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Biomedical subjects

Christopher M Morris

Publications and source records attributed to Christopher M Morris.

12 recordsLinked to original sources

High levels of mitochondrial DNA deletions in substantia nigra neurons in aging and Parkinson disease.

Here we show that in substantia nigra neurons from both aged controls and individuals with Parkinson disease, there is a high level of deleted mitochondrial DNA (mtDNA) (controls, 43.3% +/- 9.3%; individuals with Parkinson disease, 52.3% +/- 9.3%). These mtDNA mutations are somatic, with different clonally expanded deletions in individual cells, and high levels of these mutations are associated with respiratory chain deficiency. Our studies suggest that somatic mtDNA deletions are important in the selective neuronal loss observed in brain aging and in Parkinson disease.

Aging↗

Does the mitochondrial genome play a role in the etiology of Alzheimer's disease?

We report here the analyses of complete mtDNA coding region sequences from more than 270 Alzheimer's disease (AD) patients and normal controls to determine if inherited mtDNA mutations contribute to the etiology of AD. The AD patients and normal individuals were carefully screened and drawn from two populations of European descent in an effort to avoid spurious effects due to local population anomalies. Overall, there were no significant haplogroup associations in the combined AD and normal control sequence sets. Reduced median network analysis revealed that the AD mtDNA sequences contained a higher number of substitutions in tRNA genes, and that there was an elevated frequency of replacement substitutions in the complex I genes of the control sequences. Analysis of the replacement substitutions indicated that those arising in the AD mtDNAs were no more deleterious, on average, than those in the control mtDNAs. The only evidence for the synergistic action of mutations was the presence of both a rare non-conservative replacement substitution and a tRNA mutation in 2 AD mtDNAs, from a total of 145, whereas such a combination of mutations was not observed in the control sequences. Overall, the results reported here indicate that pathogenic inherited mtDNA mutations do not constitute a major etiological factor in sporadic AD. At most, a small proportion of AD patients carry a pathogenic mtDNA mutation and a small proportion of cognitively normal aged individuals carry a mtDNA mutation that reduces the risk of AD.

Aged, 80 and over↗

Familial neurocardiogenic (vasovagal) syncope.

Vasovagal syncope (VSS) is an exaggerated tendency towards the common faint caused by a sudden and profound hypotension with or without bradycardia. The etiology of VVS is unknown though several lines of evidence indicate central and peripheral abnormalities of sympathetic function. Studies however indicate a strong heritable component to the etiology of VVS in over 20% of cases. Here, we report the findings from a family that shows apparently autosomal dominant VVS in at least three generations. Clinical findings included an absence of any discernible cardiac or autonomic abnormalities and reproducible hypotension on tilt table testing in affected family members.

Blood Pressure↗

Comparative proteomic analysis using samples obtained with laser microdissection and saturation dye labelling.

Comparative proteomic methods are rapidly being applied to many different biological systems including complex tissues. One pitfall of these methods is that in some cases, such as oncology and neuroscience, tissue complexity requires isolation of specific cell types and sample is limited. Laser microdissection (LMD) is commonly used for obtaining such samples for proteomic studies. We have combined LMD with sensitive thiol-reactive saturation dye labelling of protein samples and 2-D DIGE to identify protein changes in a test system, the isolated CA1 pyramidal neurone layer of a transgenic (Tg) rat carrying a human amyloid precursor protein transgene. Saturation dye labelling proved to be extremely sensitive with a spot map of over 5,000 proteins being readily produced from 5 mug total protein, with over 100 proteins being significantly altered at p < 0.0005. Of the proteins identified, all showed coherent changes associated with transgene expression. It was, however, difficult to identify significantly different proteins using PMF and MALDI-TOF on gels containing less than 500 mug total protein. The use of saturation dye labelling of limiting samples will therefore require the use of highly sensitive MS techniques to identify the significantly altered proteins isolated using methods such as LMD.

Alzheimer Disease↗

Polymorphism in the human DJ-1 gene is not associated with sporadic dementia with Lewy bodies or Parkinson's disease.

Genetic analysis of early onset Parkinson's disease (PD) has indicated that the mutation DJ-1 gene is one cause of autosomal recessive PD. Its role in the development of late onset PD and other Lewy body associated disorders such as dementia with Lewy bodies (DLB) is however unknown. We have therefore determined the influence of a common polymorphism in the DJ-1 gene that shows strong linkage disequilibrium with other DJ-1 polymorphisms, in late onset PD and DLB. No alteration in the frequency of the intron 1 deletion allele was seen in PD or DLB, nor were DJ-1 genotypes altered by disease. Stratification of the cases according to the apolipoprotein E epsilon4 allele additionally failed to show any significant association. The DJ-1 gene does not appear to be a significant risk factor for late onset Lewy body disease in this population.

