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Biomedical subjects

A M McGuire

Publications and source records attributed to A M McGuire.

At least 19 recordsLinked to original sources

Conservation of DNA regulatory motifs and discovery of new motifs in microbial genomes.

Regulatory motifs can be found by local multiple alignment of upstream regions from coregulated sets of genes, or regulons. We searched for regulatory motifs using the program AlignACE together with a set of filters that helped us choose the motifs most likely to be biologically relevant in 17 complete microbial genomes. We searched the upstream regions of potentially coregulated genes grouped by three methods: (1) genes that make up functional pathways; (2) genes homologous to regulons from a well-studied species (Escherichia coli); and (3) groups of genes derived from conserved operons. This last group is based on the observation that genes making up homologous regulons in different species are often assorted into coregulated operons in different combinations. This allows partial reconstruction of regulons by looking at operon structure across several species. Unlike other methods for predicting regulons, this method does not depend on the availability of experimental data other than the genome sequence and the locations of genes. New, statistically significant motifs were found in the genome sequence of each organism using each grouping method. The most significant new motif was found upstream of genes in the methane-metabolism functional group in Methanobacterium thermoautotrophicum. We found that at least 27% of the known E. coli DNA-regulatory motifs are conserved in one or more distantly related eubacteria. We also observed significant motifs that differed from the E. coli motif in other organisms upstream of sets of genes homologous to known E. coli regulons, including Crp, LexA, and ArcA in Bacillus subtilis; four anaerobic regulons in Archaeoglobus fulgidus (NarL, NarP, Fnr, and ModE); and the PhoB, PurR, RpoH, and FhlA regulons in other archaebacterial species. We also used motif conservation to aid in finding new motifs by grouping upstream regions from closely related bacteria, thus increasing the number of instances of the motif in the sequence to be aligned. For example, by grouping upstream sequences from three archaebacterial species, we found a conserved motif that may regulate ferrous ion transport that was not found in individual genomes. Discovery of conserved motifs becomes easier as the number of closely related genome sequences increases.

Computational Biology↗

Repetitive abortion in Neospora-infected ewes.

Pregnant ewes inoculated with cultured Neospora caninum tachyzoites in 1995, 1996, or 1995 and 1996 aborted or delivered weak or clinically normal lambs in 1996. Nine of 11 ewes in the study had previously produced infected lambs or fetuses after being experimentally infected in 1995. Fetuses and lambs produced in 1996 showed histologic lesions and zoites indicative of Neospora. Serologic responses and production of infected fetuses/lambs indicated systemic neosporosis in the ewes during gestation, although tachyzoites could not be cultured from maternal tissues. The repetitive infection of fetuses, and resulting clinical and histopathologic findings in the present study are similar to those reported in naturally infected cattle, adding to the already established similarities of neosporosis between sheep and cattle.

Abortion, Habitual↗

Ingestion of Neospora caninum tissue cysts by Mustela species.

Dogs are a definitive host of Neospora caninum, a protozoal parasite that causes abortion in cattle. Mustelids were tested to determine if they could also be definitive hosts. The procedures used were the same as those previously used to test dogs. Ermine (Mustela erminea), weasels (Mustela frenata) and ferrets (Mustela putorius) were fed N. caninum-infected mice. Neospora caninum oocysts were not observed. Mustelid faeces were fed to mice. The mice did not seroconvert and N. caninum was not detected in murine brains using tissue culture and PCR. The hypothesis that Mustela spp. are definitive hosts of N. caninum is not supported.

Animals↗

Experimental inoculation of domestic pigeons (Columbia livia) and zebra finches (Poephila guttata) with Neospora caninum tachyzoites.

Dogs are a definitive host of Neospora caninum and cattle are intermediate hosts. Alternative life-cycles have not been investigated. Foxes are frequently seropositive, but may not commonly prey upon cattle; therefore, other intermediate hosts may exist that are frequent prey of foxes. Three domestic pigeons (Columbia livia) and three zebra finches (Poephila guttata) were inoculated with N. caninum tachyzoites, to determine if they could serve as intermediate hosts. Tissue culture, PCR, serology, and histology were all positive for one or more pigeons. All finches resisted infection. Further testing of columbiform birds as intermediate hosts of N. caninum is warranted.

Animals↗

A comprehensive library of DNA-binding site matrices for 55 proteins applied to the complete Escherichia coli K-12 genome.

