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D S Turner

Publications and source records attributed to D S Turner.

At least 19 recordsLinked to original sources

Analysis of polypurine tract-associated DNA plus-strand priming in vivo utilizing a plant pararetroviral vector carrying redundant ectopic priming elements.

Initiation of DNA plus-strand synthesis in most reverse-transcribing elements requires primer generation by reverse transcriptase-associated RNase H at one or more template polypurine tracts (PPTs). We have exploited infectious clones of the plant pararetrovirus cauliflower mosaic virus carrying redundant ectopic plus-strand priming elements to study priming in vivo. Ectopic priming generated an additional discontinuity in progeny virion DNA during infection of plants. We found that altering the length of the 13-base pair PPT by +/-25% significantly reduced priming efficiency. A short pyrimidine tract 5' to the PPT, highly conserved among diverse reverse-transcribing elements, was shown to play an important role in PPT recognition in vivo. The predominant DNA plus-strand 5' end remained 3 nucleotides from the PPT 3' end in mutant primers that were longer or shorter than the wild-type primer. Use of an ectopic redundant primer to study replication-dependent priming was validated by demonstrating that it could rescue infectivity following destruction of the wild-type priming elements. We propose a model for plant pararetroviral plus-strand priming in which pyrimidines enhance PPT recognition during polymerase-dependent RNase H cleavages, and suggest that fidelity of primer maturation during polymerase-independent cleavages involves PPT length measurement and 3' end recognition by RNase H.

Amino Acid Sequence↗

Nurses as patient-teachers: exploring current expressions of the role.

An exploration of nursing literature reveals a broad acceptance of the role of patient-teacher. While patient-teaching has become widely accepted as part of nursing practice, there is little published evidence to support an assertion of its centrality in current nursing practice. Patient-teaching has been variously described, yet there is evidence of polarity in its construction. This polarity is between a health promotion empowerment framework and a mechanistic-interventionist framework. Further, there is little visible consensus about the scope and boundaries of patient-teaching by nurses. Preliminary findings from a pilot study of nurses' perceptions of patient-teaching reveal tensions created within these contradictory frameworks. Nurses find themselves positioned as paternalistic in their approach to patients and simultaneously subservient to other disciplines in determining the focus of patient-teaching.

Attitude of Health Personnel↗

Expression of functional elements inserted into the 35S promoter region of infectious cauliflower mosaic virus replicons.

We describe experiments directed towards development of cauliflower mosaic virus (CaMV) replicons for propagation of functional elements during infection of plants. Modifications and inserts were introduced into replaceable domains associated with the 35S promoter. The 35S enhancer (-208 to -56) was found to potentiate promoter activity when in reverse orientation sufficient to establish systemic infection. However, replacement of the 35S enhancer with that from the nos promoter caused loss of infectivity. A 31 bp oligonucleotide containing a polypurine tract specifying initiation of CaMV plus strand DNA synthesis was inserted into a 35S enhancer deletion mutant and propagated in plants. Analysis of progeny DNA showed the presence of an additional discontinuity at its new location in the 35S enhancer, indicating that the artificial primer had functioned correctly in an ectopic site. An intron and flanking sequences from the RNA leader of the Arabidopsis phytoene desaturase (pds) gene, when inserted into the 35S enhancer in forward orientation was very efficiently spliced during infection. The CaMV replicon carrying the pds gene fragment produced unusual infection characteristics, with plants showing early symptoms and then recovering. We conclude that infectious CaMV replicons can be used to carry a variety of elements that target both viral and host functions.

Arabidopsis↗

Orthodontic adhesives and bond strength testing.

