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Biomedical subjects

A Dodd

Publications and source records attributed to A Dodd.

10 recordsLinked to original sources

Dystrophin in adult zebrafish muscle.

Mutations in the human dystrophin gene are implicated in the fatal muscle wasting disease Duchenne Muscular Dystrophy (DMD). This gene expresses a sarcolemmal-associated protein that is evolutionarily conserved, underpinning its important role in the architecture of muscle. In terms of DMD modelling, the mouse has served as a suitable vertebrate species but the pathophysiology of the disease in the mouse does not entirely mimic human DMD. We have examined the zebrafish in order to expand the repertoire of vertebrate species for muscle disease modelling, and to dissect further the functional interactions of dystrophin. We report here the identification of an apparent zebrafish orthologue of the human dystrophin gene that expresses a 400-kDa protein that is localised to the muscle membrane surface. These data suggest that the zebrafish may prove to be a beneficial vertebrate model to examine the role and functional interactions of dystrophin in disease and development.

Amino Acid Sequence↗

Zebrafish: bridging the gap between development and disease.

The zebrafish has been the model of choice amongst developmental biologists for many years. This small freshwater species offers many advantages to the study of organ and tissue development that are not provided by other model systems. Against this background, modern molecular genetic approaches are being applied to expand the physical and genetic mapping of the zebrafish genome. These approaches complement the large-scale mutagenic screens that have led to the isolation of mutant phenotypes. Some of the phenotypes have been found to resemble human disease states, while mapping and sequencing data have revealed zebrafish genes with significant homology to human disease-causing genes. It is the realization that the zebrafish offers an amenable system for understanding disease, as opposed to development, that underpins this review. The adventitious identification of disease phenotypes amongst zebrafish mutants and the important area of deliberate disease modelling using transgenesis and gene targeting should lead to a better application of the zebrafish as a vertebrate model of human diseases.

Animals↗

Mutations in the adrenoleukodystrophy gene.

Adrenoleukodystrophy (ALD) is a peroxisomal disorder that commonly manifests as demyelination of the central nervous system (CNS). The isolation of the ALD gene by positional cloning has led to the identification of a variety of mutations in the ALD gene. One hundred and ten mutations have been identified to date, of which approximately 50% are missense mutations. While rapid DNA-based diagnoses of ALD is now possible, there appears to be no simple correlation between genotype and phenotype.

ATP Binding Cassette Transporter, Subfamily D, Mem↗

DNA-based diagnostics for adrenoleukodystrophy in a large New Zealand family.

AIM: To develop a DNA-based diagnostic test for adrenoleukodystrophy (ALD) in a large New Zealand family. METHODS: Mutation screening of the X chromosome-linked ALD gene was undertaken by direct sequencing of PCR amplified products encompassing defined exons of the ALD gene. The identification of a mutation led to the development of a simple restriction enzyme digestion protocol of a PCR amplified product to identify those individuals with the mutation. RESULTS: A nonsense mutation, resulting in deduced premature termination of translation of the ALD gene product, was detected in exon 4 of the ALD gene in an affected male. This mutation was found in three obligate gene carriers in the same ALD family. A DNA-based test was established to identify this mutation by Bgl II digestion of a PCR amplified product encompassing exons 3 and 4 of the ALD gene. The DNA-based test was applied to a chorionic villus sampling for prenatal diagnosis. CONCLUSIONS: A simple DNA-based test has been developed for ALD in a large New Zealand family. This test provides a rapid means of determining carrier status and for undertaking prenatal diagnosis for ALD in this family.

Adolescent↗

Structure and location of the murine adrenoleukodystrophy gene.

X-linked adrenoleukodystrophy (ALD) is a degenerative neurological disease characterized by the accumulation of very long chain fatty acids in various tissues and demyelination of the central nervous system. The human gene responsible for the disease encodes a membrane-bound ATP-binding transporter protein that is located in peroxisomes. We isolated the mouse adrenoleukodystrophy gene, determined its structure, and mapped it both cytogenetically and genetically. The mouse gene is very similar in structure to the human gene, consisting of 10 exons arranged over a 22-kb genomic region. We localized it in band B of the mouse X chromosome by fluorescence in situ hybridization analysis and, using a new microsatellite repeat polymorphism, determined the map location as 47 cM from the X centromere. We found evidence for other sequences in the mouse genome related to the 3' end of Aldgh. This study paves the way for the construction of gene-targeting plasmids that may be used to develop an animal model of ALD.

ATP Binding Cassette Transporter, Subfamily D, Mem↗

Ontogeny of ovine fetal renal atrial natriuretic factor receptors.

Ovine fetal renal responses to ANF decrease during the last third of gestation, although circulating fetal plasma atrial natriuretic factor (ANF) levels are higher than in the maternal circulation, and do not change with gestation. This study examined whether previously reported maturational changes in fetal renal responses to ANF are due to changes in renal ANF receptor numbers and/or affinity during gestation. ANF receptor numbers (Bmax) and dissociation constants (Kd) were measured in isolated renal glomeruli from early (95 and 110 day; mean 103 +/- 2) and late gestation (131 and 145 day; mean 138 +/- 2) fetal and maternal sheep. Fetal renal ANF receptor Bmax values significantly increased between 103 and 138 days gestation (13 +/- 3 to 29 +/- 4 fmol/mg protein) but were significantly lower than maternal values (60 +/- 13 fmol/mg protein). Fetal ANF receptor Kd values also increased significantly (245 +/- 34 to 370 +/- 36 pM), with early gestation values significantly lower than maternal values (470 +/- 69 pM). Thus, the blunted fetal renal response to ANF in late as compared to early gestation is not due to reduced ANF receptor numbers. Rather, an increased proportion of ANF clearance receptors, reduced post-receptor function and/or altered intrarenal hemodynamics may contribute.

