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Biomedical subjects

J F Powell

Publications and source records attributed to J F Powell.

At least 19 recordsLinked to original sources

Identification of genomic organisation, sequence variants and analysis of the role of the human dishevelled 1 gene in late onset Alzheimer's disease.

Alzheimer's disease (AD) is a disorder characterised by a progressive deterioration in memory and other cognitive functions. Neurofibrillary tangles (NFT) are a major pathological hallmark of AD, these are aggregations of paired helical filaments (PHF) comprised of the hyperphosphorylated microtubule associated protein tau. Several kinases, such as glycogen synthase kinase 3 beta (GSK3beta) and c-Jun N-terminal kinase (JNK), phosphorylate tau at sites that are phosphorylated in PHF. Dishevelled 1 (DVL1) is thought to act as a positive regulator of the wnt signalling pathway, and inhibits GSK3beta activity preventing beta-catenin degradation and thus allowing wnt target gene expression. JNK activation is also regulated by DVL1, however it is unclear if this is via the wnt signalling pathway. These observations suggest a central role for DVL1 in tau phosphorylation and AD and led us to investigate DVL1 as a candidate gene for this disorder. We determined the genomic structure of the DVL1 gene by sequencing and data mining and searched for sequence variations in the coding sequences and flanking introns. The DVL1 gene spans a region of approximately 13.8 kb (not including the 5' untranslated region) and is encoded by 15 exons. Analysis of over 4.3 kb of sequence, including 98% of exonic sequences and introns 2, 3, 6, 7, 9, 10, 11 and 12, revealed there to be six rare (< or =6%) sequence variations. None of these had any association with late onset AD. This would suggest that polymorphic variations in the coding sequences of DVL1 are not important in AD. However further analysis of regulatory regions may lead to the identification of other sequence variations which may be implicated in AD.

Adaptor Proteins, Signal Transducing↗

The microtubule associated protein Tau gene and Alzheimer's disease--an association study and meta-analysis.

Several studies have suggested an association between polymorphisms and an extended haplotype of the microtubule associated protein tau gene and Alzheimer's disease (AD) in synergy with apolipoprotein E (APOE) epsilon 4 status. However these findings have not been consistently replicated. We investigated the role of the tau haplotype in AD by conducting an association study as well as a meta-analysis of all the studies conducted to date. We examined six polymorphisms known to be in the extended tau haplotypes, one in exon 7 and five in and around exon 9 in 200 late onset AD and 189 control samples. All the polymorphisms examined fell into the recognised tau haplotypes. There was no statistical significant association with any of the polymorphisms and late onset AD. Stratification of data by APOE epsilon 4 status also produced no strongly significant association. The meta-analysis showed no significant differences between AD cases and controls, however stratification of data by APOE epsilon 4 status showed a small significant decrease in the H1 haplotype in AD before correction for multiple testing.

Aged↗

MRI hyperintensities of the temporal lobe and external capsule in patients with CADASIL.

BACKGROUND: Cerebral autosomal dominant arteriopathy with subcortical infarcts and leukoencephalopathy (CADASIL) is an inherited, autosomal dominant condition caused by mutations of the Notch3 gene. Affected individuals have migraine, mood disturbance, and recurrent strokes, often progressing to subcortical dementia and premature death. MRI findings include focal lacunar infarcts and diffuse T2-weighted hyperintensity, or leukoaraiosis. However, such findings are seen much more commonly in patients with cardiovascular risk factors, particularly hypertension, where they are believed to represent cerebral small vessel disease. No previous study has sought to identify specific radiologic markers of CADASIL. METHODS: MRI scans from 20 consecutive patients with CADASIL and 20 patients with sporadic leukoaraiosis due to presumed small-vessel disease were compared using the previously validated semiquantitative MRI rating scale devised by Scheltens et al. Analysis was blinded to clinical category. RESULTS: Scores for hyperintensities of the temporal white matter and external capsule-insula region were significantly higher in patients with CADASIL. Hyperintensity confined to the pole of the temporal lobe was a characteristic finding in CADASIL, occurring in 19 patients with CADASIL but no patients with ischemic leukoaraiosis. Involvement of the external capsule, though less specific, was seen early in the disease course. In a few patients with CADASIL, involvement of the corpus callosum was observed. CONCLUSIONS: Temporal pole hyperintensity is a radiologic marker of CADASIL. Involvement of the external capsule and corpus callosum are also characteristic findings that may help to distinguish the disease.