A bracket bond failure is a frustrating occurrence in orthodontic practice. Because the location of the bond failure may indicate the probable cause, it is important to understand the significance of "bond strength" in a clinical application. Bonding in orthodontics can be studied using controlled clinical models or in vitro using simulated clinical models or more fundamental, isolated substrate models, in which bonding of an adhesive to tooth structure or a bracket is studied independently. With numerous adhesives and orthodontic band and bracket materials available as well as other orthodontic substrates besides enamel, such as esthetic ceramic restorations, in vitro models play an important role in characterizing the bonding potential of new systems. This article reviews bonding of orthodontic brackets and bands using various orthodontic adhesives to dental substrates from the perspective of bond strength and its measurement.

Acid Etching, Dental↗

Insulin-stimulated Glut 4 translocation in human skeletal muscle: a quantitative confocal microscopical assessment.

Insulin stimulation of glucose transport in skeletal muscle is considered to involve translocation of the skeletal muscle/adipose tissue glucose transporter isoform, Glut 4, from cytosolic vesicles to the cell surface. The current study was undertaken to investigate Glut 4 translocation in skeletal muscle of healthy volunteers during euglycaemic insulin infusion. Previous quantitative studies of glucose transport have depended on differential centrifugation methods, which demand large biopsy samples. In this study we have developed and applied a quantitative method using confocal laser microscopy, well suited to the small needle biopsies that are typically available clinically. Percutaneous biopsy of vastus lateralis skeletal muscle was performed during basal and euglycaemic insulin-stimulated conditions, and Glut 4 translocation was assessed using immunohistochemical labelling and confocal laser microscopy imaging in 14 healthy lean subjects. At physiological hyperinsulinaemia (536 +/- 16 pM), mean systemic glucose utilization was 9.27 +/- 0.78 mg/kg-min, indicative of normal insulin sensitivity. The presence of Glut 4 at the sarcolemma increased significantly (p < 0.01), with a ratio of insulin-stimulated to basal sarcolemmal Glut 4 of 1.85 +/- 0.33, indicative of insulin-stimulated Glut 4 translocation. The area of Glut 4-labelled sites also increased significantly (p < 0.01) in response to insulin infusion; this ratio was 1.56 +/- 0.13. Thus, at physiological hyperinsulinaemia, the amount of Glut 4 at the cell surface of skeletal muscle in healthy, lean individuals increases approximately twofold over basal conditions, and this process can be measured using immunohistochemical labelling imaged by confocal laser scanning microscopy.

Adult↗

Roles of the 35S promoter and multiple overlapping domains in the pathogenicity of the pararetrovirus cauliflower mosaic virus.

Elements associated with the 35S promoter involved in generating the pregenomic RNA (35S RNA) of the pararetrovirus cauliflower mosaic virus have been extensively studied in heterologous systems, but little is known about their role in viral pathogenicity. To investigate these elements, premature termination codons were progressively inserted into the 3' end of the adjacent gene VI to dissect it from colinear 35S enhancer sequences. The ability to cause a systemic infection in plants was retained with loss of up to 40 amino acids from the gene VI polypeptide, but truncations into a putative zinc finger proved lethal. In the 35S promoter, removal of the TATA box also abolished infectivity. However, upstream deletions encompassing the 35S enhancer showed that the sequence between -207 and -56 from the cap site comprised nonessential elements, although complete removal of this fragment caused loss of infectivity even when domain spacing was restored by linker insertion. Two separate enhancer domains (-207 to - 150 and -95 to -56) were identified, of which either one or the other, but not both, was required for infectivity. Some mutations affected the cellular levels of viral RNAs in unexpected ways, as with removal of the as-1 enhancer element causing an increase in 35S RNA. Others altered the relative abundance of nuclear and cytoplasmic viral DNAs. Mutations in promoter domains thought to be involved in regulating tissue-specific expression did not significantly affect virus accumulation in leaves versus roots, whereas gene VI mutants showed reduced root accumulation. We conclude that elements associated with the cauliflower mosaic virus 35S promoter contain extensive nonessential regions that can behave differently in their proper context than as isolated elements.