A major mode of gene regulation occurs via the binding of specific proteins to specific DNA sequences. The availability of complete bacterial genome sequences offers an unprecedented opportunity to describe networks of such interactions by correlating existing experimental data with computational predictions. Of the 240 candidate Escherichia coli DNA-binding proteins, about 55 have DNA-binding sites identified by DNA footprinting. We used these sites to construct recognition matrices, which we used to search for additional binding sites in the E. coli genomic sequence. Many of these matrices show a strong preference for non-coding DNA. Discrepancies are identified between matrices derived from natural sites and those derived from SELEX (Systematic Evolution of Ligands by Exponential enrichment) experiments. We have constructed a database of these proteins and binding sites, called DPInteract (available at http://arep.med.harvard.edu/dpinteract).

Bacterial Proteins↗

4E binding proteins inhibit the translation factor eIF4E without folded structure.

The 4E binding proteins (4E-BP1 and 4E-BP2) inhibit translation by binding to the limiting, proto-oncogenic initiation factor eIF4E. 4E-BPs produced in Escherichia coli had little or no folded structure, measured by NMR and CD. However, these proteins inhibited translation in reticulocyte lysate. Furthermore, they bound to isolated mouse eIF4E, showing a few broader, dispersed new NMR signals but no general increase in chemical shift dispersion. A peptide with the sequence of 4E-BP1 residues 49-68 was sufficient to bind eIF4E and to inhibit translation in reticulocyte lysate. These results suggest that a short central region of the 4E-BPs is responsible for eIF4E binding and translation inhibition while the remainder is unfolded and flexible.

Amino Acid Sequence↗

Internal and overall motions of the translation factor eIF4E: cap binding and insertion in a CHAPS detergent micelle.

The mRNA cap-binding protein eIF4E is the limiting factor in the eIF4F translation initiation complex, which mediates the binding of the 40S ribosome to the mRNA. 15N relaxation studies have been used to characterize the backbone dynamics of deuterated eIF4E in a CHAPS micelle for the apoprotein, the m7GDP-bound form, and the dinucleotide (m7GpppA)-bound form, as well as for CHAPS-free eIF4E. Large differences in overall correlation time between the CHAPS-free form (11.8 ns) and samples containing different concentrations of CHAPS (15.9-19.4 ns) indicate that eIF4E is embedded in a large micelle in the presence of CHAPS, with a total molecular weight in the range of 40-60 kDa. CHAPS seems to restrict the mobility of the a2-b3 and a4-b5 loops which are thought to be embedded in the micelle. No significant changes in overall mobility were seen between the m7 GDP-bound form, the m7GpppA-bound form, and the apoprotein. Amide hydrogen exchange data indicate the presence of slowly exchanging amides in two surface-exposed helices (a2 and a4), as well as the a4-b5 loop, indicating protection by the CHAPS micelle. The micelle covers the convex side of the protein away from the cap-binding site.

Cholic Acids↗

Oral inoculation of cats with tissue cysts of Neospora caninum.

OBJECTIVE: To test the hypothesis that cats are definitive hosts of Neospora caninum. ANIMALS: 6 weaned male kittens obtained from 2 sources, and several dozen outbred mice. PROCEDURE: Cats were fed large numbers of 3 strains of N caninum: tissue cysts in buffered saline solution, mouse brain homogenates, and whole carcass homogenates from seropositive mice. Fecal specimens were examined for 4 weeks by use of flotation tests, and bioassays were performed in mice. One cat was inoculated parenterally with tachyzoites, to determine whether cats could respond serologically to N caninum. Tissue cysts from portions of oral inocula were cultured to verify viability. Indirect fluorescent antibody serologic testing, histologic and immunohistologic examinations, cell culture, and polymerase chain reaction procedures were performed 4 to 8 weeks after oral exposure, to seek evidence of infection of cats and mice. RESULTS: None of the cats or mice seroconverted to N caninum, with the exception of the single cat inoculated parenterally. Fecal shedding of oocysts was not observed, except for Isospora felis oocysts that were shed by 2 cats beginning prior to oral challenge exposure. Evidence of infection was not detected in tissues of cats or mice, with the exception of the parenterally inoculated cat. CONCLUSIONS: The hypothesis that cats are definitive hosts of N caninum is not supported. CLINICAL RELEVANCE: Extermination of cats in efforts to control bovine neosporosis is not warranted.

Animals↗

Dogs are definitive hosts of Neospora caninum.

Dogs were investigated to determine if they are definitive hosts of Neospora caninum. Four dogs were fed N. caninum tissue cysts in infected mouse tissue, and two negative control dogs were fed uninfected mouse tissue. Dog faeces were examined daily for 30 days using a sucrose flotation technique. Three challenged dogs shed spherical to subspherical unsporulated oocysts, measuring 10 to 11 microns in diameter. Oocysts sporulated within 3 days and contained two sporocysts, each with four sporozoites. Outbred, inbred, and gamma-interferon knockout mice were inoculated with canine faecal extracts and monitored for evidence of neosporosis using a variety of morphologic, immunohistologic, serologic, and genetic analyses. Mice that received faeces from each dog observed to shed oocysts were demonstrated to have neosporosis by two or more techniques. One mouse was demonstrated to be infected with N. caninum by immunohistochemistry, ultrastructural analysis, and a species-specific PCR test. No evidence of neosporosis was observed in control animals. Based on this study, dogs are a definitive host of Neospora caninum.

