Search PubMed⌕ Search

Biomedical subjects

S D Neill

Publications and source records attributed to S D Neill.

At least 55 records · Page 3Linked to original sources

Detection of Mycobacterium bovis infection in skin test-negative cattle with an assay for bovine interferon-gamma.

Mycobacterium bovis was isolated from respiratory secretions and lymph nodes from 15 skin test-negative cattle which exhibited interferon-gamma responses. These field cases, identified by blood testing, constituted a significant proportion of skin test-negative cattle which had been subjected to extensive post mortem examinations. Typical tuberculous lesions were found in seven of them. The consequences of cattle with early tuberculosis infection not being detected by traditional tuberculin testing are considered.

Animals↗

Pathogenesis of Mycobacterium bovis infection in cattle.

This paper reviews the pathogenesis of Mycobacterium bovis infection in cattle, focusing on aspects relating to the host rather than the organism. A broad concept of pathogenesis has been considered and information is presented on sources and routes of infection, as well as the immune responses and pathology. In addition, data is presented on the excretion of M. bovis from tuberculous cattle.

Animals↗

Immunoblot analysis of humoral immune responses to Mycobacterium bovis in experimentally infected cattle: early recognition of a 26-kilodalton antigen.

Development of a serodiagnostic test for bovine tuberculosis necessitates an understanding of the humoral immune responses of animals following infection with Mycobacterium bovis. The antibody responses in groups of calves challenged intranasally with different doses of M. bovis (approximately 10(2), 10(4), and 10(6) CFU) or placed in contact with the infected animals were analyzed by immunoelectrophoretic blotting in which a whole-cell sonicate of M. bovis was utilized as an antigen. Antibody responses were evident early in infections in which calves were exposed to high doses of M. bovis, while in groups exposed to lower doses, the time until antibody was detected increased as the challenge dose decreased. In cattle exposed to M. bovis, immunoblot analysis showed antibody responses to three main antigens of 26, 22, and 16 kDa. It was further demonstrated that antibody responses to the 26-kDa antigen appeared earliest in the course of infection. Preliminary investigations in this study have identified a 26-kDa antigen for potential use in improved serodiagnosis by enzyme-linked immunosorbent assays.

Animals↗

Genomic fingerprinting of Mycobacterium bovis from cattle by restriction fragment length polymorphism analysis.

Two insertion sequences, IS6110 and IS1081, specific to the tuberculosis complex mycobacteria and a highly reiterated DNA element (pTBN12) cloned from Mycobacterium tuberculosis were systematically used to identify restriction fragment length polymorphism (RFLP) types among bovine isolates of Mycobacterium bovis in Northern Ireland. In a sample of 109 isolates, probes IS6110, IS1081, and pTBN12 identified 10, 2, and 12 distinct patterns, respectively. By combining the patterns generated by the three probes it was possible to identify 28 distinct RFLP types. The standard protocol advocated for RFLP analysis of M. tuberculosis was used and would facilitate computer-based gel documentation and image analysis to establish a database of M. bovis types for large-scale epidemiological studies. These procedures will facilitate interlaboratory comparisons of M. bovis isolates and will help to elucidate the precise epidemiology of bovine tuberculosis in different countries.

Animals↗

Identification of bovine T-cell epitopes for three Mycobacterium bovis antigens: MPB70, 19,000 MW and MPB57.

Bovine tuberculosis remains a serious problem in several regions, partly due to a lack of specific diagnostic tests. The aim of this study was to identify bovine T-cell epitopes for defined Mycobacterium bovis antigens using an experimental model of the natural disease. Panels of synthetic peptides (16-mers with five residue overlaps) were produced from published amino acid sequences for MPB70, the 19,000 MW antigen and MPB57. In vitro lymphocyte proliferation assays were used to identify T-cell epitopes. Lymphocytes from experimentally infected cattle proliferated in response to five epitopes (residues 88-105 and 144-163 for MPB70; 1-16 and 67-84 for the 19,000 MW antigen; and 85-100 for MBP57). These epitopes were not recognized by control, non-infected animals, but were recognized by field reactors to intradermal tuberculin testing. All five epitopes were recognized by three different breeds of cattle (Friesian, Charolais and Simmental). In addition, the bovine T-cell epitopes identified for the 19,000 MW antigen in this study were similar to epitopes previously reported for man and mouse. Thus, as well as identifying candidate reagents for improved diagnostic tests and vaccination, this study provides evidence for genetic promiscuity T-cell recognition of major myobacterial epitopes.