Adult↗

The extended haplotype of the microtubule associated protein tau gene is not associated with Pick's disease.

Pick's disease (PiD) is a rare neurodegenerative condition and is a member of a heterogeneous group of disorders known as tauopathies, so-called because of the predominantly neuronal aberrant tau accumulations found in these diseases. The tauopathy, familial frontotemporal dementia (FTD), is caused by mutations in the tau gene. Moreover, progressive supranuclear palsy (PSP) is associated with the tau H1 haplotype. In certain familial forms of FTD and in PSP the microtubule-binding four repeat tau isoform principally accumulates in neuropathological lesions. However, in PiD three repeat tau accumulations are found. We therefore investigated whether either the tau H1 or H2 haplotype was associated with PiD. Our results indicate a slight increase in H2H2 frequency in Pick's cases which is not statistically significant.

Aged↗

Association study of the 5-HT(2A) receptor gene polymorphism, T102C and essential hypertension.

BACKGROUND: Serotonin dysfunction has been implicated in hypertension due to its ability to induce vasoconstriction via stimulation of 5-HT(2) receptors and due to the antihypertensive effect of ketanserin, an antagonist at the 5-HT(2A) receptor subtype, expressed both on arteries and the brain. The silent T102C polymorphism in the 5-HT(2A) gene is in absolute linkage disequilibrium with a polymorphism in the promoter and may contribute to genetic predisposition possibly by modifying the transcription of the gene. OBJECTIVE: To examine the genetic contribution of the T102C 5-HT(2A)polymorphism in essential hypertension in a case-control sample of UK residents. DESIGN: The hypertensive group consisted of 342 subjects over 75 years and the community-based control group consisted of 319 subjects. Subjects were genotyped for the T102C polymorphism by Mspl restriction enzyme digestion following PCR amplification. RESULTS: Sex-specific association analysis revealed significant differences between hypertensive and normotensive subjects in the genotypes distribution (P = 0.016) and allelic frequencies (P = 0.007) in the female group. The direction of significance was increased frequency of the 102-C allele in the hypertensive subjects. There were no association between haplotype and age or body mass index, which suggest that the effect of the T102C variant is not influenced by these variables. CONCLUSION: This data indicates that the T102C polymorphism in the 5-HT(2A) gene might be an independent risk factor for increased blood pressure in female individuals with essential hypertension.

Age Distribution↗

Identification of sequence variants and analysis of the role of the glycogen synthase kinase 3 beta gene and promoter in late onset Alzheimer's disease.

Alzheimer's disease (AD) is a disorder characterised by a progressive deterioration in memory and other cognitive functions. Glycogen synthase kinase 3 beta (GSK3 beta) phosphorylates the microtubule associated protein tau at sites that are aberrantly phosphorylated in AD. GSK3 beta binds to presenilin 1 and plays a role in wnt and insulin signalling cascades, both of which have been proposed to be linked to AD. Moreover GSK3 beta activity may be altered in AD brain. These observations suggest a central role for GSK3 beta in AD and led us to investigate GSK3 beta as a candidate gene for AD. We sought to identify sequence variations in the gene and its promoter, as these could have an effect on activity and expression leading to abnormal function. Sequencing over 3000 bp of the GSK3 beta putative promoter revealed there to be five sequence variations, two of which were common (>10%). However on further examination none of these, either alone or in synergy, had any association with late onset AD. Stratification of the data by APOE epsilon 4 status also produced no significant association. Sequencing of the GSK3 beta coding region revealed no variations. This would suggest that the aberrant phosphorylation of tau by GSK3 beta in AD is not due to sequence variations in the gene or its promoter.

Age of Onset↗

Mutations in the lysyl oxidase gene are not associated with amyotrophic lateral sclerosis.

