| Literature DB >> 27590451 |
Alexander Corbishley1,2, Timothy K Connelley2, Eliza B Wolfson3, Keith Ballingall4, Amy E Beckett2,4, David L Gally2, Tom N McNeilly5.
Abstract
Vaccines targeting enterohaemorrhagic Escherichia coli (EHEC) O157:H7 shedding in cattle are only partially protective. The correlates of protection of these vaccines are unknown, but it is probable that they reduce bacterial adherence at the mucosal surface via the induction of blocking antibodies. Recent studies have indicated a role for cellular immunity in cattle during colonisation, providing an impetus to understand the bacterial epitopes recognised during this response. This study mapped the epitopes of 16 EHEC O157:H7 proteins recognised by rectal lymph node CD4(+) T-cells from calves colonised with Shiga toxin producing EHEC O157:H7 strains. 20 CD4(+) T-cell epitopes specific to E. coli from 7 of the proteins were identified. The highly conserved N-terminal region of Intimin, including the signal peptide, was consistently recognised by mucosal CD4(+) T-cell populations from multiple animals of different major histocompatibility complex class II haplotypes. These T-cell epitopes are missing from many Intimin constructs used in published vaccine trials, but are relatively conserved across a range of EHEC serotypes, offering the potential to develop cross protective vaccines. Antibodies recognising H7 flagellin have been consistently identified in colonised calves; however CD4(+) T-cell epitopes from H7 flagellin were not identified in this study, suggesting that H7 flagellin may act as a T-cell independent antigen. This is the first time that the epitopes recognised by CD4(+) T-cells following colonisation with an attaching and effacing pathogen have been characterised in any species. The findings have implications for the design of antigens used in the next generation of EHEC O157:H7 vaccines.Entities:
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Year: 2016 PMID: 27590451 PMCID: PMC5010706 DOI: 10.1186/s13567-016-0374-5
Source DB: PubMed Journal: Vet Res ISSN: 0928-4249 Impact factor: 3.683
Figure 1Experimental approach. A Graphical representation of APC and CD4+ T-cell line generation. B, C Immunofluorescent staining of T. annulata immortalised PBMC. Nuclei stained using DAPI (blue) and macroschizonts stained using monoclonal antibody 1C12 (green). D Flow cytometric analysis following staining of T. annulata immortalised PBMC for MHCII, CD80 and CD86. Filled histograms denote stained samples, open histograms denote the no primary control.
Figure 2IFN-γ production by rectal CD4 T-cells of EHEC O157 colonised calves in response to pooled bacterial peptides. CD4+ T-cell lines prepared from the rectal lymph nodes of animals challenged with EHEC O157:H7 were stimulated with pools of peptides from 16 EHEC O157:H7 proteins and subsequent IFN-γ release quantified by ELISA. Each panel represents results from a single animal. Peptide pools are ordered on the Y axis by the amount of IFN-γ produced. Peptide pool names are given for positive pools only. Solid lines denote the mean of two negative control wells. Dotted lines denote three standard deviations from the negative control as detailed in the "Materials and methods" section. Positive pools are shown in the inset next to each graph.
Peptide pools eliciting an increase in IFN-γ production by rectal CD4 T-cells from EHEC O157:H7 colonised calves
| Calf 401401 | Calf 201155 | Calf 301156 | Calf 201241 | Calf 401236 | Calf 601334 | |
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| EspA3 | X | |||||
| EspB1 | X | X | ||||
| EspB5 | X | |||||
| EspD1 | X | |||||
| EspD5 | X | |||||
| EspK1 | X | X | ||||
| EspK2 | X | X | ||||
| EspK3 | X | |||||
| EspK4 | X | X | ||||
| EspK5 | X | X | X | |||
| EspK7 | X | |||||
| EspK8 | X | |||||
| FliC2 | X | |||||
| FliC6 | X | |||||
| Intim1 | X | X | X | X | X | |
| Intim2 | X | X | ||||
| Intim4 | X | |||||
| Intim5 | X | X | ||||
| Intim6 | X | |||||
| Intim7 | X | X | X | |||
| Intim8 | X | |||||
| Intim9 | X | |||||
| Intim11 | X | |||||
| Intim12 | X | |||||
| NleA3 | X | |||||
| NleA4 | X | |||||
| NleA6 | X | |||||
| NleA7 | X | |||||
| NleA8 | X | |||||
| NleD1 | X | |||||
| NleD2 | X | X | ||||
| NleD3 | X | X | X | X | X | |
| NleD4 | X | |||||
| Stx2c2 | X | |||||
| Tir6 | X | |||||
| Tir9 | X | X | ||||
Figure 3IFN-γ production by rectal CD4 T-cells of EHEC O157 colonised calves in response to individual bacterial peptides. CD4+ T-cell lines prepared from the rectal lymph nodes of animals challenged with EHEC O157:H7 were stimulated with individual peptides from the top eight positive pools for each animal in Table 1 and subsequent IFN-γ release quantified by ELISA. Each panel represents results from a single animal. Peptides are ordered on the Y axis by the amount of IFN-γ produced. Peptide names are given for positive peptides only. Solid lines denote the mean of four negative control wells. Dotted lines denote three standard deviations from the negative control as detailed in the "Materials and methods" section. Positive peptides are shown in the inset next to each graph.
Figure 4Location and conservation of bovine CD4 T-cell Intimin epitopes after experimental colonisation with EHEC O157:H7. A Schematic of EHEC Intimin-γ, labelled with structural domain coordinates (Uniprot accession: P43261). Location of CD4+ T-cell epitopes is indicated in red. B Sequence alignment of CD4+ T-cell epitopes against the parental EHEC O157:H7 Intimin-γ sequence (accession BAB37982.1) and an Intimin consensus sequence. Conservation of this consensus is indicated on a scale of (*)-0, where * = 100% identity, 9 is highly conserved, down to 0, which is not conserved. Structural domains shown in A are also highlighted in this alignment. The consensus sequence was generated by a MUSCLE [32] multiple sequence alignment of representative Intimin sequences from EHEC of public health concern: O157:H7 (γ, accession BAB37982.1); O145:H28 (γ, accession AHY73165.1); O26:H11 (β, accession BAI28422.1); O103:H2 (ε, accession BAI32332.1); O121:H19 (ε, accession KDV53260.1); O45:H2 (ε, accession EZA22403.1); O111:H- (τ, accession BAI37528.1) and a prototypical EPEC O127:H6 comparator (α, accession YP_002331401.1). Intimin types are indicated in brackets. Conservation levels of this consensus sequence were generated using the PRALINE consistency output [33].
Conservation of EHEC O157 CD4 T-cell epitope sequences across non-O157 EHEC strains
Maximum percent identity returned by a tblastn query for each reactive peptide from Figure 3 against the complete genome sequences of 16 non-O157 EHEC strains.
– Denotes no hit.