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C Clayton

Publications and source records attributed to C Clayton.

At least 55 records · Page 3Linked to original sources

Inducible gene expression in trypanosomes mediated by a prokaryotic repressor.

An inducible expression system was developed for the protozoan parasite Trypanosoma brucei. Transgenic trypanosomes expressing the tetracycline repressor of Escherichia coli exhibited inducer (tetracycline)-dependent expression of chromosomally integrated reporter genes under the control of a procyclic acidic repetitive protein (PARP) promoter bearing a tet operator. Reporter expression could be controlled over a range of four orders of magnitude in response to tetracycline concentration, a degree of regulation that exceeds those exhibited by other eukaryotic repression-based systems. The tet repressor-controlled PARP promoter should be a valuable tool for the study of trypanosome biochemistry, pathogenicity, and cell and molecular biology.

Animals↗

Role of 3'-untranslated regions in the regulation of hexose transporter mRNAs in Trypanosoma brucei.

Trypanosoma brucei is a unicellular parasite that is transmitted from one mammalian host to the next by tsetse flies. The expression of many trypanosome genes is regulated during the life cycle but there is no evidence for developmental control of transcription by RNA polymerase II. T. brucei expresses at least two hexose transporter mRNAs that are developmentally regulated; we show here that specific portions of the 3'-untranslated regions are responsible for the differential expression. Different trypanosome 3'-untranslated regions, from surface protein, phosphoglycerate kinase and aldolase genes as well as the hexose transporter genes, conferred a spectrum of levels of reporter gene expression, and these activities differed between bloodstream forms and the procyclic forms that replicate in the tsetse vector. Experiments with permanently transformed cell lines showed that regulation occurs at the mRNA level. The results suggest that post-transcriptional control of mRNAs in trypanosomatids operates at several levels, and that it will not always be possible to attribute all the regulation to short RNA motifs.

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Protein trafficking in kinetoplastid protozoa.

The kinetoplastid protozoa infect hosts ranging from invertebrates to plants and mammals, causing diseases of medical and economic importance. They are the earliest-branching organisms in eucaryotic evolution to have either mitochondria or peroxisome-like microbodies. Investigation of their protein trafficking enables us to identify characteristics that have been conserved throughout eucaryotic evolution and also reveals how far variations, or alternative mechanisms, are possible. Protein trafficking in kinetoplastids is in many respects similar to that in higher eucaryotes, including mammals and yeasts. Differences in signal sequence specificities exist, however, for all subcellular locations so far examined in detail--microbodies, mitochondria, and endoplasmic reticulum--with signals being more degenerate, or shorter, than those of their higher eucaryotic counterparts. Some components of the normal array of trafficking mechanisms may be missing in most (if not all) kinetoplastids: examples are clathrin-coated vesicles, recycling receptors, and mannose 6-phosphate-mediated lysosomal targeting. Other aspects and structures are unique to the kinetoplastids or are as yet unexplained. Some of these peculiarities may eventually prove to be weak points that can be used as targets for chemotherapy; others may turn out to be much more widespread than currently suspected.

Animals↗

Effects of chronic supraventricular pacing tachycardia on relaxation rate in isolated cardiac muscle cells.

Chronic supraventricular pacing tachycardia (SVT) causes abnormalities in both ventricular and cellular relaxation. The mechanisms causing these abnormalities have not been fully determined. To examine two of the possible mechanisms, a decrease in restoring force or an impairment of the intrinsic myocardial relaxation process, cardiocytes were enzymatically isolated from the left ventricle of pigs subjected to left atrial pacing at 240 beats/min for 3 wk and normal control pigs. SVT caused a decrease in the extent of cardiocyte shortening and the velocity of cardiocyte lengthening. To determine whether the changes in the relaxation velocity merely reflected a concomitant decrease in the extent of cardiocyte shortening (and a resultant decrease in restoring forces) or, in addition, reflected impairment in intrinsic relaxation properties, the relation between cardiocyte relaxation velocity and cardiocyte shortening extent was examined. There was a direct relation between relaxation velocity and shortening extent in both control and SVT cardiocytes. However, SVT decreased the relaxation velocity at any common extent of shortening and decreased the slope of the direct relation (slope 5.91 in control vs. 3.51 s-1 in SVT, P < 0.05). Therefore, these data suggested that SVT caused a primary impairment in the intrinsic myocardial relaxation process independently of a decrease in restoring force.

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Iron overload facilitates hepatic fibrosis in the rat alcohol/low-dose carbon tetrachloride model.