BACKGROUND: There is an urgent need to identify genes involved in familial ALS (FALS), as mutations in the CuZn superoxide dismutase (SOD1) gene can account for 20% of FALS cases. The mechanisms by which the many mutations in the SOD1 gene lead to motoneuron degeneration are unknown, although current experimental evidence supports a toxic gain of function, possibly through copper-induced cytotoxicity. Copper is an integral component of a number of enzymes as well as SOD1. Since abnormalities in connective tissue cross-linking have been reported in ALS patients, an enzyme of possible relevance is lysyl oxidase (LOX), a copper-containing enzyme which catalyses the crosslinking of collagens and elastin. The aim of this study was to investigate the hypothesis that allelic variants or mutants of LOX gene result in altered function of LOX in ALS patients. METHODS: The coding regions of the LOX gene were screened for polymorphism and mutations in a cohort of sporadic and familial ALS patients. RESULTS: A novel polymorphism, Pro159Gln, was identified in eight individuals with sporadic ALS (5.0%) and five controls (3.6%). The previously identified Arg158Gln polymorphism was also detected in ALS patients and controls. These polymorphisms were genotyped in 192 ALS patients, including 31 unrelated familial cases and 138 controls, and no association was found between any of these polymorphisms and amyotrophic lateral sclerosis or its phenotype. CONCLUSION: Mutations in the LOX gene are unlikely to be directly causative of ALS.

Adult↗

Examination of variation in sternal rib end morphology relevant to age assessment.

The morphology of the sternal end of the right fourth rib has been proffered as an accurate age assessor in skeletonized individuals of both sexes. This technique was tested for its applicability on left and right II, III, V-IX. Tests were performed between phase scores obtained from right and left ribs; right rib IV phase scores and scores obtained from the others in the right rib series; and between right rib IV scores and a composite score composed of the average of an individual's phase scores (omitting rib IV). Left ribs IV-IX were found not to vary significantly from their right counterparts. Although only right rib II was found to vary significantly from rib IV, use of the other ribs in the series should be undertaken with caution due to questions concerning their statistical significance. A composite score is therefore recommended for use instead.

Adolescent↗

Intron 7 retention and exon 9 skipping EAAT2 mRNA variants are not associated with amyotrophic lateral sclerosis.

Glutamate-mediated excitotoxicity is implicated in the pathogenesis of amyotrophic lateral sclerosis (ALS). The astroglial glutamate transporter EAAT2 plays a major role in maintaining low levels of extracellular glutamate in the central nervous system. Multiple EAAT2 mRNA transcripts have been described, but those retaining intron 7 or skipping exon 9 are reported to be specific to the motor cortex, spinal cord, and cerebrospinal fluid of ALS patients. We sought to verify these findings using a TaqMan (Elmer Biosystems, Warrington, UK) real-time reverse transcriptase polymerase chain reaction assay, which provides a sensitive and reliable quantitative measure of EAAT2 transcript copy ratios. We analyzed RNA extracted from frozen postmortem tissue from affected and unaffected central nervous system regions dissected from 17 sporadic ALS patients, 7 Alzheimer's disease patients, and 19 control subjects. We have demonstrated unequivocally that intron 7 retaining and exon 9 skipping variants can be detected in all individuals and in all central nervous system regions studied. The mean ratio of "variant" to "normal" transcripts did not differ significantly between patient and control groups. Although our assay could detect transcript concentrations in cerebrospinal fluid as low as 10 pg/ml, none were detected in 17 ALS and 8 control samples. We conclude that ALS is not associated with elevated levels of EAAT2 transcripts retaining intron 7 and skipping exon 9. An alternative explanation must be sought for the disturbance of glutamate homeostasis reported in ALS.

Aged↗

Systematic screening of the 14-3-3 eta (eta) chain gene for polymorphic variants and case-control analysis in schizophrenia.

