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首页> 外文期刊>MBio >The Eukaryotic Host Factor 14-3-3 Inactivates Adenylate Cyclase Toxins of Bordetella bronchiseptica and B.?parapertussis, but Not B.?pertussis
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The Eukaryotic Host Factor 14-3-3 Inactivates Adenylate Cyclase Toxins of Bordetella bronchiseptica and B.?parapertussis, but Not B.?pertussis

机译:真核宿主因子14-3-3灭活支气管球菌 B.?parapertussis ,但不是 B.?pertussis

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ABSTRACT Bordetella pertussis , Bordetella?bronchiseptica , and Bordetella?parapertussis share highly homologous virulence factors and commonly cause respiratory infections in mammals; however, their host specificities and disease severities differ, and the reasons for this remain largely unknown. Adenylate cyclase toxin (CyaA) is a homologous virulence factor that is thought to play crucial roles in Bordetella infections. We herein demonstrate that CyaAs function as virulence factors differently between B.?bronchiseptica / B. parapertussis and B. pertussis . B . bronchiseptica CyaA bound to target cells, and its enzyme domain was translocated into the cytosol similarly to B . pertussis CyaA. The hemolytic activity of B . bronchiseptica CyaA on sheep erythrocytes was also preserved. However, in nucleated target cells, B . bronchiseptica CyaA was phosphorylated at Ser~(375), which constitutes a motif (RSXpSXP [pS is phosphoserine]) recognized by the host factor 14-3-3, resulting in the abrogation of adenylate cyclase activity. Consequently, the cytotoxic effects of B . bronchiseptica CyaA based on its enzyme activity were markedly attenuated. B . parapertussis CyaA carries the 14-3-3 motif, indicating that its intracellular enzyme activity is abrogated similarly to B . bronchiseptica CyaA; however, B . pertussis CyaA has Phe~(375)instead of Ser, and thus, was not affected by 14-3-3. In addition, B . pertussis CyaA impaired the barrier function of epithelial cells, whereas B . bronchiseptica CyaA did not. Rat infection experiments suggested that functional differences in CyaA are related to differences in pathogenicity between B.?bronchiseptica / B . parapertussis and B. pertussis . IMPORTANCE Bordetella pertussis , B.?bronchiseptica , and B.?parapertussis are bacterial respiratory pathogens that are genetically close to each other and produce many homologous virulence factors; however, their host specificities and disease severities differ, and the reasons for this remain unknown. Previous studies attempted to explain these differences by the distinct virulence factors produced by each Bordetella species. In contrast, we indicated functional differences in adenylate cyclase toxin, a homologous virulence factor of Bordetella . The toxins of B.?bronchiseptica and presumably B.?parapertussis were inactivated by the host factor 14-3-3 after phosphorylation in target cells, whereas the B.?pertussis toxin was not inactivated because of the lack of the phosphorylation site. This is the first study to show that 14-3-3 inactivates the virulence factors of pathogens. The present results suggest that pathogenic differences in Bordetella are attributed to the different activities of adenylate cyclase toxins.
机译:摘要百日咳博德特氏菌,布鲁氏博德特氏菌和副百日咳博德特氏菌具有高度同源的毒力因子,通常在哺乳动物中引起呼吸道感染。然而,它们的宿主特异性和疾病严重程度不同,其原因仍未知。腺苷酸环化酶毒素(CyaA)是一种同源毒力因子,被认为在博德特氏菌感染中起关键作用。我们在这里证明CyaAs作为致病因子在支气管炎支原体/副百日咳杆菌和百日咳百日咳之间有不同的作用。 B.支气管败血病CyaA与靶细胞结合,其酶结构域与B相似地转移到细胞质中。百日咳CyaA。 B的溶血活性。羊红细胞上的支气管败血病CyaA也被保存。但是,在有核靶细胞中,B。支气管败血病的CyaA在Ser〜(375)处被磷酸化,构成被宿主因子14-3-3识别的基序(RSXpSXP [pS是磷酸丝氨酸]),从而导致腺苷酸环化酶活性的丧失。因此,B的细胞毒性作用。支气管败血病CyaA的酶活性显着减弱。 B.副百日咳CyaA携带14-3-3基序,表明其细胞内酶活性与B相似。支气管败血病但是,B。百日咳CyaA具有Phe〜(375)而不是Ser,因此不受14-3-3的影响。另外,B。百日咳CyaA损害上皮细胞的屏障功能,而B。支气管败血病CyaA没有。大鼠感染实验表明,CyaA的功能差异与支气管败血杆菌/ B的致病性差异有关。副百日咳和百日咳百日咳。重要事项百日咳博德特氏菌,支气管败血性博德氏杆菌和副百日咳博德特氏菌是细菌性呼吸道病原体,它们在遗传上相互靠近,并产生许多同源毒力因子。然而,它们的宿主特异性和疾病严重程度不同,其原因尚不清楚。以前的研究试图通过每种博德特氏菌产生的独特毒力因子来解释这些差异。相反,我们表明腺苷酸环化酶毒素(博德特氏菌的同源毒力因子)的功能差异。靶细胞磷酸化后,宿主因子14-3-3使支气管败血支原体和副百日咳杆菌的毒素失活,而由于缺少磷酸化位点,百日咳杆菌的毒素未失活。这是第一个显示14-3-3可以灭活病原体毒力因子的研究。目前的结果表明,博德特氏菌的致病性差异归因于腺苷酸环化酶毒素的不同活性。

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