Base Sequence↗

Inducible nitric oxide synthase expression in cerebrovascular smooth muscle and neutrophils after traumatic brain injury in immature rats.

The inflammatory response after traumatic brain injury (TBI) includes cytokine production, leukocyte infiltration, and microglial activation. Production of nitric oxide by inducible nitric oxide synthase (iNOS) occurs during acute inflammation outside of the CNS and in models of cerebral ischemia, and therefore may contribute to the inflammatory response after TBI. The purpose of this study was to localize and define the time course of iNOS expression after TBI in the immature rat. Immature Wistar rats (age 3.5-4.5 wk) were anesthetized and subjected to percussive trauma to the right parietal cortex. Nontraumatized rats were used as controls (n = 7). At 2, 24, 48, or 168 h (n = 3/group) posttrauma rats were killed by perfusion fixation. Brains were removed, frozen, sectioned, immunostained with antibodies against iNOS and glial fibrillary acidic protein (GFAP, a marker specific for astrocytes), and imaged using fluorescent detection systems. There was no detectable expression of iNOS in control brains. At 2h, minimal cerebrovascular iNOS expression was seen in the peritrauma area. At 24 and 48 h, there was marked peritrauma cerebrovascular iNOS expression that appeared to be restricted to vascular smooth muscle cells and infiltrated leukocytes. Further dual-immunolabeling showed that the leukocytes expressing iNOS were predominantly neutrophils. At 168 h, iNOS expression was no longer detectable. iNOS was not detectable in GFAP-positive cells. The prominent expression of iNOS protein after TBI in cerebrovascular smooth muscle cells and infiltrated neutrophils suggests that iNOS may play a role in cerebrovascular disturbances and secondary brain injury after trauma.

Animals↗

Hearing loss and cochlear abnormalities in the congenital hypothyroid (hyt/hyt) mouse.

The congenital hypothyroid (hyt/hyt) mouse has been described as having a homozygous recessive mutation of a single locus on chromosome 12 which results in significant endocrine hypofunction and retarded growth. Although a distinct correlation between inherited hypothyroidism and hearing loss in humans exists, there has been no previous evaluation of the auditory system in these mutant mice. We determined hearing thresholds by auditory-evoked brainstem response testing and noted a 40-45 dB elevation in the hyt/hyt mouse compared to littermate heterozygote (hyt/+) animals and normal progenitor controls BALB/cByJ (+/+). Conventional light microscopy was used to examine the general anatomy of the cochlea in these animals, and the surface structure of the organ of Corti was further evaluated with scanning electron microscopy. Heterozygote and normal control mice had no significant abnormalities of the cochlea, however the hyt/hyt mice displayed consistent morphologic abnormalities of the stereocilia on both inner and outer hair cell systems. The surrounding and supporting cells were identified in the cochleas of the hypothyroid mouse and control animals and showed no significant histologic abnormalities. The auditory, histologic, and ultrastructural characterization of this model provides a foundation for evaluating the effects of true inherited hypothyroidism on auditory pathway development.

Animals↗

Diagnostic procedures for catheter malfunction in programmable implantable intraperitoneal insulin infusion devices.

