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Properties of haemolysin E (HlyE) from a pathogenic Escherichia coli avian isolate and studies of HlyE export

机译:来自致病性大肠杆菌禽禽分离物和Hlye出口研究的寄生素E(Hlye)的性质

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Haemolysin E (HlyE) is a novel pore-forming toxin first identified in Escherichia coli K-12. Analysis of the 3-D structure of HlyE led to the proposal that a unique hydrophobic β-hairpin structure (the β-tongue, residues 177–203) interacts with the lipid bilayer in target membranes. In seeming contradiction to this, the hlyE sequence from a pathogenic E. coli strain (JM4660) that lacks all other haemolysins has been reported to encode an Arg residue at position 188 that was difficult to reconcile with the proposed role of the β-tongue. Here it is shown that the JM4660 hlyE sequence encodes Gly, not Arg, at position 188 and that substitution of Gly188 by Arg in E. coli K-12 HlyE abolishes activity, emphasizing the importance of the head domain in HlyE function. Nevertheless, 76 other amino acid substitutions were confirmed compared to the HlyE protein of E. coli K-12. The JM4660 HlyE protein was dimeric, suggesting a mechanism for improving toxin solubility, and it lysed red blood cells from many species by forming 36–41?? diameter pores. However, the haemolytic phenotype of JM4660 was found to be unstable due to defects in HlyE export, indicating that export of active HlyE is not an intrinsic property of the protein but requires additional components. TnphoA mutagenesis of hlyE shows that secretion from the cytoplasm to the periplasm does not require the carboxyl-terminal region of HlyE. Finally, disruption of genes associated with cell envelope function, including tatC, impairs HlyE export, indicating that outer membrane integrity is important for effective HlyE secretion.
机译:HeoMolysin E(Hlye)是首先在大肠杆菌K-12中鉴定的新型孔形成毒素。 Hlye的三维结构的分析导致了一种独特的疏水性β-发夹结构(β-舌,残基177-203)与靶膜中的脂质双层相互作用的提议。在看似矛盾的情况下,据报道,缺乏所有其他丙糖苷的致病大肠杆菌菌株(JM4660)的Hlye序列在188的位置编码,难以调节β-舌头的作用。这里显示JM4660 Hlye序列在大肠杆菌K-12 Hlye在大肠杆菌K-12 Hlye在大肠杆菌K-12 Hlye中编码Gly,而不是在第188位,并且在大肠杆菌K-12 Hlye中取代的术语,并强调了Hlye功能中的头部结构域的重要性。然而,与大肠杆菌K-12的Hlye蛋白相比,确认了76个其他氨基酸取代。 JM4660 Hlye蛋白质是二聚体,表明通过形成36-41〜41来改善毒素溶解度的机制,并通过形成许多物种裂解红细胞直径毛孔。然而,由于Hlye出口的缺陷,发现JM4660的溶血表型是不稳定的,表明活性HILYE的出口不是蛋白质的内在性质,而是需要额​​外的组分。 Hlye的TNPHOA诱变表明,从细胞质到周质的分泌不需要HLYE的羧基末端区域。最后,包括细胞包膜功能的基因破坏,包括TATC,损害Hlye出口,表明外膜完整性对于有效的Hlye分泌很重要。

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