The neuronal protein 14-3-3 eta is a candidate gene for schizophrenia because it maps chromosome 22q12, a region implicated in the disease by linkage analysis, and is involved in brain development. We systematically screened this gene for polymorphic variants by comparison of public EST sequence data (five cDNAs and 72 ESTs, 21,155 bp of sequence) in parallel with single-stranded conformational polymorphism analysis, and we compared these methods by using a simple power calculation. Twelve potential polymorphisms were identified from EST sequence comparison, and two of these (a 5'-VNTR and 753G/A) were confirmed by SSCP analysis and sequencing. Three additional infrequent polymorphisms (-408T/G; 177 C/G; and 989 A/G) were found by SSCP only. We next examined these variants for association with schizophrenia. One variant in untranslated region of exon 1 (-408 T/G) was found to occur more frequently in the schizophrenic subjects (8%) than the controls (3%; P = 0.01). After fivefold correction of the P value for multiple testing, marginal association was found. Haplotype analysis of pairs of polymorphisms provided no evidence for association of this gene with schizophrenia in the population studied. Am. J. Med. Genet. (Neuropsychiatr. Genet. ) 96:736-743, 2000.

14-3-3 Proteins↗

Primary structure and function of three gonadotropin-releasing hormones, including a novel form, from an ancient teleost, herring.

The evolution of GnRH and the role of multiple forms within the brain are examined. Three forms of GnRH were purified from the brain of Pacific herring (Clupea harengus pallasi) and characterized using Edman degradation and mass spectrometry. Two forms correspond with the known structures of chicken GnRH-II and salmon GnRH that are found in many vertebrate species. The third form, designated herring GnRH (hrGnRH), has a primary structure of pGlu-His-Trp-Ser-His-Gly-Leu-Ser-Pro-Gly-NH2. This novel peptide is a potent stimulator of gonadotropin II and GH release from dispersed fish pituitary cells. The content of hrGnRH in the pituitary was 8-fold that of salmon GnRH and 43-fold that of chicken GnRH-II, which provides supporting evidence that hrGnRH is involved in the release of gonadotropin. Herring is the most phylogenetically ancient animal in which three forms of GnRH have been isolated and sequenced. Our evidence suggests that the existence of three GnRHs in the brain of one species 1) is an ancestral condition for teleosts, 2) has the potential for separate regulation of the distinct GnRHs, and 3) may be an evolutionary advantage for refined control of reproduction in different environments.

Amino Acid Sequence↗

Skeletal manifestations of bear scavenging.

In many partially or fully skeletonized forensic cases, postmortem animal damage is simply attributed to rodents or carnivores; little effort is made to determine the general size or assign a genus to the scavenger. As one of the largest wild carnivores to inhabit mountainous and forested areas throughout the continental United States, Alaska, and Canada, black bears (Ursus americanus) must be considered possible suspects when skeletonized remains are located showing marks of carnivore damage. Since 1995, three cases of known bear scavenging have been referred to the Maxwell Museum's Laboratory of Human Osteology by the New Mexico Office of the Medical Investigator for skeletal analysis. These cases comprise a total of seven individuals, and all of the remains were deposited in high altitude forests of New Mexico along the western border with Arizona with a minimum of 4 months exposure before recovery. When analyzed, all cases shared a similar pattern of element survivorship and damage. We suggest that bears can be distinguished from members of the canid family, the other common scavenger of human remains, based on the representation of skeletal elements at the scene. Rates and patterns of damage are not as accurate as element recovery in the discrimination of scavenger genus. Use of this information should allow forensic anthropologists to better understand the postmortem taphonomic processes that shaped the skeletal remains, and hopefully prevent misdiagnoses of perimortem trauma on elements not typically scavenged by canids.

Adult↗

Mutations in the gene encoding human persyn are not associated with amyotrophic lateral sclerosis or familial Parkinson's disease.

The synucleins are a family of small proteins expressed in nervous tissue, which have been implicated in neurodegeneration. Using single strand conformation polymorphism analysis we screened for polymorphisms and mutations in the gene encoding human persyn, a recently discovered member of the synuclein family, in controls, patients with sporadic or familial amyotrophic lateral sclerosis (ALS) or familial Parkinson's disease (PD). Six polymorphisms in the genomic sequence of persyn were detected; A590C (5' untranslated region), G1943C (exon 3), G2049A (intron 3), T4502C (intron 3), T4552A (exon 4) and C5019T (3' untranslated region). However no associations with disease state were found in our sample group.