Adult↗

Novel presenilin 1 mutation with profound neurofibrillary pathology in an indigenous Southern African family with early-onset Alzheimer's disease.

Genetically determined Alzheimer's disease (AD) is virtually unknown in Africa. We report clinicopathological findings and a presenilin 1 (PS1) mutation associated with early-onset AD in a large Xhosa family from Southern Africa. Twelve individuals spanning four generations were affected, four of whom underwent clinical and psychometric evaluation. Their phenotype was characterized by memory impairment beginning in the early part of the fifth decade, with progressive dementing illness lasting 6-7 years that did not appear to be modified by the presence of an apolipoprotein E (APOE)-epsilon 4 allele. Initial linkage-based analysis using known DNA markers suggested allele cosegregation with a locus on chromosome 14. Direct sequencing of the PS1 gene disclosed a novel I143M (ATT to ATG at nucleotide 677) mutation that lies in a cluster in the second transmembrane domain of the protein. Examination of the proband's brain at autopsy revealed severe AD pathology characterized by neuronal loss, abundant beta amyloid (A beta) neuritic plaques (A beta 42) and neurofibrillary degeneration extending into the brainstem. The phenotype of the I143M mutation was clearly associated with a high degree of neurofibrillary change compared with early-onset sporadic AD cases. Although sporadic cases of AD do exist in African populations, our study confirms the existence of early-onset familial AD among indigenous Southern Africans.

Age of Onset↗

Chronic glial activation, neurodegeneration, and APP immunoreactive deposits following acute administration of double-stranded RNA.

Several neurodegenerative disorders, including Alzheimer's and Parkinson's diseases, are associated with immunocompetent microglia, leading to the suggestion that chronic glial-mediated inflammation contributes to the neurodegeneration seen in these diseases. Little direct evidence supports this hypothesis, and no suitable rodent models exist that do not involve the use of blunt trauma or ischaemia, events that are infrequently encountered in the human disease state. In the present study, we report that administration of double-stranded RNA, a classical inducer of interferon-gamma (IFN-gamma), causes rapid and persistent activation of microglia and astrocytes, as well as induction of interleukin-1beta (IL-beta) and nitric oxide synthase. In close temporal succession to glial activation, there is neurodegeneration, with neuron loss involving apoptosis in selected brain regions including the septal nucleus, hippocampus, cortex and thalamus, along with hippocampal atrophy. This neuronal loss is accompanied by punctate deposits of material that are immunoreactive for amyloid precursor protein, beta-amyloid peptide (Abeta), and apolipoprotein E. The findings may have clinical relevance, since the administration of the nonsteroidal antiinflammatory agent (NSAID) ibuprofen markedly reduces the neurodegeneration observed in the absence of significant glial inhibition. These findings may be relevant to the pathogenesis of Alzheimer's disease in particular, and to other neurodegenerative diseases involving inflammation.

Amyloid beta-Peptides↗

Regulation of attention and response to therapy in dementia by butyrylcholinesterase.

OBJECTIVES: To determine the response of patients with different butyrylcholinesterase genotypes to therapy, and the influence of butyrylcholinesterase on cognition. Acetylcholine plays a key role in attention and memory and reduced cortical acetylcholine is associated with the severity of dementia. Inhibitors of the enzyme acetylcholinesterase are an effective dementia treatment, though the role of the related enzyme butyrylcholinesterase is less well understood. METHODS: We examined the response of a cohort of dementia patients enrolled in a trial of a cholinesterase inhibitor who had been genotyped at the butyrylcholinesterase locus. Additionally a prospectively assessed cohort of dementia patients was genotyped and rate of cognitive decline examined, along with baseline cognitive performance in a group of elderly non-demented individuals. We identified that the presence of reduced-activity butyrylcholinesterase variants correlates with preserved attentional performance and reduced rate of cognitive decline. During cholinesterase inhibitor therapy, patients with normal butyrylcholinesterase show improved attention, though patients carrying reduced-activity enzyme do not, possibly due to being at ceiling performance. Butyrylcholinesterase did not however affect attentional performance in non-demented individuals with mild cognitive impairment. CONCLUSIONS: These findings indicate that the butyrylcholinesterase enzyme is a major regulator of attention especially in cholinergic deficiency states through its ability to hydrolyse acetylcholine. Pharmacologic manipulation of this enzyme may be a viable strategy in dementia treatment and, with butyrylcholinesterase genotyping, may provide pharmacogenomic treatment of dementia.

Acetylcholine↗

The tau locus is not significantly associated with pathologically confirmed sporadic Parkinson's disease.