Animals↗

Ovine fetal swallowing and behavioral state responses to sublingual water.

Ovine fetal swallowing primarily occurs in bouts of activity associated with low voltage electrocorticogram activity and breathing movements. Despite similar rates of electromyographic swallowing activity, there are significant differences in the net esophageal fluid flow among fetuses. To determine if variations in the volume of fluids accessible to the fetus (amniotic fluid, lung fluid, salivary secretions) affect fetal swallowing, we studied the effects of sublingual distilled water infusions on ovine fetal swallowing rates and esophageal flow. Seven pregnant ewes at 127 +/- 2 days gestation were chronically instrumented with maternal and fetal vascular catheters, fetal electrocortical, electro-ocular and electromyograph electrodes, an esophageal flow probe and a sublingual infusion catheter. Following a 2-hour control period, consecutive sublingual infusions of room temperature distilled water (10 and 20 ml/kg/h) were administered for 2 h each. In response to sublingual infusions, fetal plasma sodium (142.5 +/- 0.5 to 140.8 +/- 0.8 mEq/l), chloride concentrations (109.2 +/- 0.4 to 107.7 +/- 0.7 mEq/l) and osmolality (302 +/- 2 to 298 +/- 2 mOsm/kg) decreased significantly. Swallowing activity and esophageal flow did not change significantly from basal values (47 +/- 9 swallows/h, 19.2 +/- 4.2 ml/h) during the sublingual infusions. However, fetal low-voltage electrocortical activity increased significantly during both infusion periods (42 +/- 3 to 56 +/- 6%). Sublingual distilled water infusion decreases fetal plasma osmolality and alters fetal behavioral state without affecting swallowing frequency or esophageal flow.

Administration, Sublingual↗

Dehydration increases the renal response to atrial natriuretic peptide in fetal sheep.

OBJECTIVE: In sheep, maternal water deprivation results in urinary natriuresis in spite of suppression of plasma atrial natriuretic factor levels. Near-term fetal sheep also have a urinary natriuresis without change in plasma atrial natriuretic factor during maternal dehydration. This study was designed to explore the role of plasma atrial natriuretic factor levels in fetal dehydration-natriuresis. STUDY DESIGN: Eight chronically instrumented preterm (113 +/- 1 days) ovine fetuses received two atrial natriuretic factor infusions (3 and 15 ng/kg/min) in a euhydrated state and after 48 +/- 1 hours of maternal water deprivation. RESULTS: Dehydration significantly increased maternal plasma osmolality (302 +/- 2 to 313 +/- 2 mOsm/kg water), sodium (148.1 +/- 0.8 to 154.3 +/- 0.4 mEq/L), chloride (112.4 +/- 0.6 to 116.8 +/- 0.9 mEq/L), and arginine vasopressin (4.2 +/- 1.2 to 23.0 +/- 4.0 pg/ml) and significantly decreased plasma atrial natriuretic factor (36 +/- 6 to 19 +/- 4 pg/ml) concentrations. Fetal plasma osmolality (296 +/- 1 to 308 +/- 2 mOsm/kg), atrial natriuretic factor (128 +/- 16 to 241 +/- 36 pg/ml), and arginine vasopressin (3.5 +/- 0.8 to 12.3 +/- 4.8 pg/ml) concentrations and urine osmolality (170 +/- 10 to 253 +/- 10 mOsm/kg), osmolar clearance (0.80 +/- 0.02 to 0.14 +/- 0.02 ml/kg/min), and fractional sodium excretion (3.3% +/- 1.7% to 8.5% +/- 2.1%) increased significantly with dehydration, whereas the plasma atrial natriuretic factor clearance decreased from 127 +/- 27 to 63 +/- 10 ml/kg/min. Dehydration had no effect on fetal hematocrit, vascular pressures, glomerular filtration rate, urine flow, or free water clearance. In euhydrated fetuses plasma atrial natriuretic factor increased from 128 +/- 16 to 287 +/- 46 pg/ml with sequential atrial natriuretic factor infusion, and no significant increases were observed in urine flow, fractional sodium excretion, and glomerular filtration rate. In contrast, atrial natriuretic factor infusion to dehydrated fetuses significantly increased urine flow (0.17 +/- 0.03 to 0.32 +/- 0.07 ml/kg/min), osmolar clearance (0.14 +/- 0.02 to 0.28 +/- 0.06 ml/kg/min), and fractional sodium excretion (8.5% +/- 2.1% to 14.8% +/- 4.0%). CONCLUSION: These results demonstrate that in the fetus at 113 days' gestation plasma atrial natriuretic factor levels increase with dehydration, probably a result of decreased plasma atrial natriuretic factor clearance, and the fetal renal responsiveness to atrial natriuretic factor infusion increases during maternal dehydration.

Animals↗