Amino Acid Sequence↗

Identification of mycobacteria from animals by restriction enzyme analysis and direct DNA cycle sequencing of polymerase chain reaction-amplified 16S rRNA gene sequences.

Two methods, based on analysis of the polymerase chain reaction-amplified 16S rRNA gene by restriction enzyme analysis (REA) or direct cycle sequencing, were developed for rapid identification of mycobacteria isolated from animals and were compared to traditional phenotypic typing. BACTEC 7H12 cultures of the specimens were examined for "cording," and specific polymerase chain reaction amplification was performed to identify the presence of tubercle complex mycobacteria. Combined results of separate REAs with HhaI, MspI, MboI, and ThaI differentiated 12 of 15 mycobacterial species tested. HhaI, MspI, and ThaI restriction enzyme profiles differentiated Actinobacillus species from mycobacterial species. Mycobacterium bovis could not be differentiated from M. bovis BCG or Mycobacterium tuberculosis. Similarly, Mycobacterium avium and Mycobacterium paratuberculosis could not be distinguished from each other by REA but were differentiated by cycle sequencing. Compared with traditional typing, both methods allowed rapid and more accurate identification of acid-fast organisms recovered from 21 specimens of bovine and badger origin. Two groups of isolates were not typed definitively by either molecular method. One group of four isolates may constitute a new species phylogenetically very closely related to Mycobacterium simiae. The remaining unidentified isolates (three badger and one bovine) had identical restriction enzyme profiles and shared 100% nucleotide identify over the sequenced signature region. This nucleotide sequence most closely resembled the data base sequence of Mycobacterium senegalense.

Animals↗

Isolation of Mycobacterium bovis from the respiratory tracts of skin test-negative cattle.

Mycobacterium bovis was isolated from the respiratory tracts of three cattle which registered negative to tuberculin testing; no tuberculous lesions were found and the culture of lymph nodes and other tissues proved negative. One animal was from a group of five calves which had been inoculated intranasally with M bovis, and the organism was recovered once only from nasal mucus sampled 100 days after inoculation. The second animal had had contact with experimentally infected cattle which were excreting M bovis and the third was from a commercial farm. The results of ELISAS for antimycobacterial antibodies and interferon-gamma, and of lymphocyte transformation assays are presented. The animals' immune responses provided evidence that each of them had been challenged.

Animals↗

ELISA tests for antibodies in experimental bovine tuberculosis.

It was shown that 10(4) cfu of a field isolate of Mycobacterium bovis caused illness in five experimentally infected calves; one of these died. One of three contact calves also became clinically infected. Considerable variation in the humoral response of the affected animals was demonstrated by ELISAs using purified protein derivative (PPD) and phosphatide antigens. The inoculation of antigens used in the comparative tuberculin skin test significantly enhanced the level of PPD antibodies in the affected animals whereas that of the apparently non-infected contact animals remained unchanged.

Animals↗

Profiles of toxin production by thermophilic Campylobacter of animal origin.

Seventy-five strains of Campylobacter jejuni and C. coli, which were isolated from a variety of animal species, primarily poultry, were examined for production of toxin. Polymyxin extracts were tested in in vitro assays using CHO-KI, FCL (foetal calf lung), Vero, HeLa and CEF (chicken embryo fibroblast) cells. The toxic effects observed were cell rounding and death. Extracts from almost all C. jejuni and C. coli strains were toxic to both CHO-KI and FCL cells and 69.0% of C. jejuni isolates and 75% of C. coli isolates were also toxic to CEF cells. 50.7% of C. jejuni extracts were toxic to Vero cells and 46.5% toxic to HeLa cells. None of the C. coli isolates were toxic to either of these cell lines. None of the strains tested produced cytotonic enterotoxin. No differences in toxigenicity patterns were evident between Campylobacter isolated from different sources.

Animals↗

A mathematical model for Mycobacterium bovis excretion from tuberculous cattle.

An analysis was carried out of available information from a series of experiments on the excretion of M. bovis from infected cattle. The analysis indicated that an inverse exponential relationship exists between 'dose' of organisms given and the delay before excretion commences. This relationship was represented mathematically. Available field data supported the relationship and indicated that in natural bovine tuberculosis excretion of M. bovis begins around 87 days after infection occurs. It is also suggested that the data supports the concept of single nuclei infections in cattle.

