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Biomedical subjects

P Timms

Publications and source records attributed to P Timms.

At least 73 records · Page 4Linked to original sources

Two distinct forms of Chlamydia psittaci associated with disease and infertility in Phascolarctos cinereus (koala).

While several diseases associated with Chlamydia psittaci infection have been reported in Phascolarctos cinereus (koala), it is still unclear whether one or more chlamydial strains are responsible. In this study, we provide evidence, obtained by restriction enzyme and gene probe analysis, that two quite distinct strains of C. psittaci infect koalas; one strain was isolated from the conjunctivae, and the other was isolated from the urogenital tract and the rectum. A gene probe, pFEN207, containing the coding sequence for an enzyme involved in the biosynthesis of the chlamydial genus-specific lipopolysaccharide antigen, and a separate probe, pCPML-4N, prepared from a DNA fragment of a koala-infecting strain of C. psittaci, were used to determine the patterns of hybridization in the koala-infecting strains; these patterns were found to be quite distinct from those observed with C. psittaci isolates from other animals. We also demonstrated by hybridization analysis with an avian strain plasmid that all three koala urogenital isolates contain a plasmid and that there is no evidence for the presence of a homologous plasmid in any of the ocular isolates.

Animals↗

Failure of a recombinant Babesia bovis antigen to protect cattle against heterologous strain challenge.

Groups of cattle were inoculated subcutaneously with (i) a recombinant DNA-derived Babesia bovis protein (KaBbl-GZ) fused to beta-galactosidase and combined with adjuvants, or (ii) native beta-galactosidase (GZ) plus adjuvant, or (iii) adjuvant only or (iv) a live, attenuated B bovis vaccine. KaBbl-GZ was produced in the lambda gt11-amp3 system as a 5-10 kD babesial polypeptide linked to GZ. KaBbl has previously been shown to be an immunodominant antigen of B bovis, localised at the apex of the parasite, and present in a range of B bovis strains. High levels of GZ antibodies were observed in KaBbl-GZ and GZ inoculated cattle, but specific KaBbl antibodies could not be detected by ELISA. Five months after primary inoculation, all cattle were blood challenged with a virulent heterologous B bovis strain. Despite four inoculations with KaBbl-GZ, significant protection against the challenge was not observed.

Animals↗

cDNA clone encoding a high molecular weight antigen of Babesia bovis.

An expression library was constructed by inserting cDNA copied from mRNA of the blood stages of Babesia bovis isolate KA into bacteriophage lambda gt11-amp3. An antigen-positive cDNA clone detected by screening the library with antibodies from cattle vaccinated with the KA isolate was shown to encode part of a high-molecular weight polypeptide antigen of B. bovis. This molecule was a dominant immunogen and was found by immunofluorescence to be within the parasite in infected erythrocytes.

Animals↗

Babesia bovis: molecular and biological characteristics of cloned parasite lines.

An in vivo limiting dilution technique was used to produce several Babesia bovis cloned lines with which to study the basis of virulence and immunogenicity in this parasite. DNA hybridization using a cloned DNA fragment from the BabR locus demonstrated that the cloned lines were a more restricted genetic population than the parent strain. Biosynthetic labeling and immunoprecipitation studies indicated that the cloned lines differed from each other and from the parentals in the expression of a small number of polypeptides and antigens. Animal trials with three of the lines demonstrated that the parental line contains both virulent and avirulent parasite populations, at least three of which are not tick transmissible, and that while the lines do provide significant protection against heterologous challenge, they may not give as effective protection as the parental line. These experiments demonstrated the existence of subpopulations with distinctive molecular and biological properties, providing evidence that the attenuation process is based on the selection of preexisting parasite subpopulations combined with the ability of these parasites to vary genetically.

Animals↗

Central nervous system dysfunction and erythrocyte guanosine triphosphate depletion in purine nucleoside phosphorylase deficiency.

Developmental retardation was a prominent clinical feature in six infants from three kindreds deficient in the enzyme purine nucleoside phosphorylase (PNP) and was present before development of T cell immunodeficiency. Guanosine triphosphate (GTP) depletion was noted in the erythrocytes of all surviving homozygotes and was of equivalent magnitude to that found in the Lesch-Nyhan syndrome (complete hypoxanthine-guanine phosphoribosyltransferase (HGPRT) deficiency). The similarity between the neurological complications in both disorders indicates that the two major clinical consequences of complete PNP deficiency have differing aetiologies: neurological effects resulting from deficiency of the PNP enzyme products, which are the substrates for HGPRT, leading to functional deficiency of this enzyme. immunodeficiency caused by accumulation of the PNP enzyme substrates, one of which, deoxyguanosine, is toxic to T cells. These studies show the need to consider PNP deficiency (suggested by the finding of hypouricaemia) in patients with neurological dysfunction, as well as in T cell immunodeficiency. They suggest an important role for GTP in normal central nervous system function.

Central Nervous System↗

DNA polymorphisms and subpopulations in Babesia bovis.