Amyotrophic Lateral Sclerosis↗

Craniofacial morphology of the first Americans: Pattern and process in the peopling of the New World.

The peopling of the New World has been the focus of anthropological attention since the last century. Proponents of multiple migration models have claimed that patterns of variation among extant New World populations reflect ancient, discrete migrations to the Americas during the terminal Pleistocene. Although multiple migration models appear to explain patterns of both past and present craniometric variation, this interpretation rests on a number of key assumptions that require further investigation. We examined a series of Paleoindian (n = 11) and Archaic (n = 384) crania from North and South America, and compare these early samples to a large world-wide sample of late Holocene (n = 6,742) remains to assess within- and among-group variability in early samples, and to determine how patterns of variation could be viewed as a reflection of both population history and population structure. Analyses included univariate and multivariate analysis of variance, principal component analysis, calculation of biological distances, and multivariate allocation methods. We also performed model-bound analyses of these data, including Relethford-Blangero analysis and calculation of F(ST). Our results indicate that under the assumptions of migration/founder models, the data are consistent with Paleoindians having derived from an undifferentiated Asian population that was not ancestral to modern American Indians. This view can be accommodated into existing models of multiple founders (migrations) in the New World. However, the assumptions required for such an interpretation are not realistic, and the diversity of early populations could as easily reflect population structuring processes such as genetic drift, demographic growth, and other phenomena. When the data were analyzed controlling for the effects of genetic drift (i.e., with smaller long-term effective population sizes for Paleoindians), the Paleoindian samples were no longer distinct from modern Native American populations. Other factors that need to be considered include processes involved in craniofacial change and adaptation during the past 10,000 years. Finally, patterns of variation in the North and South American Paleoindian samples are different, suggesting that the process of New World colonization is more complex than previously assumed.

Anthropometry↗

Gonadotropin-releasing hormone in mulberry cells of Saccoglossus and Ptychodera (Hemichordata: Enteropneusta).

Mulberry cells are epidermal gland cells bearing a long basal process resembling a neurite and are tentatively regarded as neurosecretory cells. They occur scattered through the ectoderm of the proboscis, collar, and anterior trunk regions of the acorn worms Saccoglossus, usually in association with concentrations of nervous tissue. They contain secretion granules that appear from electron micrographs to be released to the exterior. The granules are immunoreactive with antisera raised against mammalian and salmon gonadotropin-releasing hormone (GnRH). Similar results were obtained with another enteropneust, Ptychodera bahamensis, using antisera raised against tunicate-1 and mammalian GnRH. Mulberry cells were not found in either Cephalodiscus or Rhabdopleura (Hemichordata: Pterobranchia). Extracts of tissues from 4200 Saccoglossus contain an area of immunoreactive GnRH that is detected by an antiserum raised against lamprey GnRH when characterized by high-performance liquid chromatography and radioimmunoassay. This is the first report of the occurrence of GnRH in hemichordates, probably the most primitive group clearly belonging to the chordate lineage. The physiological function of GnRH in enteropneusts is unknown, but an exocrine function appears more likely than an endocrine or neurotransmitter role.

Animals↗

Circadian regulation of prion protein messenger RNA in the rat forebrain: a widespread and synchronous rhythm.

Although the expression of the normal prion protein in the host is critical to the development of transmissible spongiform encephalopathies, the physiological role of this protein and the processes regulating its expression remain obscure. We now report that the messenger RNA for the prion protein is regulated in the rat brain in a marked circadian manner not only in the suprachiasmatic nuclei, the principal site for the generation of mammalian circadian rhythms, but also in other forebrain regions. The data show a remarkable consistency in the concurrence of a single peak of prion protein messenger RNA at each of the sites early in the animal's phase of increased locomotor activity; behavioural arousal does not, however, appear to affect this expression. We believe this to be the first study demonstrating that the expression of prion protein messenger RNA can change over a relatively short period in vivo. The results are discussed with reference to the range of recently discovered "clock-related" transcripts which also have widespread tissue expression; these include the messenger RNAs for D-box binding protein and thyroid embryonic factor, transcription factors which bind to the prion protein promoter.

Animals↗