OBJECTIVE: To evaluate the roles of 1) abdominal radiography, 2) a pressure diagnostic procedure (PDP) using a standardized diluent infusion into the catheter sideport, and 3) radiocontrast imaging of the catheter lumen as procedures for diagnosing catheter malfunction in diabetic patients implanted with a programmable intraperitoneal infusion device. RESEARCH DESIGN AND METHODS: Sixteen type I diabetic patients implanted with Infusaid programmable intraperitoneal insulin pumps were studied. The ability of the above three procedures to assist diagnosis of catheter malfunction and distinguish between occlusion and catheter breakage was retrospectively analyzed. Glycated hemoglobin was measured to determine the clinical importance of catheter malfunctions and decreases in pump flow due to insulin aggregation in the pump chamber. RESULTS: Mean glycated hemoglobin levels increased significantly from 8.0 +/- 0.3 to 9.0 +/- 0.4% (P < 0.05) before and after catheter malfunction, but not during pump flow slowdowns. Mean peak pressure during PDP was 1.96 +/- 0.14 psi (P < 0.01 vs. normal) in reversibly occluded catheters and 1.86 +/- 0.35 psi (P < 0.05 vs. normal) in broken catheters, compared with 1.32 +/- 0.23 psi in normal catheters. Decay times during PDP were > 50 s for both reversibly occluded and broken catheters (P < 0.001 vs. normal of 3.6 +/- 0.82 s). Abdominal radiographs and sideport injections of contrast material were used to distinguish the types of broken catheters. CONCLUSIONS: Catheter breakage and occlusion are complications in implantable insulin infusion systems and result in metabolic deterioration. The presence of a sideport allows pressure data and radiographic procedures to assist in determining the cause of catheter malfunction. A diagnostic algorithm was generated to improve efficiency in investigating catheter problems.

Adult↗

Insulin antibody responses after long-term intraperitoneal insulin administration via implantable programmable insulin delivery systems.

OBJECTIVE: To determine whether insulin antibodies are generated in diabetic patients after short- and long-term intraperitoneal insulin use and, if so, whether they are of potential clinical interest. Insulin antibodies commonly develop in diabetic patients who use subcutaneous human insulin, although their clinical significance remains controversial. Few data are available regarding insulin antibody responses to intraperitoneal insulin. RESEARCH DESIGN AND METHODS: We studied insulin antibody levels and clinical diabetes control in 25 type 1 diabetic patients treated for 3-6 years with intraperitoneal surfactant-stabilized porcine modified human insulin delivered by implantable programmable insulin delivery systems. RESULTS: All patients had preimplantation insulin antibody levels < 20 microU/ml, with a mean value of 2 +/- 2 microU/ml (1 SD). Mean antibody levels increased throughout the study period to a mean maximum of 197 +/- 326 microU/ml (P < 0.02) with 11 of 25 (44%) patients' levels exceeding 20 microU/ml (insulin responders). The mean time to significant antibody development was 21.8 +/- 4.4 months. Of the 11 responder patients, 4 had clinical syndromes that consisted of increasing daily insulin requirements and/or nocturnal hypoglycemia despite minimal nighttime basal insulin infusion rates associated with peak antibody levels > 200 microU/ml. None of the nonresponder patients (antibody levels < 20 microU/ml) had these clinical findings. CONCLUSIONS: Our results indicate that insulin antibody levels observed during intraperitoneal administration of human insulin are 1) similar to those reported during subcutaneous administration; although the rise in antibody level may be delayed compared with subcutaneous human insulin, 2) associated with a patient subset who are insulin antibody responders after switching from subcutaneous to intraperitoneal human insulin, 3) associated with a decrease in levels among responder patients regardless of whether they discontinue or continue pump use, and 4) associated with increased insulin needs and/or nocturnal hypoglycemia despite minimal basal rate insulin infusion at nighttime when antibody levels exceed 200 microU/ml.

Adult↗

Changes in populations of cauliflower mosaic virus DNA and RNA forms during turnip callus proliferation.

