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Bacterial Superantigen Toxins CD28 and Drug Development

机译:细菌超抗原毒素CD28和药物开发

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摘要

During severe bacterial infections, death and disease are often caused by an overly strong immune response of the human host. Acute toxic shock is induced by superantigen toxins, a diverse set of proteins secreted by Gram-positive staphylococcal and streptococcal bacterial strains that overstimulate the inflammatory response by orders of magnitude. The need to protect from superantigen toxins led to our discovery that in addition to the well-known MHC class II and T cell receptors, the principal costimulatory receptor, CD28, and its constitutively expressed coligand, B7-2 (CD86), previously thought to have only costimulatory function, are actually critical superantigen receptors. Binding of the superantigen into the homodimer interfaces of these costimulatory receptors greatly enhances B7-2/CD28 engagement, leading to excessive pro-inflammatory signaling. This finding led to the design of short receptor dimer interface mimetic peptides that block the binding of superantigen and thus protect from death. It then turned out that such a peptide will protect also from Gram-negative bacterial infection and from polymicrobial sepsis. One such CD28 mimetic peptide is advancing in a Phase 3 clinical trial to protect from lethal wound infections by flesh-eating bacteria. These host-oriented therapeutics target the human immune system itself, rendering pathogens less likely to become resistant.
机译:在严重的细菌感染中,死亡和疾病通常是由于人类宿主的免疫反应过强引起的。急性毒性休克是由超抗原毒素引起的,超抗原毒素是革兰氏阳性葡萄球菌和链球菌细菌菌株分泌的多种蛋白质,它们过度刺激炎症反应达几个数量级。保护免受超抗原毒素的需要导致我们发现,除了众所周知的II类MHC和T细胞受体外,主要的共刺激受体CD28及其组成性表达的大肠菌素B7-2(CD86),以前被认为可以仅具有共刺激功能,实际上是关键的超抗原受体。超抗原结合到这些共刺激受体的同二聚体界面中,大大增强了B7-2 / CD28的结合,导致过度的促炎信号传导。这一发现导致了短受体二聚体界面模拟肽的设计,该肽阻断了超抗原的结合并因此保护了其免于死亡。然后证明,这种肽也将保护免受革兰氏阴性细菌感染和抗微生物败血症。一种这样的CD28模拟肽正在3期临床试验中取得进展,以防止食肉细菌感染致死性伤口感染。这些面向宿主的疗法针对人类免疫系统本身,使病原体变得不太可能具有抗药性。

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