Animals↗

Genetic analysis of the adenovirus E4 6/7 trans activator: interaction with E2F and induction of a stable DNA-protein complex are critical for activity.

The adenovirus early E4 transcription unit encodes a 19-kDa polypeptide that trans activates transcription of the early E2 gene and is dependent on the binding sites for the E2F transcription factor. Biochemical assays have shown that the E4 protein, a product of the 6/7 open reading frame, interacts with the E2F transcription factor and alters its DNA binding characteristics, resulting in the formation of a very stable DNA-protein complex. We have generated a series of E4 mutants to determine the requirements for the interaction with E2F and the induction of a stable E2F complex on the E2 promoter in relation to the trans activation of E2 transcription. We find that the trans-activation function of E4 is dependent on the ability of the protein to interact with E2F and that full trans activation is dependent on the induction of the E2F stable complex. Interestingly, several mutants distinguish these events, since they retain the ability to interact with E2F but have lost the capacity to induce the stable complex. Since these mutants can still trans activate, albeit at reduced levels, these results suggest that the E4 protein contributes to trans activation that is independent of stable complex formation.

Adenoviridae↗

An adenovirus E4 gene product trans-activates E2 transcription and stimulates stable E2F binding through a direct association with E2F.

The adenovirus E4 gene encodes a trans-activating function that can stimulate the E2 promoter. E2 promoter sequences required for E4 trans-activation are identical to those required for E1A trans-activation, and these principally are the E2 promoter binding factor (E2F) binding sites. Furthermore, full activation of E2F DNA binding activity requires both E1A and E4 action. Analysis of a series of mutant E4 viruses identifies open reading frame (orf) 6/7 of the E4 transcription unit as that required for activation of E2F binding activity. In addition, the assay of various E4 cDNAs demonstrates that the E4 orf 6/7 also is responsible for the trans-activation of E2 transcription. Translation of the E4 orf 6/7 mRNA, but not a control mRNA, in a reticulocyte extract generates an activity that can stimulate cooperative binding of E2F in vitro, consistent with recent in vivo assays that demonstrate a role for the E4 gene in E2F stable complex formation. This stimulation is due to a direct interaction of the E4 protein with E2F since an antibody that recognizes the E4 orf 6/7 polypeptide detects this E4 protein in the E2F-DNA complex. We conclude that the E4 orf 6/7 product interacts with the E2F factor altering binding to allow formation of a stable complex that results in a stimulation of transcription.

Adenovirus Early Proteins↗

Activation of the E2F transcription factor in adenovirus-infected cells involves E1A-dependent stimulation of DNA-binding activity and induction of cooperative binding mediated by an E4 gene product.

Previous experiments have demonstrated that the DNA-binding activity of the E2F transcription factor is increased upon adenovirus infection and that both the E1A and E4 genes are required for activation. In this study, we demonstrated that this enhanced binding of E2F to the E2 promoter is the result of two events. (i) There is stimulation of the DNA-binding activity of the E2F factor; this stimulation is E1A dependent but independent of E4. (ii) There is also induction of a stabilized interaction between E2F molecules bound to adjacent promoter sites; induction of stable E2F binding requires E4 gene function. This two-step activation process was also demonstrated in vitro. A heat-stable fraction from extracts of adenovirus-infected cells, which contains the 19-kilodalton E4 protein, was capable of stimulating stable E2F binding in an ATP-independent manner and appeared to involve direct interaction of the E4 protein with E2F. An extract from virus-infected cells devoid of the E4 19-kilodalton protein stimulated E2F DNA binding without forming the stable complex. This reaction required ATP. We conclude that activation of E2F during adenovirus infection is a two-step process involving a change in both the DNA-binding activity of the factor and the capacity to stabilize the interaction through protein-protein contacts.

Adenovirus Early Proteins↗

Control, prevention and eradication of Salmonella enteritidis infection in broiler and broiler breeder flocks.

Salmonella enteritidis was identified by serological and bacteriological techniques in two clinically normal breeder flocks in an integrated broiler organisation in Northern Ireland. The organism was transmitted vertically to clinically affected progeny flocks. The infected breeder flocks were slaughtered and the infection throughout the organisation controlled and subsequently eradicated. A working group, consisting of the senior management of the broiler organisation and veterinary staff from the Veterinary Research Laboratories at Stormont, was formed to establish procedures to minimise the risk of the reintroduction of salmonella infection, by preventing vertical transmission from grandparent flocks, or lateral transmission from personnel, other animal species and fomites, or transmission through the feed. All feed was heated to a minimum of 70 degrees C for 12 minutes immediately before it was pelleted and subsequently transported to the flocks through a dedicated system of conveyor belts, bins and lorries. A comprehensive system for monitoring the efficacy of the preventive procedures was established and is now used throughout the poultry industry of Northern Ireland.

