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首页> 外文期刊>FEMS Microbiology Reviews >Fungal ribotoxins: molecular dissection of a family of natural killers
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Fungal ribotoxins: molecular dissection of a family of natural killers

机译:真菌核毒素:自然杀手家族的分子解剖

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RNase T1 is the best known representative of a large family of ribonucleolytic proteins secreted by fungi, mostly Aspergillus and Penicillium species. Ribotoxins stand out among them by their cytotoxic character. They exert their toxic action by first entering the cells and then cleaving a single phosphodiester bond located within a universally conserved sequence of the large rRNA gene, known as the sarcin-ricin loop. This cleavage leads to inhibition of protein biosynthesis, followed by cellular death by apoptosis. Although no protein receptor has been found for ribotoxins, they preferentially kill cells showing altered membrane permeability, such as those that are infected with virus or transformed. Many steps of the cytotoxic process have been elucidated at the molecular level by means of a variety of methodological approaches and the construction and purification of different mutant versions of these ribotoxins. Ribotoxins have been used for the construction of immunotoxins, because of their cytotoxicity. Besides this activity, Aspf1, a ribotoxin produced by Aspergillus fumigatus, has been shown to be one of the major allergens involved in allergic aspergillosis-related pathologies. Protein engineering and peptide synthesis have been used in order to understand the basis of these pathogenic mechanisms as well as to produce hypoallergenic proteins with potential diagnostic and immunotherapeutic applications.
机译:RNase T1是真菌分泌的核糖核酸溶解蛋白大家族的最著名代表,大多数是曲霉和青霉菌。核糖毒素以其细胞毒性特征而脱颖而出。它们首先进入细胞,然后裂解位于大rRNA基因普遍保守序列(称为sarcin-ricin环)内的单个磷酸二酯键,发挥其毒性作用。这种切割导致蛋白质生物合成的抑制,随后细胞凋亡导致细胞死亡。尽管尚未发现核毒素的蛋白质受体,但它们优先杀死表现出膜通透性改变的细胞,例如感染病毒或转化的细胞。已经通过多种方法学方法以及这些核毒素的不同突变形式的构建和纯化,在分子水平上阐明了细胞毒性过程的许多步骤。由于其细胞毒性,核糖毒素已被用于构建免疫毒素。除此活性外,烟曲霉产生的核酶毒素Aspf1已被证明是与过敏性曲霉病相关的病理学相关的主要变应原之一。为了理解这些致病机制的基础以及产生具有潜在诊断和免疫治疗应用的低变应原性蛋白质,已经使用了蛋白质工程和肽合成方法。

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