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G Moore

Publications and source records attributed to G Moore.

At least 73 records · Page 4Linked to original sources

Detailed comparative mapping of cereal chromosome regions corresponding to the Ph1 locus in wheat.

Detailed physical mapping of markers from rice chromosome 9, and from syntenous (at the genetic level) regions of other cereal genomes, has resulted in rice yeast artificial chromosome (YAC) contigs spanning parts of rice 9. This physical mapping, together with comparative genetic mapping, has demonstrated that synteny has been largely maintained between the genomes of several cereals at the level of contiged YACs. Markers located in one region of rice chromosome 9 encompassed by the YAC contigs have exhibited restriction fragment length polymorphism (RFLP) using deletion lines for the Ph1 locus. This has allowed demarcation of the region of rice chromosome 9 syntenous with the ph1b and ph1c deletions in wheat chromosome 5B. A group of probes located in wheat homoeologous group 5 and barley chromosome 5H, however, have synteny with rice chromosomes other than 9. This suggests that the usefulness of comparative trait analysis and of the rice genome as a tool to facilitate gene isolation will differ from one region to the next, and implies that the rice genome is more ancestral in structure than those of the Triticeae.

Chromosome Mapping↗

Effects of prolonged controlled mechanical ventilation on diaphragmatic function in healthy adult baboons.

OBJECTIVE: To study diaphragmatic strength and endurance after a prolonged period of mechanical ventilation. DESIGN: Prospective animal study. SETTING: Animal research laboratory. SUBJECTS: Seven uninjured adult baboons (Papio cynocephalus) were anesthetized with ketamine, sedated, paralyzed, and mechanically ventilated. Animals were monitored with pulmonary arterial and peripheral arterial catheters. INTERVENTIONS: Mechanical ventilation was provided for 11 days with an FIO2 of 0.21 and tidal volume of 15 mL/kg. Pulmonary function tests, including lung volumes, arterial blood gases, and chest radiographs were also monitored. Nursing care procedures included frequent turning, chest physiotherapy, and endotracheal suction. Antacids and prophylactic antibiotics (intravenous penicillin, topical polymyxin B, and gentamicin sulfate) were administered. In three animals, fishhook electrodes were surgically placed around both phrenic nerves on both day 0 and after 11 days of mechanical ventilation for diaphragmatic stimulation. On day 0, the electrodes were removed after phrenic nerve stimulation studies were performed. After 11 days of mechanical ventilation, animals were electively killed and full autopsy performed. MEASUREMENTS AND MAIN RESULTS: Hemodynamic and pulmonary function parameters were measured at baseline and every day during the 11 days of mechanical ventilation. Diaphragmatic strength and endurance were measured on days 0 and 11. Diaphragmatic endurance was determined by an inspiratory resistive loading protocol. There were no significant changes in hemodynamics, lung volumes, or gas exchange during the period of mechanical ventilation. On day 7, the chest radiographs showed patchy lobar atelectasis in six animals, which cleared by day 11 in all but two of the animals. Lung pathology showed mild, focal pneumonitis. By day 11, maximum transdiaphragmatic pressure had decreased by 25% from day 0 and diaphragmatic endurance had decreased by 36%. CONCLUSIONS: Eleven days of mechanical ventilation and neuromuscular blockade in healthy baboons resulted in nonsignificant changes in hemodynamics, oxygenation, and/or lung function. However, significant impairment in diaphragmatic endurance and strength were seen. Based on these results, it is likely that prolonged mechanical ventilation by itself impairs diaphragmatic function independent of underlying lung disease.

Animals↗

Antidiabetic efficacy of BRL 49653, a potent orally active insulin sensitizing agent, assessed in the C57BL/KsJ db/db diabetic mouse by non-invasive 1H NMR studies of urine.

High resolution 1H nuclear magnetic resonance (NMR) spectroscopic analysis of biofluids is a recently established tool for evaluating inherited and acquired errors in metabolic control. In the present study 1H NMR analysis of urine was used to monitor efficacy of BRL 49653, a potent and selective antihyperglycaemic agent, following oral administration for up to 36 weeks to the genetically diabetic C57BL/KsJ db/db mouse. The effects of BRL 49653 on carbohydrate and fatty acid metabolism were monitored by determination of changes in concentrations of low molecular weight urinary metabolites. A qualitative comparison of the NMR spectra of urine from untreated diabetic mice with those of lean littermates and literature examples revealed several abnormalities, the majority of which could be explained in terms of the non-insulin dependent diabetes syndrome exhibited by these animals. Quantitatively the most prominent was the extreme glycosuria of both young (8-12 weeks; 0.9 g glucose kg-1 h-1) and older (42 weeks; 2 g glucose kg-1 h-1) diabetic mice. This was accompanied by the excretion of a number of unassigned sugar derivatives and by ketone bodies. Administration of BRL 49653 (3 mumol kg-1) to db/db mice for 24 days reduced blood glucose concentrations to values comparable with non-diabetic lean littermates and reduced glycosuria by > 90%. BRL 49653 significantly reduced excretion of unassigned sugars, acetate, lactate, and the ketone bodies, acetoacetate, 3-D-hydroxybutyrate and acetone. The anti-diabetic efficacy of BRL 49653, assessed from the pattern of urinary metabolites, was maintained over a 36-week treatment period. These results demonstrate the value of 1H NMR to evaluate non-invasively the efficacy of novel therapeutic agents.