Animals↗

Type C botulism in cattle being fed ensiled poultry litter.

A botulinum toxin from ensiled poultry litter which caused a major outbreak of bovine botulism was characterised as type C1. The litter produced transient ataxia when fed to two experimental calves and the clinical signs were accompanied by a transient appearance of serum toxin. Type C1 toxin was demonstrated in muscle tissues which had been taken during the outbreak from an affected animal with high circulating serum toxin, and held frozen for seven months. Clostridium botulinum type C organisms were demonstrated in faeces from another affected animal and also in kidney tissue from a third animal. These observations have implications for the diagnosis and management of future outbreaks of botulism and for the potential health risk from the meat of affected animals.

Animal Feed↗

Transmission of tuberculosis from experimentally infected cattle to in-contact calves.

Five of a group of six calves were inoculated with Mycobacterium bovis. Two more uninoculated calves were introduced to the group 84 days later. All the inoculated calves were subsequently shown to be excreting M bovis in nasal mucus. The uninoculated calf in the initial group of six became infected and subsequently excreted M bovis. The two uninoculated calves which were introduced later did not become infected. It was concluded that contact with nasal mucus from the infected cattle resulted in infection of the uninoculated calf and that the density of accommodation of animals excreting M bovis was an important factor in transmission of the disease.

Animals↗

The adenovirus E4 gene, in addition to the E1A gene, is important for trans-activation of E2 transcription and for E2F activation.

Previous experiments have demonstrated that adenovirus infection of human and mouse cells leads to an E1A-dependent activation of the DNA-binding capacity of a cellular transcription factor termed E2F. E2F binds to two sites in the adenovirus E2 early promoter which have been shown to be critical for E1A-dependent E2 early transcription, and the E2F-binding sites can confer E1A-induced transcription to a heterologous promoter. In addition, under a variety of circumstances, the increase in E2F-binding activity coincides with the activation of E2 transcription. We now find that, in addition to the E1A gene, another early viral gene, the E4 gene, is necessary for the activation of E2F-binding activity. Extracts prepared from human 293 cells, which express the E1A and E1B genes, had low levels of E2F activity, whereas infection of 293 cells with the E1A mutant dl312 increased E2F activity. This increase did not occur when 293 cells were infected with dl366, an E4 deletion mutant, nor was there an increase in E2F activity in HeLa cells infected with either dl366 or dl312; however, a coinfection with the two mutants yielded the normal wild-type increase in E2F. Furthermore, infection of HeLa cells with a high multiplicity of dl312, conditions that allow E4 gene expression in the absence of E1A, did not yield an increase in E2F activity. Thus, it appears that both the E1A gene and the E4 gene are directly involved in E2F activation. Measurements of E2 RNA production in a dl366 infection as compared with a wild-type or dl312 infection demonstrate that the E4 gene is essential for full E2 transcription. Furthermore, transfection assays of the E2 promoter demonstrate that, although E1A alone can trans-activate the E2 promoter, it is not as effective as the combination of E1A and E4 in the induction of the E2 promoter. We therefore conclude that the activation of the E2F factor leading to the activation of E2 transcription requires the combined action of both the E1A 289-amino-acid protein and an E4 product.

Adenoviridae↗

Use of PPD and phosphatide antigens in an ELISA to detect the serological response in experimental bovine tuberculosis.

Five calves from tuberculosis free herds were each inoculated intranasally with 10(6) viable organisms of a field isolate of Mycobacterium bovis. Four of the calves developed acute tuberculosis. ELISAs employing protein and phosphatide extracts of M bovis as antigens were used to monitor the humoral response of the infected calves. Fourteen days after infection there was a dramatic increase in the level of antibodies demonstrated by the phosphatide antigen. This increase coincided with the first appearance of signs of the disease. The results suggest that the phosphatide antigen may be of potential value in detecting a humoral response, if present, in cattle infected with M bovis. The tests employing the protein antigen demonstrated a humoral response in only one of the infected calves and emphasises the importance of antigen selection to detect antibodies in tuberculous animals.

Animals↗