The role of iron deposition in initiating hepatic fibrosis in iron overload disorders is not clearly established, and it is becoming increasingly recognized that iron may be interacting with other potential liver-damaging agents. The authors therefore examined the interplay of iron and alcohol in rats administered subtoxic doses of carbon tetrachloride (CCl4) vapor at 20 ppm in customized chambers. At birth, the offspring of seven pregnant Porton rats were divided into two groups: one group was fed a normal rat chow diet and the other a diet supplemented with 3% (w/w) carbonyl iron for 10 weeks after weaning. In this latter group, the mothers were fed an iron supplement while breastfeeding. At 10 weeks, the animals from the first group (normal chow) were divided into two groups of six animals and fed a Lieber-DeCarli liquid diet with daily exposure to CCl4 vapor: group 1, liquid diet+CCl4; group 2, liquid diet+alcohol 150 kcal/l+CCl4. The animals from the second iron-supplemented group were divided into two groups of six animals and fed a liquid diet with 3% (w/v) carbonyl iron and exposed to CCl4 vapor for 10 weeks: group 3, liquid diet+iron+CCl4; group 4, liquid diet+iron+alcohol supplement+CCl4. Two animals from each group of six had a liver biopsy at 4, 6, and 8 weeks, and all animals were killed after 10 weeks of CCl4 exposure. After the first 10-week iron loading period, the rats fed the carbonyl iron-supplemented diet had a 10-fold elevation in hepatic iron concentration.(ABSTRACT TRUNCATED AT 250 WORDS)

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Gene expression mediated by bacteriophage T3 and T7 RNA polymerases in transgenic trypanosomes.

Messenger RNAs of higher eukaryotes share a functionally essential 5' monomethyl CAP structure generated during a reaction that is linked exclusively to RNA polymerase II transcription. In unicellular parasites belonging to the Kinetoplastida, however, mRNAs acquire their 5' CAP through a trans-splicing reaction which effectively uncouples pol II transcription and capping. Consequently functional mRNAs can be produced by endogenous RNA polymerase I. Here we demonstrate the extension of this flexibility to heterologous bacteriophage polymerases. Transgenic Trypanosoma brucei cell lines stably expressing functional, nuclearly localized T3 or T7 RNA polymerase were established and assayed using reporter plasmids bearing the corresponding phage promoters. In these cell lines the levels of phage promoter-driven gene expression ranges from one half to greater than 5 times that mediated by endogenous pol I. Analysis of 5' ends of transcripts synthesized by the T7 polymerase revealed that they are trans-spliced. Thus the usual eukaryotic link between mRNA production and pol II transcription can be by-passed by the introduced phage polymerases, thereby significantly expanding the critically small panel of promoters currently available for exploitation in reverse genetic approaches in T. brucei.

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Factors that bind to RNA polymerase I promoter sequences of Trypanosoma brucei.

The procyclic acidic repetitive protein (procyclin) and variant surface glycoprotein genes of Trypanosoma brucei are transcribed by a polymerase sharing many features with RNA polymerase I. Mutational analyses on the PARP and ribosomal RNA promoters have shown that sequences important for promoter activity are concentrated 20-60 bp upstream of the transcription initiation site. The results of gel mobility shift assays using synthetic oligonucleotides spanning of these regions indicated the presence in trypanosomal extracts of factors capable of binding each promoter in a highly specific fashion. There was no evidence that the PARP, VSG and rRNA promoter fragments bound the same factor.

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Hierarchies of RNA-processing signals in a trypanosome surface antigen mRNA precursor.

Nearly all trypanosome mRNAs are synthesized as polycistronic precursors, from which mature mRNAs are excised by trans splicing and polyadenylation. Polyadenylation of a procyclic acidic repetitive protein (PARP, or procyclin) transcript was studied by transient transfection of constructs bearing a chloramphenicol acetyltransferase gene linked to the PARP intergenic region. Polyadenylation usually occurred at A residues, about 100 bases upstream of a trans-splicing acceptor signal. The wild-type polyadenylation site has a cryptic trans-splicing signal about 100 bp downstream: deletion or inversion of this signal results in polyadenylation at multiple sites, upstream of other cryptic trans-splicing signals. The PARP mRNA precursor appears to contain a hierarchy of possible processing signals, the function of cryptic ones being revealed only when the dominant ones are deleted or moved. Correct polyadenylation can be restored by addition of trans-splicing signals from other loci. The results indicate that polyadenylation is coupled to downstream trans splicing but that the products of the trans-splicing reaction are not necessarily functional mRNAs.

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The PARP and rRNA promoters of Trypanosoma brucei are composed of dissimilar sequence elements that are functionally interchangeable.

The African trypanosomes express two major surface proteins, the variant surface glycoprotein (VSG) and the procyclic acidic repetitive protein (PARP). The RNA polymerase that transcribes the VSG and PARP genes shares many characteristics with RNA polymerase I. We show that although there is very little similarity in nucleotide sequence, the functional structure of a trypanosome rRNA promoter is almost identical to that of the PARP promoter. Further, domains from the PARP promoter can functionally substitute for the corresponding parts of the rRNA promoter, and vice versa.

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Family screening for genetic haemochromatosis. What is the most effective method of contact?