Administration, Oral↗

The use of guardianship legislation for anorexia nervosa: a report of 15 cases.

OBJECTIVE: This paper investigates compulsory treatment under guardianship legislation for 15 anorexia nervosa patients admitted to four eating disorders units in New South Wales (NSW), Australia, between 1991 and 1994. METHODS: A retrospective follow-up was conducted. This involved an analysis of sociodemographic, clinical, eating and weight history, and Guardianship Order details obtained from medical records. This small sample was compared to a larger sample of anorexia nervosa patients admitted voluntarily to a specialised eating disorder unit in NSW. Further follow-up included a structured interview using the Morgan-Russell Assessment Outcome Schedule at least 1 year after admission for compulsory treatment. RESULTS: For those treated involuntarily, a larger number came from metropolitan Sydney and a larger percentage were unemployed, were purgers and required specialist medical consultations. A significantly higher proportion came from higher socioeconomic groups, and the duration of stay in hospital while patients were under guardianship was significantly greater. A high degree of comorbidity was noted. There were similarities between those treated involuntarily and those treated voluntarily for the source of referral, marital status and Body Mass Index on admission and discharge. Only three patients accepted a follow-up interview using the Morgan-Russell Outcome Schedule. Two of them had made a good recovery. CONCLUSIONS: It was noted that the guardianship sample comprised a more severely III group than anorexic patients treated voluntarily. The nature of guardianship legislation compared to mental health law was discussed and advice offered to clinicians contemplating and implementing compulsory treatment.

Adolescent↗

Are rice chromosomes components of a holocentric chromosome ancestor?

Comparative genomics reveals that cereal genomes are composed of similar genomic building blocks (linkage blocks). By stacking these blocks in a unique order, it is possible to construct a single ancestral 'chromosome' which can be cleaved to give the basic structure of the 56 different chromosomes found in wheat, rice, maize, sorghum, millet and sugarcane. The borders of linkage blocks are defined by cereal centromeric and telomeric sites. However, a number of studies have shown that telomeric heterochromatin has neocentromeric activity, implying that linkage blocks are in fact defined by centromeric-like sites with conserved sequences. The structure of the ancestral cereal genome thus resembles a holocentric chromosome, which is the chromosome structure shared by the closest relatives of the Gramineae, the Cypericeae and Juncaceae.

Biological Evolution↗

Isolation of a neutralizing human RSV antibody from a dominant, non-neutralizing immune repertoire by epitope-blocked panning.

We isolated a large panel of human Abs directed against the respiratory syncytial virus (RSV) Ag from combinatorial phage display libraries. Following initial differentiation of the Fabs by BstNI restriction patterns, DNA sequence analysis revealed 10 different classes of VH paired with more than 35 different VL genes. All the Fabs bound with high affinity to the F Ag. However, most Fabs competed with the binding of a representative member of this group, suggesting that the Fabs recognized a common epitope on the F Ag, and none of them neutralized virus in vitro. To suppress repetitive isolation of these non-neutralizing Abs, a representative Fab was included during panning to block this common epitope on the F Ag. By this "epitope-blocked panning" approach, two novel Fabs, encoded by unique VH and VL genes, were isolated from a previously screened library. Competition binding analysis confirmed that the Fabs recognized epitopes distinct from that of the previously isolated Fabs. One of these Fabs, 516, neutralized RSV in cell culture. These activities of Fab-516 were retained upon its genetic conversion to a mAb (IgG1) and expression in mammalian cells. Our results suggest that the RSV F glycoprotein presents a dominant, non-neutralizing epitope to the human immune system, which may serve in evasion of host defenses. However, less prevalent, fusion-inhibiting Abs were revealed by blockade of this epitope during the panning process.

Amino Acid Sequence↗

A cereal centromeric sequence.

We report the identification of a family of sequences located by in situ hybridisation to the centromeres of all the Triticeae chromosomes studied, including the supernumerary and midget chromosomes, the centromeres of all maize chromosomes and the heterochromatic regions of rice chromosomes. This family of sequences (CCS1), together with the cereal genome alignments, will allow the evolution of the cereal centromeres and their sites to be studied. The family of sequences also shows homology to the CENP-B box. The centromeres of the cereal species and the proteins that interact with them can now be characterised.

Autoantigens↗

Molecular genetic etiology of twin reversed arterial perfusion sequence.

