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M B Davis

Publications and source records attributed to M B Davis.

At least 55 records · Page 3Linked to original sources

Evidence against an X-linked visual loss susceptibility locus in Leber hereditary optic neuropathy.

Pedigree analysis of British families with Leber hereditary optic neuropathy (LHON) closely fits a model in which a pathogenic mtDNA mutation interacts with an X-linked visual loss susceptibility locus (VLSL). This model predicts that 60% of affected females will show marked skewing of X inactivation. Linkage analysis in British and Italian families with genetically proven LHON has excluded the presence of such a VLSL over 169 cM of the X chromosome both when all families were analyzed together and when only families with the bp 11778 mutation were studied. Further, there was no excess skewing of X inactivation in affected females. There was no evidence for close linkage to three markers in the pseudoautosomal region of the sex chromosomes. The mechanism of incomplete penetrance and male predominance in LHON remains unclear.

DNA, Mitochondrial↗

Haplotype analysis of French, British and other European patients with familial amyloid polyneuropathy (met 30 and tyr 77).

Familial amyloid polyneuropathy (FAP) is an autosomal dominant disorder originally and most frequently described in Portugal. The usual constituent amyloid fibril protein is transthyretin (TTR) and the most frequent mutation in the TTR gene associated with FAP (including all Portuguese cases) is that at position 30 (met 30). Three different TTR haplotypes have been described in association with the met 30 mutation in European patients. We studied the haplotypes of 27 families (24 French, 2 British and 1 Greek) with FAP met 30 by analysing three polymorphisms in introns of the TTR gene. We also studied 6 families (2 British, 3 French and 1 Spanish) with FAP tyr 77. There were two main haplotypes in French patients with FAP met 30, one most commonly seen in the French families of Portuguese descent which was the same haplotype as previously described in Portuguese patients (haplotype I) and another haplotype (III) detected in most informative French families not of Portuguese origin. The age of onset of symptoms was consistently later in French than in Portuguese patients and in patients with haplotype III as the disease-associated haplotype rather than haplotype I. British and French patients with the tyr 77 mutation had different haplotypes. The most likely explanation of these findings is multiple founders of both mutations.

Amyloid Neuropathies↗

GABA and glutamate depolarize cortical progenitor cells and inhibit DNA synthesis.

We have found that, during the early stages of cortical neurogenesis, both GABA and glutamate depolarize cells in the ventricular zone of rat embryonic neocortex. In the ventricular zone, glutamate acts on AMPA/kainate receptors, while GABA acts on GABAA receptors. GABA induces an inward current at resting membrane potentials, presumably owing to a high intracellular Cl- concentration maintained by furosemide-sensitive Cl- transport. GABA and glutamate also produce increases in intracellular Ca2+ in ventricular zone cells, in part through activation of voltage-gated Ca2+ channels. Furthermore, GABA and glutamate decrease the number of embryonic cortical cells synthesizing DNA. Depolarization with K+ similarly decreases DNA synthesis, suggesting that the neurotransmitters act via membrane depolarization. Applied alone, GABAA and AMPA/kainate receptor antagonists increase DNA synthesis, indicating that endogenously released amino acids influence neocortical progenitors in the cell cycle. These results demonstrate a novel role for amino acid neurotransmitters in regulating neocortical neurogenesis.

Animals↗

Transthyretin gene analysis in European patients with suspected familial amyloid polyneuropathy.

We investigated 99 patients from 64 European families (51 French, 11 British, one Italian and one Spanish) with suspected familial amyloid polyneuropathy (FAP) for transthyretin (TTR) gene mutations. Thirty-nine families were found to have point mutations causing the following amino acid substitutions: Met30 (28 families), Tyr77 (five), Arg 50 (one), Ala49 (one), Gln89 (one), Ala60 (one) and one each with previously undescribed mutations at Asn35 and Gys54. The clinical picture in the patients with new and known mutations were typical of FAP, without any specific features for a particular mutation. Onset of symptoms was late (over 50 years) in many French and British patients with the Met30 and Tyr77 mutations, and only 30% of all index cases had affected relatives. We propose an approach to molecular diagnosis in European patients with FAP, apart from members of families with known mutations, based on the frequency of TTR mutations observed in this and and other studies of FAP in Europe. It is logical to screen for the Met30 and Tyr77 mutations and Ala60 in the UK, using restriction enzyme analysis. If these are absent, the TTR gene should be sequenced directly to detect less common or unknown mutations.