Cauliflower mosaic virus (CaMV) nucleic acids accumulate in the cell in different structural conformations related to their roles in gene expression, replication and virion assembly. We have characterized changes in the population CaMV DNA and RNA replication products which occur following culture of infected turnip leaves under conditions where callus proliferates. After only 5 days in culture, a significant increase in the level of genome-length and subgenomic supercoiled (SC) DNA forms was observed by two-dimensional (2D) gel electrophoresis. Open circular (OC) molecules, corresponding to these SC DNAs, with mobilities consistent with the presence of a single break in each strand, were also detected after 5 days culture. By 10 days culture, the proportion of OC molecules with only one break per double-stranded molecule had increased. After 34 days culture, SC DNA with a range of sizes predominated in the unencapsidated DNA fraction. The change in pattern of OC and SC DNA forms during callus proliferation suggests a possible precursor/product relationship involving generation of deleted molecules from gap-containing virion DNA-like molecules followed by sequential repair of the gaps to produce SC DNA. Moreover, heterogeneity in the mobility of OC DNAs in the neutral dimension of 2D electrophoresis, a feature exhibited by twisted CaMV virion DNA, changed during the time-course suggesting that untwisting occurs during gap repair. Although the relative abundance of SC DNA increased during callus proliferation, CaMV polyadenylated 35S and 19S transcripts declined together with immediate reverse transcription products. We suggest that cellular changes during callus growth lead to a decline in authentic CaMV transcripts in the cytoplasm resulting in cessation of synthesis of viral products and progeny DNA genomes. In consequence, pre-existing virion DNAs return to the nucleus, possibly as a result of a relaxation in a cytoplasmic control mechanism, where they are assembled into various forms of SC DNA. The presence of CaMV SC DNAs in replicating cells might also enhance illegitimate integration into host chromosomes, as hybridization of CaMV DNA to high M(r) DNA was observed.

Blotting, Northern↗

Long-term safety and efficacy of programmable implantable insulin delivery systems.

OBJECTIVES: Since only short-term studies of continuous intraperitoneal insulin infusion (CIPII) therapy using implantable programmable insulin delivery systems have been performed to show this method of diabetes therapy to be safe and efficacious, we have performed long-term studies to assess its safety and efficacy. RESEARCH DESIGN AND METHODS: For 78 patient-years of follow-up, we have longitudinally studied the incidence of diabetic ketoacidosis and severe hypoglycemia in 25 type 1 diabetic patients treated with CIPII. We also compared, cross-sectionally, the long-term safety and efficacy of CIPII to intensive subcutaneous insulin therapy using intermittent injections or continuous subcutaneous insulin infusion. Finally, we examined the relationship between glycated hemoglobin levels and the standard deviation of daily blood glucose excursion. RESULTS: Cross-sectional analysis revealed similar degrees of metabolic control accompanied by significantly decreased rates of both ketoacidosis (0.013 events/patient/year) and severe hypoglycemia (0.05 events/patient/year) during CIPII compared to intermittent injections and continuous subcutaneous insulin infusion therapy. A four-fold decrease in the rate of severe hypoglycemia was observed during longitudinal comparison of pre- and post-implantation complication rates. A relationship was also shown between decreased levels of mean glycated hemoglobin and the standard deviation of blood glucose excursions during CIPII therapy. CONCLUSIONS: Our data demonstrate that long-term therapy with CIPII is as effective as other methods in achieving near-normal levels of glycated hemoglobin, which in CIPII is associated with a decreased standard deviation of blood glucose excursions. Further, CIPII using implantable programmable insulin delivery systems is the safest method described for intensive insulin therapy in home blood glucose monitoring type 1 diabetic patients.

Adolescent↗

Comparison of viral nucleic acid intermediates at early and late stages of cauliflower mosaic virus infection suggests a feedback regulatory mechanism.

An important phase of the multiplication cycle of the pararetrovirus cauliflower mosaic virus (CaMV) is transcription of the viral minichromosome in the nucleus. Leaves of infected turnip plants at the vein clearing stage were found to contain a relatively low level of minichromosome DNA, and abundant viral transcripts and characteristic reverse transcription products. In contrast, at the much later stage of severe leaf chlorosis, an elevated level of minichromosome DNA but less RNA, especially the 35S RNA reverse transcription template, was observed. Changes in the composition of virus nucleic acid intermediates were also seen in roots and stems early, compared with late, in infection. A possible feedback mechanism controlling the level of viral minichromosome DNA and its importance in regulation of the CaMV multiplication cycle are discussed in the light of these observations.

