胺(HPMA)的抑制剂显示出明显更低的活性。通过延长间隔子的长度(将侧链配体与主链分开),以及延长间隔子(其跨每个异双功能配体中结合部分之间的距离),可以部分减轻有害的空间效应。在此我们报道活性配体的聚合物大小和有效载荷对抑制剂的活性有中等影响。

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