Independent isolates of Babesia bovis differ by only a limited number of polypeptides, some of which may be important as host protective antigens. Avirulent derivatives of these parasites also differ from their virulent counterparts in only a few polypeptides. To identify genes encoding such polypeptides we have isolated cDNA clones corresponding to poly(A)+ RNAs that are expressed only in certain isolates. For this purpose a cDNA clone library was constructed from poly(A)+ RNA of the K-avirulent isolate (KA). These clones were screened by colony hybridization using [32P]cDNA complementary to poly(A)+ RNA from KA and from virulent isolates, in order to identify clones that selectively hybridize to one cDNA probe. Hybridization of DNA from three clones, designated pK4, pK5 and pK6 to poly(A)+ RNA from various isolates revealed different and complex patterns. The gene represented by clone pK5 appeared to be transcribed predominantly in avirulent parasites. Analysis of genomic DNA by the Southern procedure enabled each isolate to be distinguished and suggested that most isolates are comprised of a heterogeneous mixture of subpopulations. Analysis of genomic DNA from parasites obtained after passage of KA through the tick vector (Boophilus microplus) suggested that a subpopulation was being selected that more closely resembled KV than KA.

Animals↗

Immune responses of cattle following vaccination with living and non-living Babesia bovis antigens.

Twenty-four yearling Hereford (Bos taurus) cattle were vaccinated against Babesia bovis using either live parasites or non-living antigens obtained from the supernatant of in vitro cultures. A single dose of live parasites was given subcutaneously, while the non-living supernatant antigen (NLSA) was combined with saponin and 2 doses given, 2 weeks apart. Following vaccination with live parasites, serum antibodies remained at high levels for 6 months, but the lymphocyte transformation response was low and lasted only 10-18 days. In contrast, NLSA vaccination was followed, after 21-28 days, by a peak of serum antibodies which then slowly declined. The lymphocyte transformation response in these animals was much higher and persisted for 6 months. Following heterologous challenge all unvaccinated cattle had severe reactions and required treatment to prevent death. Cattle vaccinated with live parasites had mild reactions with only 1 of the 12 requiring treatment. Cattle vaccinated with NLSA were only partially protected and 6 of the 12 required treatment.

Animals↗

Babesia bovis: proteins of virulent and avirulent parasites passaged through ticks and splenectomized or intact calves.

Passage of the avirulent vaccine (K) strain of Babesia bovis (KA) through either Boophilus microplus ticks, intact calves, or intact calves and then ticks, resulted in two distinct protein and protein antigen profiles as analyzed by two-dimensional gel electrophoresis of biosynthetically labeled proteins and immunoprecipitates. Different degrees of expression of two major acidic antigens of KA designated Ka1 (Mr 47,500) and Ka2 (Mr 43,000) were observed. Ka1 was apparently lost following passage of KA B. bovis through intact calves but was strongly represented in the parasite population following a single tick passage. In contrast, passage through ticks of the virulent KV B. bovis (from which KA was derived by passage in splenectomized calves) did not lead to strong representation of the Ka1 protein although there was increased representation of another major acidic protein antigen, designated KV (Mr 35,000). These data suggest that the previously recognized reversion to a strain-dependent basal antigenic type in the tick vector depends also on intrastrain characteristics such as virulence and strain heterogeneity. The data suggest that KA is a more heterogeneous population than KV although cloned isolates are required to establish this point. Comparable syringe passage of another strain of B. bovis, designated C strain, through splenectomized calves resulted in less marked differences between the putative CA and CV B. bovis. This may explain the less stable avirulence of CA compared to KA B. bovis. Various selection pressures must act, in either the tick or the vertebrate host, on subpopulations in heterogeneous isolates to produce the changes described in protein antigen profiles of B. bovis. The possible relevance of changes in representation of proteins to biological characteristics of B. bovis (such as virulence and tick transmissibility) is discussed.

Animals↗

Babesia bovis: comparison of culture-derived parasites, non-living antigen and conventional vaccine in the protection of cattle against heterologous challenge.

Twenty Bos taurus cattle were vaccinated with either live commercial Babesia bovis vaccine, live parasites from in vitro culture or non-living supernatant antigen (NLSA) derived from in vitro culture and combined with the adjuvant saponin. Heterologous strain challenge 10 weeks later indicated that cattle vaccinated with live parasites from either source were strongly protected, those given 2 doses of NLSA 2 weeks apart were partially protected, and those given one dose of NLSA were poorly protected. Enzyme immunoassay detected comparable, increasing levels of specific babesial antibody in all vaccinated cattle during the 2 to 3 weeks following vaccination, after which levels in cattle given NLSA decreased. Antibody to bovine blood group factors was detected in 4 of the 10 animals given NLSA. Titres peaked after 3 to 4 weeks and then declined rapidly.

Adjuvants, Immunologic↗

Development of a Babesia rodhaini mouse assay for quality control of the serum component of a bovine babesiosis vaccine.

The rodent babesia, Babesia rodhaini, survived equally well in basal medium containing either 10 per cent rat serum or 10 per cent bovine serum. As a result, a B rodhaini mouse assay is now performed routinely to determine the suitability of batches of bovine serum for use in a commercial Babesia bovis vaccine issued in Australia. Heat inactivation of bovine serum at 56 degrees C for two hours did not affect the survival of either B bovis or B rodhaini.

Animals↗

Conversion of fensulfothion by Klebsiella pneumoniae to fensulfothion sulfide and its accumulation.

In a detailed study it was shown that washed cell suspensions of K. pneumoniae reduced the organophosphorus pesticide fensulfothion to fensulfothion sulfide. Temperature and pH optima for this conversion plus sensitivity to sulfhydryl-reacting agents strongly suggested enzyme involvement. The reaction was also quite sensitive to molecular oxygen, only proceeding under conditions of low oxygen tension. Once formed, the fensulfothion sulfide was rapidly bound by living and heat-killed cells. A combination of lysozyme treatment and differential centrifugation showed 90% of the sulfide to be concentrated in the cell membrane fraction of exposed cells.

Hydrogen-Ion Concentration↗