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超抗原:免疫应答的悖论

Superantigens, a Paradox of the Immune Response.

机构信息

Cátedra de Inmunología-IDEHU (UBA-CONICET), Facultad de Farmacia y Bioquímica, Universidad de Buenos Aires, Junín 956 4 Piso, Ciudad Autónoma de Buenos Aires 1113, Argentina.

出版信息

Toxins (Basel). 2022 Nov 18;14(11):800. doi: 10.3390/toxins14110800.

Abstract

Staphylococcal enterotoxins are a wide family of bacterial exotoxins with the capacity to activate as much as 20% of the host T cells, which is why they were called superantigens. Superantigens (SAgs) can cause multiple diseases in humans and cattle, ranging from mild to life-threatening infections. Almost all isolates encode at least one of these toxins, though there is no complete knowledge about how their production is triggered. One of the main problems with the available evidence for these toxins is that most studies have been conducted with a few superantigens; however, the resulting characteristics are attributed to the whole group. Although these toxins share homology and a two-domain structure organization, the similarity ratio varies from 20 to 89% among different SAgs, implying wide heterogeneity. Furthermore, every attempt to structurally classify these proteins has failed to answer differential biological functionalities. Taking these concerns into account, it might not be appropriate to extrapolate all the information that is currently available to every staphylococcal SAg. Here, we aimed to gather the available information about all staphylococcal SAgs, considering their functions and pathogenicity, their ability to interact with the immune system as well as their capacity to be used as immunotherapeutic agents, resembling the two faces of Dr. Jekyll and Mr. Hyde.

摘要

葡萄球菌肠毒素是一个广泛的细菌外毒素家族,具有激活多达 20%宿主 T 细胞的能力,这就是它们被称为超抗原的原因。超抗原(SAg)可导致人类和牛只患上多种疾病,从轻度到危及生命的感染不等。尽管人们对这些毒素的产生机制还没有完全了解,但几乎所有的葡萄球菌分离株都至少编码一种此类毒素。目前这些毒素的证据存在的主要问题之一是,大多数研究都是用少数几种超抗原进行的;然而,由此产生的特征归因于整个超抗原家族。尽管这些毒素具有同源性和双结构域结构组织,但不同 SAg 之间的相似性比例从 20%到 89%不等,这意味着存在广泛的异质性。此外,试图对这些蛋白质进行结构分类也未能回答其不同的生物学功能。考虑到这些问题,目前现有的所有关于葡萄球菌 SAg 的信息可能并不适用于所有葡萄球菌 SAg。在这里,我们旨在收集有关所有葡萄球菌 SAg 的现有信息,考虑它们的功能和致病性、与免疫系统相互作用的能力以及将它们用作免疫治疗剂的能力,就像杰基尔博士和海德先生的两面一样。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/233d/9692936/b11b5d037f59/toxins-14-00800-g001.jpg

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