Adult↗

Loss of heterozygosity for DNA polymorphisms mapping to chromosomes 10 and 17 and prognosis in patients with gliomas.

Twenty nine patients with gliomas were investigated for loss of heterozygosity for 40 DNA polymorphisms in tumour DNA, particularly concentrating on those mapping to chromosomes 10 and 17. Eight of 18 grade IV gliomas showed loss of sequences from chromosomes 10, 17, or both. The data suggested total loss of one copy of chromosome 10, but there were interstitial deletions of the short arm of chromosome 17 in three of five tumours. Heterogeneous interstitial deletions of chromosome 17 were also found in two lower grade astrocytomas and one benign oligodendroglioma. The striking finding of this study was that patients with high grade gliomas whose tumours exhibited loss of heterozygosity for chromosomes 10, 17, or both survived significantly longer after surgery (median 17.4 months) than those whose tumours did not show loss of these chromosomes (median 6.7 months). These findings suggest that there is a subset of particularly aggressive high grade gliomas with no currently known molecular genetic abnormalities.

Adult↗

Sequence of the superoxide dismutase 1 (SOD 1) gene in familial Parkinson's disease.

Mutations in the superoxide dismutase 1 (SOD1) gene have been detected in affected members of some families with familial amyotrophic lateral sclerosis. To evaluate the possibility of a shared genetic defect in amyotrophic lateral sclerosis and Parkinson's disease, the SOD1 gene was sequenced in index patients with familial Parkinson's disease from 23 families. No changes were detected.

Amyotrophic Lateral Sclerosis↗

Mutation analysis in patients with possible but apparently sporadic Huntington's disease.

Until the advent of mutation analysis it was impossible to make a certain diagnosis of Huntington's disease (HD) in the absence of a positive family history, and sporadic cases of possible HD presented a substantial diagnostic dilemma. We have looked for the characteristic expanded trinucleotide (CAG) repeat sequence in the HD gene in 44 patients with probable or possible HD who did not have similarly affected relatives. We used two methods, the traditional widely used method, which estimates both the CAG repeat and the flanking CCG repeat and gives the CAG length by subtraction, and the more precise CAG method, which estimates the repeat length directly. With the CAG method, the HD mutation was detected in 25 (89%) of 28 patients with the typical clinical features of HD and 5 (31%) of 16 in whom the diagnosis was more doubtful. The CAG-CCG method gave results in the borderline abnormal range of repeats for 13 of the 33 patients eventually shown to have an unequivocal repeat expansion by the CAG method. Most of these patients had late onset of symptoms. There was evidence of expansion of an intermediate-length paternal allele in 1 patient and of non-paternity in another. The identification of the mutation causing HD means that it is now possible to confirm or exclude the diagnosis with confidence, even in the absence of a family history, by analysis of DNA from a blood sample. The precise method of measuring the CAG repeat, which is technically more difficult than the traditional method, may be needed to clarify results in a substantial proportion of such patients.

Adult↗

A model of the Drosophila melanogaster glycerol-3-phosphate oxidase-encoding gene.

We have sequenced the Drosophila melanogaster gene encoding the mitochondrial (mt) enzyme glycerol-3-phosphate oxidase (GPO; EC 1.1.99.5) that is involved in flight and alcohol metabolism. Available data suggests a simple model for this gene that includes four exons. Exon I contains a mt import signal, exon II, a transmembrane segment and an FAD-binding site, and exon IV, an iron-sulfur centre.

Alternative Splicing↗

Tyrosine hydroxylase polymorphism in familial and sporadic Parkinson's disease.

Tyrosine hydroxylase (TH) is a theoretical candidate gene determining susceptibility to Parkinson's disease (PD), and an association between one allele of a polymorphism at the TH locus and sporadic PD has been reported. We investigated TH polymorphism in 44 patients with sporadic PD, 48 patients with familial PD and 89 of their unaffected relatives, and 50 control subjects. No evidence of allelic association was detected in either familial or sporadic PD, and linkage analysis excluded the TH locus, or a closely linked gene, as a major determinant of familial PD.

Alleles↗

Cortical myoclonus in Huntington's disease.

