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首页> 外文期刊>Journal of bacteriology >Structure-function studies of the adenylate cyclase toxin of Bordetella pertussis and the leukotoxin of Pasteurella haemolytica by heterologous C protein activation and construction of hybrid proteins.
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Structure-function studies of the adenylate cyclase toxin of Bordetella pertussis and the leukotoxin of Pasteurella haemolytica by heterologous C protein activation and construction of hybrid proteins.

机译:百日咳博德特氏菌和溶血巴斯德氏菌白细胞毒素的腺苷酸环化酶毒素通过异源C蛋白活化和杂合蛋白构建的结构功能研究。

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The adenylate cyclase toxin (CyaA) from Bordetella pertussis and the leukotoxin (LktA) from Pasteurella haemolytica are members of the RTX (stands for repeats in toxin) family of cytolytic toxins. They have pore-forming activity and share significant amino acid homology but show marked differences in biological activity. CyaA is an invasive adenylate cyclase and a weak hemolysin which is active on a wide range of mammalian cells. LktA is a cytolytic protein with a high target cell specificity and is able to lyse only leukocytes and platelets from ruminants. Each toxin is synthesized as an inactive protoxin encoded by the A gene, and the product of the accessory C gene is required for posttranslational activation. Heterologous activation of LktA by CyaC did not result in a change in its specificity for nucleated cells, although the toxin showed a greater hemolytic-to-cytotoxic ratio. LktC was unable to activate CyaA. A hybrid toxin (Hyb1), which contained the N-terminal enzymic domain and the pore-forming domain from CyaA (amino acids [aa] 1 to 687), with the remainder of the protein derived from the C-terminal end of LktA (aa 379 to 953), showed no toxic activity. Replacement of part of the LktA C-terminal domain of Hyb1 by the CyaA C-terminal domain (aa 919 to 1706) to create hybrid toxin 2 (Hyb2) partially restored toxic activity. In contrast to CyaA, Hyb2 was activated more efficiently by LktC than by CyaC, showing the importance of the region between aa 379 and 616 of LktA for activation by LktC. LktC-activated Hyb2 was more active against ruminant than murine nucleated cells, whereas CyaC-activated Hyb2 displayed a similar, but lower, activity against both cell types. These data indicate that LktC and the region with which it interacts have an influence on the target cell specificity of the mature toxin.
机译:百日咳博德特氏菌的腺苷酸环化酶毒素(CyaA)和溶血巴斯德氏菌的白细胞毒素(LktA)是溶细胞毒素RTX(代表毒素重复)家族的成员。它们具有成孔活性,并具有显着的氨基酸同源性,但在生物学活性上显示出显着差异。 CyaA是一种侵入性腺苷酸环化酶,是一种弱溶血素,对多种哺乳动物细胞都有活性。 LktA是具有高靶细胞特异性的溶细胞蛋白,仅能溶解反刍动物的白细胞和血小板。每种毒素被合成为由A基因编码的无活性的毒素,而辅助C基因的产物是翻译后激活所必需的。尽管毒素显示出更高的溶血-细胞毒性比率,但CyaC对LktA的异源激活并未导致其对有核细胞的特异性发生变化。 LktC无法激活CyaA。杂合毒素(Hyb1),包含N端酶结构域和CyaA的成孔结构域(氨基酸[aa] 1至687),其余蛋白质来自LktA的C末端(氨基酸379至953),没有毒性。 Hyb1的LktA C末端结构域的一部分替换为CyaA C末端结构域(氨基酸919至1706),以创建杂种毒素2(Hyb2),部分恢复了毒性活性。与CyaA相反,Hkt2被LktC激活的效率比CyaC更有效,这表明LktA的379到616氨基酸之间的区域对于LktC激活的重要性。 LktC激活的Hyb2对反刍动物的活性高于鼠类有核细胞,而CyaC激活的Hyb2对两种细胞均表现出相似但较低的活性。这些数据表明,LktC及其相互作用的区域对成熟毒素的靶细胞特异性有影响。

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