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Keeping track of the growing number of biological functions of chitin and its interaction partners in biomedical research

机译:跟踪甲壳素及其相互作用伙伴在生物医学研究中日益增长的生物学功能

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摘要

Chitin is a vital polysaccharide component of protective structures in many eukaryotic organisms but seems absent in vertebrates. Chitin or chitin oligomers are therefore prime candidates for non-self-molecules, which are recognized and degraded by the vertebrate immune system. Despite the absence of polymeric chitin in vertebrates, chitinases and chitinase-like proteins (CLPs) are well conserved in vertebrate species. In many studies, these proteins have been found to be involved in immune regulation and in mediating the degradation of chitinous external protective structures of invading pathogens. Several important aspects of chitin immunostimulation have recently been uncovered, advancing our understanding of the complex regulatory mechanisms that chitin mediates. Likewise, the last few years have seen large advances in our understanding of the mechanisms and molecular interactions of chitinases and CLPs in relation to immune response regulation. It is becoming increasingly clear that their function in this context is not exclusive to chitin producing pathogens, but includes bacterial infections and cancer signaling as well. Here we provide an overview of the immune signaling properties of chitin and other closely related biomolecules. We also review the latest literature on chitinases and CLPs of the GH18 family. Finally, we examine the existing literature on zebrafish chitinases, and propose the use of zebrafish as a versatile model to complement the existing murine models. This could especially be of benefit to the exploration of the function of chitinases in infectious diseases using high-throughput approaches and pharmaceutical interventions.
机译:几丁质是许多真核生物中保护结构的重要多糖成分,但在脊椎动物中似乎不存在。因此,几丁质或几丁质低聚物是非自身分子的主要候选物,它们被脊椎动物的免疫系统识别并降解。尽管在脊椎动物中不存在聚合甲壳质,但在脊椎动物中,几丁质酶和几丁质酶样蛋白(CLP)的保守性很高。在许多研究中,已发现这些蛋白质参与免疫调节并介导入侵病原体的几丁质外部保护结构的降解。最近发现了几丁质免疫刺激的几个重要方面,加深了我们对几丁质介导的复杂调控机制的理解。同样,最近几年,在我们对几丁质酶和CLP与免疫反应调节相关的机制和分子相互作用的理解上,取得了长足的进步。越来越清楚的是,在这种情况下,它们的功能不仅限于产生几丁质的病原体,还包括细菌感染和癌症信号传导。在这里,我们提供了几丁质和其他密切相关的生物分子的免疫信号传导特性的概述。我们还回顾了有关GH18家族的几丁质酶和CLP的最新文献。最后,我们研究了斑马鱼几丁质酶的现有文献,并提出将斑马鱼用作通用模型以补充现有的鼠模型。使用高通量方法和药物干预措施,对于探索几丁质酶在传染病中的功能尤其有益。

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