We describe three patients with Huntington's disease, from two families, in whom myoclonus was the predominant clinical feature. The diagnosis was confirmed at autopsy in two cases and by DNA analysis in all three. These patients all presented before the age of 30 years and were the offspring of affected fathers. Neurophysiological studies documented generalised and multifocal action myoclonus of cortical origin that was strikingly stimulus sensitive, without enlargement of the cortical somatosensory evoked potential. The myoclonus improved with piracetam therapy in one patient and a combination of sodium valproate and clonazepam in the other two. Cortical reflex myoclonus is a rare but disabling component of the complex movement disorder of Huntington's disease, which may lead to substantial diagnostic difficulties.

Adult↗

Debrisoquine hydroxylase gene polymorphism in familial Parkinson's disease.

Recent molecular genetic studies of the cytochrome P-450 system enzyme CYP2D6, which hydroxylates debrisoquine, have indicated an excess of mutant alleles in patients with Parkinson's disease compared with controls. This indicates that the CYP2D6 locus confers genetic susceptibility to Parkinson's disease. CYP2D6 polymorphism has been investigated in 48 patients with familial Parkinson's disease, from 22 families, and 88 of their unaffected relatives. An excess of CYP2D6 mutant alleles in patients compared with healthy relatives was found only in subjects over the age of 60 years, presumably reflecting the age related prevalence of this disease. There was no difference in distribution of genotypes, however, between sib pairs concordant or discordant for Parkinson's disease. Linkage analysis, exclusively with affected family members, yielded negative lod scores. These data indicate that the CYP2D6 locus is not the major determinant of genetic susceptibility in familial Parkinson's disease.

Age Factors↗

Intracellular pH regulation in single cultured astrocytes from rat forebrain.

We used the fluorescent pH-sensitive dye 2',7'-bis(carboxyethyl)-5,6-carboxyfluorescein (BCECF) to monitor intracellular pH (pHi) in single astrocytes cultured from the forebrain of neonatal rats. When exposed to a nominally CO2/HCO3(-)-free medium buffered to pH 7.40 with HEPES at 37 degrees C, the cells had a mean pHi of 6.89. Switching to a medium buffered to pH 7.40 with 5% CO2 and 25 mM HCO3(-) caused the steady-state pHi to increase by an average of 0.35, suggesting the presence of a HCO3(-) -dependent acid-extrusion mechanism. The sustained alkalinization was sometimes preceded by a small transient acidification. In experiments in which astrocytes were exposed to nominally HCO3(-)-free (HEPES-buffered) solutions, the application and withdrawal of 20 mM extracellular NH4+ caused pHi to fall to a value substantially below the initial one. pHi spontaneously recovered from this acid load, stabilizing at a value approximately 0.1 higher than the one prevailing before the application of NH4+. In other experiments conducted on cell bathed in HEPES-buffered solutions, removing extracellular Na+ caused pHi to decrease rapidly by 0.5. Returning the Na+ caused pHi to increase rapidly, indicating the presence of an Na(+)-dependent/HCO3(-)-dependent acid-extrusion mechanism; the final pHi after returning Na+ was approximately 0.08 higher than the initial value. This pHi recovery elicited by returning Na+ was not substantially affected by 50 microM ethylisopropylamiloride (EIPA), but was speeded up by 50 microM 4,4'-diisothiocyanostilbene-2,2'-disulfonate (DIDS).(ABSTRACT TRUNCATED AT 250 WORDS)

4,4'-Diisothiocyanostilbene-2,2'-Disulfonic Acid↗

Linkage analysis with chromosome 9 markers in hereditary essential tremor.

Hereditary essential tremor (ET) is an autosomal dominant disorder with variable expression and reduced penetrance. A tremor indistinguishable from ET may be observed in patients with autosomal dominant idiopathic torsion dystonia (ITD), in which the disease locus has been mapped to 9q32-34 in some kindreds, tightly linked to the argininosuccinate synthetase (ASS) locus. We performed linkage analysis in 15 families with ET containing 60 definitely affected individuals, using dinucleotide repeat polymorphisms at the ASS locus and the Abelson locus (ABL). Cumulative lod scores were -19.5 for ASS and -10.8 for ABL at a recombination fraction of 0.01, and tight linkage to ASS was excluded individually in 11 of the families. These data indicate that the ET gene is not allelic to that causing ITD.

Adolescent↗

Evidence for locus heterogeneity in autosomal dominant torsion dystonia.