Mutations of the tau gene in frontotemporal dementia with parkinsonism and genetic association of the tau locus with progressive supranuclear palsy and corticobasal degeneration directly implicate the tau gene in the aetiology of these tauopathies. Three studies have also shown an association of the tau locus with clinically diagnosed Parkinson's disease. Noting the significant incidence of clinical misdiagnosis of Parkinson's disease, we investigated this tau gene association in a series of 157 pathologically confirmed cases of brain stem Lewy body Parkinson's disease by analysing their tau haplotype status. Although H1H1 homozygotes are elevated in the Parkinson's disease cases (63.1%) compared to controls (56.1%) this difference is not significant (P=0.22). These results indicate that any association must either be weak (with an odds ratio of less than 2) or that previous positive associations were due to contamination of clinically diagnosed cases with other diagnostic clinico-pathological entities such as neurofibrillary tangle Parkinson's syndrome.

Aged↗

Transferrin gene polymorphism in Alzheimer's disease and dementia with Lewy bodies in humans.

Genetic studies in Alzheimer's disease (AD), have indicated that the apolipoprotein E locus (APO E) is a major susceptibility factor, but that it can only account for approximately 50% of AD cases. Several other studies have attempted to identify additional genetic loci associated with disease development, often based on a candidate gene approach. As several lines of evidence indicate that oxidative stress and free radical damage occur in AD, the transferrin gene (TF) has been suggested as a candidate locus for AD since it is the major transport protein for iron, which itself is a major factor in free radical generation. Previous studies have shown elevated TF C2 allele frequencies in AD, this being specifically associated with carriers of the APO E varepsilon4 allele. We have therefore determined the influence of the common polymorphisms in TF, C1 and C2, in dementia. The frequency of the C2 allele was not significantly associated with AD. Stratification of cases according to the APO E varepsilon4 allele showed a highly significant excess of the C2 allele in AD cases without the varepsilon4 allele, contrasting with previous studies. Given the contrasting findings between reports of altered TF C2 allele frequencies, the TF locus would not appear to be a strong risk factor for AD in this population.

Aged↗

Clinical and neuropathological correlates of apolipoprotein E genotype in dementia with Lewy bodies.

Dementia with Lewy bodies (DLB) represents the second commonest cause of dementia in the elderly following Alzheimer's disease (AD). Whilst the presence of Lewy bodies is essential, DLB shares with AD the presence of senile plaques (SP), but neurofibrillary tangles (NFT) are not a necessary feature. The apolipoprotein E (APO E) epsilon4 allele is the most consistently associated genetic risk factor for AD and has also been shown to associate with DLB. We have therefore analysed the APO E epsilon4 allele in a large series of DLB cases coming to autopsy to: (1) determine if the epsilon4 allele describes a similar risk in DLB development as in AD and (2) determine how APO E epsilon4 allele status correlates with clinical and neuropathological findings in DLB, and in AD, as an indication of the role of APO E in underlying disease biology. Both DLB and AD share an increased epsilon4 allele frequency, though in DLB the epsilon2 allele frequency is not reduced and there is a relative lack of epsilon4 homozygotes. In contrast to previous studies, no association of the epsilon4 allele with age at onset or duration of disease was found in either disorders. In DLB cases, overall a significantly shorter duration of illness was observed when compared with AD cases, though no significant effect of the epsilon4 allele on disease onset or duration was seen. The survival rate was reduced by the presence of the epsilon4 allele in DLB, as with AD. No effect on SP or NFT counts was seen with the epsilon4 allele, though DLB cases showed a lower SP burden in addition to the expected lower NFT counts. This study demonstrates that DLB shares the APO epsilon4 allele with AD as a common risk factor, but that there are differences in the way the epsilon4 allele affects the phenotypic expression of disease.

Adult↗

Neuroferritinopathy: a window on the role of iron in neurodegeneration.

Neuroferritinopathy is a recently recognised genetic disease resulting in a dominantly inherited movement disorder. The condition was mapped by linkage analysis to chromosome 19q13.3 and found to be due to a single adenine insertion in the ferritin light chain (FTL) gene at position 460-461 which is predicted to alter the C terminus of the FTL polypeptide. Clinical features of neuroferritinopathy are highly variable, with chorea, dystonia, and Parkinsonian features predominating in different affected individuals. The most consistent feature is a dystonic dysarthria. Symptoms and abnormal physical signs appear to be restricted to the nervous system and onset is typically in the fourth to sixth decades. Low serum ferritin also characterises this condition. Brain MR imaging of affected patients demonstrates iron deposition in the basal ganglia, progressing over years to cystic degeneration, and brain histochemistry shows abnormal aggregates of ferritin and iron. Now that the molecular basis of the condition is known, therapeutic interventions to reduce or reverse brain iron deposition are being evaluated. This rare disease provides evidence of a central role for iron metabolism in neurodegenerative disorders.

Amino Acid Sequence↗