Animals↗

Structure of translation factor eIF4E bound to m7GDP and interaction with 4E-binding protein.

eIF4E, the mRNA cap binding protein, is a master switch that controls eukaryotic translation. To be active, it must bind eIF4G and form the eIF4F complex, which also contains eIF4A. Translation is downregulated by association of eIF4E with 4E-BP, which occupies the eIF4G binding site. Signalling events acting on 4E-BP cause it to dissociate from eIF4E, and eIF4E is then free to bind eIF4G to form the active eIF4F complex. We have solved the structure of the yeast eIF4E/m7Gpp complex in a CHAPS micelle. We determined the position of the second nucleotide in a complex with m7GpppA, and identified the 4E-BP binding site. eIF4E has a curved eight-stranded antiparallel beta-sheet, decorated with three helices on the convex face and three smaller helices inserted in connecting loops. The m7G of the cap is intercalated into a stack of tryptophans in the concave face. The 4E-BP binding site is located in a region encompassing one edge of the beta-sheet, the adjacent helix a2 and several regions of non-regular secondary structure. It is adjacent to, but does not overlap the cap-binding site.

Amino Acid Sequence↗

Relationship of the fourth heart sound to atrial systolic transmitral flow deceleration.

The fourth heart sound (S4) is thought to be due to cardiohemic vibrations, powered by deceleration of transmitral blood flow, that occur when atrial systole leads to a disproportionately high rise in ventricular end-diastolic pressure (relative to diastasis), associated with an enhanced atrial systolic blood filling volume or a stiff ventricular wall. To characterize S4 production, we modeled the cardiohemic system as a forced, damped nonlinear harmonic oscillator. The forcing term used a closed-form expression for the Doppler A-wave contour. We simultaneously recorded transthoracic phonocardiograms and Doppler A waves in subjects with and without audible S4 and compared model predictions for S4 amplitude, frequency, and power spectrum with those of the recorded S4. Excellent agreement was observed between the model-predicted amplitude, duration, timing, and power spectrum and those of the phonocardiographic S4. We conclude that, with a normal mitral valve, there should always be an oscillation of the cardiohemic system during A-wave deceleration. However, oscillations may not have high enough amplitude, frequency, or coupling to the chest wall to be clinically audible as an S4.

Atrial Function↗

Separation and cryopreservation of Neospora caninum tissue cysts from murine brain.

A protocol was developed for the separation, concentration enumeration, and cryopreservation of Neospora caninum tissue cysts from mouse brains. Brains from chronically infected mice were homogenized and tissue cysts counted in 10-microliters aliquots. Tissue cysts were separated from brain homogenates by centrifugation at 4,400 g on 35% (v/v) Percoll/phosphate-buffered saline (PBS) continuous-density gradients. After removal of the brain layer, the separated tissue cysts were concentrated by diluting the remaining solution with PBS and centrifuging at 500 g. The pellet was resuspended in PBS and tissue cysts were enumerated. Fifty percent of tissue cysts were recovered from brains centrifuged once and 64% from brains centrifuged twice. Tissue cysts were preserved with 7.5% dimethyl sulfoxide in horse serum at -60 C. After thawing, bradyzoites were digested in an acid/pepsin solution and placed onto Vero cell cultures. Neospora caninum tachyzoites were recovered from cell cultures, indicating that bradyzoites retained viability after concentration and cryopreservation. Separated tissue cysts ranged in diameter from 107 microns to 15 microns (average = 31 microns), and the average bradyzoite dimensions were 2 x 7.5 microns. These methods make it possible to store viable N. caninum tissue cysts for oral-infectivity trials and other studies.

Animals↗

A protocol for the production of Neospora caninum tissue cysts in mice.

Identification of a definitive host for Neospora caninum has been inhibited by lack of an efficient method for producing bradyzoites, needed for oral infectivity trials. An improved protocol for producing bradyzoite-containing tissue cysts in mouse brains is described. Six variables, including mouse strain (Balb/C, CBA/Ca, and ICR), sex, N. caninum isolate (NC-2 and NC-Liverpool), tachyzoite inoculum dose, immunosuppression with methylprednisolone acetate (MPA), and sulfadiazine treatment were tested. Tissue cyst numbers were estimated using an immunohistologic staining procedure specific for bradyzoites. Male ICR mice (> or = 30 g) that were immunosuppressed with 2 mg MPA 7 days prior to and 2.5 mg MPA at the time of subcutaneous inoculation with 400,000 N. caninum tachyzoites produced the highest numbers of tissue cysts. Significant numbers were produced by methods using the NC-2 strain of N. caninum; however, protocols using NC-Liverpool produced greater numbers of tissue cysts. Sulfadiazine treatment did not appear to contribute to tissue cyst production. The procedure described is superior to previously described methods with regard to numbers of tissue cysts produced, protocol reproducibility, and survival of mice until tissue cyst formation.