Idiopathic torsion dystonia (ITD) is most commonly an autosomal dominant disorder with reduced penetrance and variable expression. A locus on the distal long arm of chromosome 9 has been identified in one large non-Jewish and several Jewish families in the United States. Linkage analysis in a large Australian kindred with ITD, also containing two patients with Wilson's disease, excludes a locus for ITD in chromosome 9q34 or the region of chromosome 13 containing the Wilson disease gene. This study provides evidence for locus heterogeneity in autosomal dominant ITD and also gives additional information on gene order in chromosome 9q.

Adolescent↗

Linkage analysis in British and French families with idiopathic torsion dystonia.

Idiopathic torsion dystonia is most commonly caused by an autosomal dominant gene or genes with reduced penetrance. An idiopathic torsion dystonia locus has been mapped to chromosome 9q34 in one large non-Jewish and several Jewish kindreds in the USA. Linkage analysis was performed in 27 (26 British, one French) small families with idiopathic torsion dystonia, three of which were Ashkenazi Jewish, using the highly polymorphic loci argininosuccinate synthetase (ASS) and Abelson oncogene (ABL) which map to 9q34. The cumulative lod score for the more informative ASS locus at a recombination fraction of 0.001 was -6.72. A large component of this score was derived from three non-Jewish families, indistinguishable clinically from the others, in which individual lod scores excluded a disease locus tightly linked to ASS. Analysis of all the data using HOMOG showed significant heterogeneity, but evidence for linkage of an idiopathic torsion dystonia gene to 9q34 in a subset of families. The allelic association observed between ASS/ABL and idiopathic torsion dystonia in Ashkenazi families in the USA was also present in British Jewish kindreds. These data suggest genetic heterogeneity in idiopathic torsion dystonia but indicate the existence of a locus for idiopathic torsion dystonia at 9q34 in both Jewish and non-Jewish kindreds in the UK.

Argininosuccinate Synthase↗

Transthyretin gene mutations in British and French patients with amyloid neuropathy.

Five patients, two British and three French, with late onset amyloid neuropathy were found to have mutations of the transthyretin (TTR) gene associated with the Portuguese and German types of familial amyloid polyneuropathy. Familial amyloid polyneuropathy is rare in the United Kingdom and has not previously been defined at a molecular genetic level. None of the patients had a history of affected antecedents; the role of TTR gene analysis in diagnosing known or suspected amyloid neuropathy, regardless of family history or ethnic background, is emphasised.

Aged↗

Characteristics of basolateral Cl- transport by gastric surface epithelium in Necturus antral mucosa.

Conventional and ion-selective microelectrodes were used to characterize transport of Cl- across the basolateral cell membranes of gastric surface epithelium in isolated preparations of gastric antrum of Necturus. Conventional, voltage-sensing electrodes were used to evaluate changes in membrane potentials and resistances during removal of Cl- from the nutrient perfusate. Liquid ion exchanger Cl(-)-selective microelectrodes were constructed and validated to measure intracellular Cl- activity (aiCl). Our data indicate that 1) aiCl (range 12-25 mM) is close to that predicted if Cl- is distributed across the cell membranes by electrochemical equilibrium, 2) aiCl is not influenced by changes in luminal Cl- content but is susceptible to changes in nutrient Cl- content, 3) Cl- conductances cannot be detected in the basolateral membrane and changes in membrane potentials do not influence aiCl, and 4) Cl- accumulation across the basolateral membrane depends on Na+ and the level of [K+] in the nutrient solution. Inhibition of K(+)-dependent Cl- accumulation, in the absence of nutrient Na+ or in the presence of the inhibitor bumetanide, was demonstrated. These findings suggest that basolateral Na(+)-K(+)-Cl- cotransport is important in regulating cell Cl- levels in surface cells of the gastric antrum in Necturus.

Amiloride↗

A gene from human chromosome region 3p21 with reduced expression in small cell lung cancer.

A combination of cytogenetic and molecular studies has implicated the p21 region of human chromosome 3 as the probable site of a gene the loss of which contributes to the development of small cell lung cancer. We report here the isolation of a gene from this region which is expressed in normal lung tissue and in cell lines derived from a number of different types of tumor, but the expression of which in small cell lung cancer cell lines is undetectable by RNA blot analysis. Although the more sensitive polymerase chain reaction did detect transcripts, a novel quantitative polymerase chain reaction assay showed that their concentration in small cell lung cancer cell lines is less than 3% of that in normal lung.

Carcinoma, Small Cell↗