OBJECTIVE: Our purpose was to determine whether the twin reversed arterial perfusion sequence (acardiac anomaly) results from fertilization of the first or second polar body. STUDY DESIGN: Placental or fetal tissue was obtained from nine twin sets discordant for twin reversed arterial perfusion. After deoxyribonucleic acid extraction, the polymerase chain reaction was used to amplify five polymorphic microsatellite repeats. The products were differentiated by polyacrylamide gel electrophoresis, and patterns were compared within twin sets. RESULTS: Deoxyribonucleic acid fingerprinting patterns were identical in all twin sets for all primer pairs. It is calculated that the chance that any of the acardiac twins resulted from fertilization of either the first or second polar body is <4% and the chance that they all resulted from polar body fertilization is <0.001%. CONCLUSION: Twins discordant for the twin reversed arterial perfusion sequence anomaly are monozygous. Our results exclude polar body fertilization as a likely cause of this condition.

Autoradiography↗

Evaluation of a new, integral, whole blood filter (RS2000) system for prestorage leucodepletion of SAG-M red cells.

Residual donor leucocytes are responsible for many adverse transfusion reactions. Prestorage leucodepletion may ameliorate these effects and enhance product quality. We studied a bottom and top (BAT) system incorporating an integral filter for whole blood leucodepletion. Our evaluation assessed leucodepletion efficiency as well as in vitro SAG-M red cell quality and storage characteristics. Sixty-six units of blood were collected; test units into the Optipac-pLuS system and controls into the standard triple pack configuration. Test units were held for 4-6 h at room temperature (rt) or 12-18 h at 4 degrees C. The mean leucocyte counts for the SAG-M red cells in the quality and storage trial were 0.6 x 10(6) (rt hold), 0.05 x 10(6) (4 degrees C hold) and 2500 x 10(6) (controls). We observed no significant differences between the groups for Na+, ATP, 2,3-DPG, glucose, lactate and pH during the 49 d storage. The control group, however, showed a greater increase in haemolysis and K+ with time. Autologous in vivo 24 h red cell recovery, after 42 d storage, was > 75%. Adjustment of processing parameters in subsequent studies gave leucodepleted SAG-M red cells with minimal cell loss (9.19%) plus acceptable haemoglobin content (46-76 g/U) and haematocrit (54-62%). This system achieved > 3.5 log leucodepletion with all but one unit containing < 1 x 10(6) leucocytes. The product quality is good and the system suitable for routine use in blood centres.

Blood Component Removal↗

Modular cosmology.

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Journal Article↗

Conservation of fine-scale DNA marker order in the genomes of rice and the Triticeae.

DNA markers distribute over large chromosomal regions exhibit conservation of order (collinearity) in different cereal species, but it is not known whether this is maintained on a finer scale, i.e. < or = 2 cM. To address this, sets of two or more genetically linked DNA markers were localised to yeast artificial chromosomes containing rice DNA inserts. Linkage analysis of these DNA markers in barley revealed complete correspondence with their genetic order in rice, the distance between linked sequences on rice chromosomes being < 1.6 cM or < or = 1 + 10(6) bp (1 Mb). Thus, DNA markers separated in this range are collinear in rice, barley and, by inference, other members of the Triticeae. These results are discussed with respect to the use of rice as a key system for the isolation of cereal genes.

Base Sequence↗

Molecular analysis of the expression of transthyretin in intestine and liver from trisomy 18 fetuses.

Human trisomy 18 (Edwards syndrome) provides a model for the role that genes on chromosome 18 play in fetal development. Trisomy 18 occurs in approximately 1 in 3000 live births. Despite its compatibility with life in 5% of cases, prolonged survival is rare. Anomalies involve the urogenital, cardiac, craniofacial and central nervous systems. The abnormalities could be caused by the abnormal expression of developmentally important genes on chromosome 18. We have investigated the quantity and localisation of the expression of a candidate gene, transthyretin (TTR), on chromosome 18 at the RNA level in intestine and liver tissues from trisomic fetuses and have compared the expression with normal age-matched fetal tissues. The mRNA level of TTR in 10 to 14-week intestine was the same in trisomy 18 and control tissues. However, overexpression was seen for both trisomy 18 liver and intestine at 20-23 weeks. TTR transports both thyroxine and retinol and is therefore important for normal fetal development.

Adult↗

Refinement of the X-linked cleft palate and ankyloglossia (CPX) localisation by genetic mapping in an Icelandic kindred.

The gene responsible for X-linked cleft palate and ankyloglossia (CPX) has previously been localized to the proximal region of the q arm of the X chromosome in both Icelandic and North American Indian kindreds. In this study, further linkage analysis has been performed on the Icelandic family and has resulted in a significant reduction in the size of the interval containing the mutated gene. A new polymorphism at DXS95, together with DXS1002 and DXS349, defines the proximal boundary of the CPX interval, whereas DXYS1X defines the distal boundary. Multipoint analysis supports this localisation with a peak lod score of 12.7, more than 2 lod score units higher than the next most likely position. In order to assess the physical size of the CPX interval prior to initiating yeast artificial chromosome cloning, metaphase fluorescence in situ hybridisation analysis was performed with the closest flanking markers. The size of the interval between DXS95 and DXYS1X was estimated to be approximately 2-3 Mb.

Chromosome Mapping↗