Blotting, Northern↗

Host regulation of the cauliflower mosaic virus multiplication cycle.

The DNA genome of cauliflower mosaic virus (CaMV) replicates in the cytoplasm of infected plant cells by reverse transcription of an RNA template. Viral RNA is generated in the nucleus by transcription of an episomal minichromosome containing supercoiled DNA. We have assessed the relative activities of the nuclear and cytoplasmic phases of the CaMV multiplication cycle by monitoring unencapsidated viral DNA forms and polyadenylylated RNAs in different organs of one host plant and in different host species. Systemically infected leaves of a highly susceptible host, turnip (Brassica rapa), contained abundant 35S RNA and 19S RNA transcripts and unencapsidated reverse transcription products but relatively little supercoiled DNA. In contrast, supercoiled DNA accumulated in roots and other tissues of turnip plants but without significant amounts of steady-state viral RNA. Infected but asymptomatic leaves of a less susceptible CaMV host, kohlrabi (Brassica oleracea), contained supercoiled DNA almost exclusively but negligible viral RNA and DNA products of reverse transcription. An allotetraploid species, rape (Brassica napus), exhibited infection characteristics and minichromosome expression levels intermediate between the other two species from which it was derived. We conclude that expression of the CaMV minichromosome is a key phase of the virus multiplication cycle, which is regulated differentially in organs of a highly susceptible host species. Furthermore, this regulation exhibits genetic variation among different Brassica species and controls host susceptibility to CaMV infection.

Blotting, Northern↗

Reduction of severe hypoglycemic events in type I (insulin dependent) diabetic patients using continuous subcutaneous insulin infusion.

In order to evaluate the safety and effectiveness of insulin pump treatment and to establish criteria for its use, we retrospectively studied 45 patients from a referral university diabetes clinic who were treated with either intensive subcutaneous insulin injections or continuous subcutaneous insulin infusion. Hemoglobin A1C was 8.5 +/- 0.3% (SEM) before and 8.1 +/- 0.1% during continuous subcutaneous insulin infusion (p = NS), but rose to 10.0 +/- 0.2% at a 16-month post-study follow-up. The frequency of ketoacidosis was 0.17 events/year before and 0.20 during infusion pump use (p = NS) and declined to 0.10 at the follow-up (p = NS). Severe hypoglycemia was reduced from 2.73 events/year to 0.22 during continuous subcutaneous infusion treatment (p less than 0.001), and from 3.72-0.32 (p less than 0.001) in a subgroup of 23 patients who initiated insulin pump treatment because of frequent and severe hypoglycemic events during intensive insulin injection treatment. Insulin pump use, compared to intensive insulin injections in a non-research setting, (a) is equally effective for maintenance of near normal glycosylated hemoglobin levels, (b) need not result in increased ketoacidosis, and (c) is effective for reducing hypoglycemic events. Thus, insulin pump treatment can benefit larger and randomized studies are needed to confirm these results.

Adult↗

Hairpin DNAs of cauliflower mosaic virus generated by reverse transcription in vivo.

Cauliflower mosaic virus (CaMV) is a DNA plant virus which replicates by reverse transcription. During our examination of CaMV replication intermediates by 2-D gel electrophoresis, we have discovered a population of bizarre linear double-stranded hairpin DNAs. The largest hairpin is the size of the CaMV genome; hairpin loop ends of smaller molecules map to several sites around the genome but the open ends are all located close to the origin of reverse transcription at the primer binding site. We believe that the hairpin DNAs are generated in vivo by reverse transcription of CaMV RNA followed by self-primed second strand synthesis. The accumulation of hairpin DNAs in vivo might represent a side reaction of the CaMV reverse transcriptase although an essential role for them in the virus replication cycle cannot be discounted. The structure of the hairpin DNAs provides further evidence for the location of the start site and of the polarity of reverse transcription in CaMV.

Journal Article↗