Animals↗

Experimental neosporosis in pregnant ewes and their offspring.

Six groups of six pregnant ewes each were inoculated with 170,000 or 1,700,000 tachyzoites of Neospora caninum on gestation day 65, 90, or 120. All ewes seroconverted, and none showed signs of illness other than abortion. Regardless of the inoculum dose, all ewes inoculated on gestation day 65 aborted; ewes inoculated on gestation day 90 aborted, gave birth to weak lambs, or gave birth to clinically normal lambs; and all ewes inoculated on gestation day 120 gave birth to clinically normal lambs. Using an immunohistological procedure that stains bradyzoites, we observed protozoal cysts in brains of 11 of 29 (38%) aborted fetuses, in one of four (25%) weak lambs, and in seven of 18 (39%) clinically normal lambs. Cysts were not observed in extraneural tissues from two clinically normal lambs that had cysts in the brain. No evidence of infection was observed in tissues of five ewes examined using an immunohistological procedure that stains N. caninum tachyzoites and bradyzoites. Multifocal nonsuppurative encephalitis was observed in 46 of 51 (90%) aborted, weak, or clinically normal lambs. Cerebral necrosis, dystrophic mineralization, and meningitis were also commonly identified in live and aborted lambs (even when severely autolyzed). Nonsuppurative, necrotizing placentitis was observed in 15 of 17 (88%) placentas. Nonsuppurative myositis was common in fetuses but not in live lambs. Inflammation occurred less frequently in liver and lung. Clinical and pathological features of neosporosis in sheep closely resemble those of bovine neosporosis and ovine toxoplasmosis. Although abortion caused by naturally occurring neosporosis in sheep has not been reported, diagnosticians should carefully distinguish between neosporosis and toxoplasmosis in cases of ovine protozoal abortion unless future investigations exclude the likelihood of naturally acquired neosporosis in sheep.

Abortion, Veterinary↗

An immunohistochemical method for detecting bradyzoite antigen (BAG5) in Toxoplasma gondii-infected tissues cross-reacts with a Neospora caninum bradyzoite antigen.

The previously cloned gene of a bradyzoite-specific antigen (BAG5) of Toxoplasma gondii was used to express a fusion protein for subsequent antiserum production in rabbits. The BAG5 antiserum was used in an immunohistochemical procedure to look for reactive epitopes in bradyzoites and tachyzoites of T. gondii within animal tissues. Encysted bradyzoites in brain were stained deeply and diffusely. Although most unencysted organisms in brain were not stained, occasional free organisms had mild to deep staining. There was no staining of tachyzoites in liver where cysts were not observed. Neospora caninum organisms within animal tissues were also examined using the BAG5 immunohistochemical procedure. The BAG5 antiserum cross-reacted with N. caninum bradyzoites but had no affinity for tachyzoites.

Animals↗

Laparoscopic surgery in a mobile army surgical hospital deployed to the former Yugoslavia.

The 212th Mobile Army Surgical Hospital was deployed from a United States military base in Germany to the former Yugoslavia to provide medical support for more than 25,000 United Nations soldiers. This medical unit was the first mobile hospital ever to deploy with a capability for laparoscopic surgery. During a 2-month trial period, seven laparoscopic procedures were performed for various abdominal emergencies. There were no complications, and all patients returned to full duty within 1 week. No equipment problems or other logistical obstacles were identified. This preliminary report suggests that laparoscopic surgery is quite feasible in a forward-deployed field hospital, allowing combat soldiers to return to full duty in a much shorter time than after conventional surgery.

Abdomen↗

A simplified method of retrieving gallstones from the abdominal cavity following laparoscopic transcystic common duct stone extraction.

Laparoscopic techniques for common bile duct stone extraction are becoming increasingly more refined. Current options for removal of gallstones from the common bile duct include: (1) transcystic choledochoscopic stone extraction, (2) combined laparoscopic/fluoroscopic stone extraction using a helical stone basket, and (3) laparoscopic choledochotomy with T-tube insertion. The tactics for subsequent removal of the stones from the abdominal cavity to the outside have not yet received as much attention. A technique is reported for stone recovery which has been found to be useful following transcystic choledochoscopy.

Abdomen↗