OBJECTIVE: To evaluate the effectiveness of various approaches to follow-up screening of family members after genetic haemochromatosis (GH) has been diagnosed in an individual. DESIGN AND SETTING: Thirty-eight patients diagnosed with GH at the Flinders Medical Centre and Repatriation General Hospital in South Australia over a 16-year period were identified by review of case notes. If possible, a questionnaire and a follow-up interview were used to obtain information about the screening that had been done and any obstacles to screening that were encountered. Patients were asked to outline a family tree, and indicate who had and who had not been screened and reasons for not screening. EVALUATION CRITERION: The number of relatives screened or not screened. RESULTS: The families of 71% of patients diagnosed with haemochromatosis were subject to some degree of screening, although complete screening was achieved in only 13%. Approximately a third (30%) of our GH patients were detected by family screening. However, not all relatives who were at risk were screened. Reasons given for not screening were, for example, ignorance about "genetic disease" and fear of treatment. CONCLUSION: Family screening is an important means of detecting new cases of GH. If these findings reflect practice elsewhere, there is a need for education of medical practitioners regarding those who should be screened. More easily accessible information for patients with GH and their relatives would help to overcome some of the problems surrounding identification of the disease.

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A possible role for the 3'-untranslated region in developmental regulation in Trypanosoma brucei.

A series of Trypanosoma brucei transfection vectors was constructed in which transcription of the luciferase gene was driven by the procyclic acidic repetitive protein (procyclin) promoter. The untranslated regions surrounding the luciferase gene were derived from the actin, fructose bisphosphate aldolase, or PARP loci. Trans-splicing of the resulting transcripts occurred as expected, but the site of 3' polyadenylation was upstream of the position anticipated. The nature of the 3'-untranslated region was crucial to the level of expression in bloodstream forms.

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Myocardial Na+,K(+)-ATPase in tachycardia induced cardiomyopathy.

Na+,K(+)-ATPase is a major determinant of myocyte homeostasis and excitation-contraction. Cardiac glycosides such as digitalis and ouabain increase the inotropic state of the heart through the inhibition of Na+,K(+)-ATPase. While cardiac glycosides are commonly used in the setting of congestive heart failure, optimal therapy would depend upon an intact Na+,K(+)-ATPase system. Changes in Na+,K(+)-ATPase activity and glycoside receptor density with the development of cardiomyopathy have not been well defined. Accordingly, left ventricular (LV) function and Na+,K(+)-ATPase activity and glycoside binding were examined in 7 pigs with dilated cardiomyopathy and in 7 controls. Dilated cardiomyopathy was produced by pacing induced supraventricular tachycardia (SVT) for 3 weeks at 240 bpm. Left ventricular function was examined by simultaneous echocardiography and catheterization. Left ventricular fractional shortening significantly decreased with SVT (34 +/- 2 vs. 10 +/- 2%, P less than 0.05) and LV diastolic dimension and pressure significantly increased (3.8 +/- 0.3 vs. 5.1 +/- 0.4 cm, and 8 +/- 2 vs. 27 +/- 2 mmHg, respectively, P less than 0.05) as compared to controls. Na+,K(+)-ATPase activity was assayed as potassium dependent p-nitrophenol-phosphatase activity. Glycoside receptor density (Bmax) and affinity (KD) was determined using [3H]-ouabain binding assays. Na+,K(+)-ATPase activity, Bmax, and KD all significantly fell from control values with SVT induced cardiomyopathy (0.64 +/- 0.06 vs. 0.45 +/- 0.12 micrograms pNP/mg/h, 5.5 +/- 0.4 vs. 1.9 +/- 0.4 pmol/mg, and 15 +/- 3 vs. 9 +/- 3 nM, respectively, P less than 0.05). The distribution of Na+,K(+)-ATPase in LV sections taken from control and SVT hearts were examined using immunohistochemical techniques. A patchy distribution of Na+,K(+)-ATPase along the sarcolemma in SVT sections was observed as opposed to a more uniform distribution in control myocytes. There was no observable change in the relative content and distribution of the Na+,K(+)-ATPase isoforms alpha 2 and alpha 3 in the SVT sections as compared to controls. In an additional set of experiments, changes in LV as well as isolated myocyte responsiveness to ouabain were examined. Left ventricular fractional shortening and peak dP/dt were measured following administration of 20-60 micrograms/Kg of ouabain in control (n = 3) and SVT (n = 3) pigs. In the control group, 40 micrograms/Kg caused a 25% in LV fractional shortening and a 60% increase in peak dP/dt from baseline. Cumulative doses of 60 micrograms/Kg in the control pigs resulted in over a 75% increase in peak dP/dt from baseline values.(ABSTRACT TRUNCATED AT 400 WORDS)

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Glycosome assembly in trypanosomes: variations in the acceptable degeneracy of a COOH-terminal microbody targeting signal.

Trypanosomes compartmentalize most of their glycolytic enzymes in a peroxisome-like microbody, the glycosome. The specificity of glycosomal targeting was examined by expression of chloramphenicol acetyltransferase fusion proteins in trypanosomes and monkey cells. Compartmentalization was assessed by cell fractionation, differential detergent permeabilization, and immunofluorescence. The targeting signal of trypanosome phosphoglycerate kinase resides in the COOH-terminal hexapeptide, NRWSSL; a basic amino acid is not required. The minimal targeting signal is, as for mammalian cells, a COOH-terminal tripeptide related to -SKL. However, the acceptable degeneracy of the signal for glycosomal targeting in trypanosomes is considerably greater than that for peroxisomal targeting in mammals, with particularly relaxed requirements in the penultimate position.

Amino Acid Sequence↗