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J Collinge

Publications and source records attributed to J Collinge.

At least 91 records · Page 5Linked to original sources

Rescue of neurophysiological phenotype seen in PrP null mice by transgene encoding human prion protein.

The prion protein (PrP) is central to the aetiology of the prion diseases, transmissible neurodegenerative conditions of humans and animals. PrP null mice show abnormalities of synaptic neurophysiology, in particular weakened GABAA receptor-mediated fast inhibition and impaired long-term potentiation in the hippocampus. Here we demonstrate that this PrP null phenotype is rescued in mice with a high copy number of a transgene encoding human PrP but not in low copy number mice, confirming the specificity of the phenotype for loss of function of PrP. The ability of human PrP to compensate for loss of murine PrP will allow direct study of the functional consequences of the 18 human PrP mutations, which cause the inherited prion diseases; this phenotype can now form the basis of the first functional assay for PrP.

Animals↗

Familial non-specific dementia maps to chromosome 3.

A significant minority of degenerative dementias lack distinctive inclusion bodies, plagues or tangles on pathological examination. Half of these cases have a positive family history of dementia. We have studied the largest published family with such a dementia and mapped the disease locus to a 12 cM region of chromosome 3 spanning the centromere. Haplotype analysis demonstrates a common region shared between all affected individuals between the markers D3S1284 and D3S1603. Like a number of other late onset neurodegenerative diseases, the disease presents at an earlier age when paternally inherited.

Chromosome Mapping↗

Tissue handling in suspected Creutzfeldt-Jakob disease (CJD) and other human spongiform encephalopathies (prion diseases)

Despite many sensational and intimidating reports in the mass media, transmissible spongiform encephalopathies (prion disease) are not contagious in the usual sense. Successful transmission requires both specific material (an affected individual's tissue, from or adjacent to CNS) and specific modes (mainly penetrating contact with the recipient). Nevertheless, specific safety precautions are mandatory to avoid accidental transmission and to decontaminate any infectivity. Autopsy is essential for definite diagnosis of these disorders. Recommendations are given here for performance of the autopsy, for neuropathology service and appropriate decontamination; they are based on the current literature and on precautions taken in most laboratories with experience in handling tissue from transmissible spongiform encephalopathies. In particular, special care must be taken to avoid penetrating wounds, possible contamination should be kept to a minimum, and potential infectious material must be adequately decontaminated by specific means.

Autopsy↗

Transmission of Creutzfeldt-Jakob disease from humans to transgenic mice expressing chimeric human-mouse prion protein.

Transgenic (Tg) mice were constructed that express a chimeric prion protein (PrP) in which a segment of mouse (Mo) PrP was replaced with the corresponding human (Hu) PrP sequence. The chimeric PrP, designated MHu2MPrP, differs from MoPrP by 9 amino acids between residues 96 and 167. All of the Tg(MHu2M) mice developed neurologic disease approximately 200 days after inoculation with brain homogenates from three patients dying of Creutzfeldt-Jakob disease (CJD). Inoculation of Tg(MHu2M) mice with CJD prions produced MHu2MPrPSc (where PrPSc is the scrapie isoform of PrP); inoculation with Mo prions produced Mo-PrPSc. The patterns of MHu2MPrPSc and MoPrPSc accumulation in the brains of Tg(MHu2M) mice were different. About 10% of Tg(HuPrP) mice expressing HuPrP and non-Tg mice developed neurologic disease > 500 days after inoculation with CJD prions. The different susceptibilities of Tg(HuPrP) and Tg(MHu2M) mice to Hu prions indicate that additional species-specific factors are involved in prion replication. Diagnosis, prevention, and treatment of Hu prion diseases should be facilitated by Tg(MHu2M) mice.

Animals↗

Prion protein is necessary for normal synaptic function.

The prion diseases are neurodegenerative conditions, transmissible by inoculation, and in some cases inherited as an autosomal dominant disorder. They include Creutzfeldt-Jakob disease in humans and scrapie and bovine spongiform encephalopathy in animals. The prion consists principally of a post-translationally modified form of a host-encoded glycoprotein (PrPC), designated PrPSc (ref. 1); the normal cellular function of PrPC is, however, unknown. Although PrP is highly conserved among mammals and widely expressed in early embryogenesis, mice homozygous for disrupted PrP genes appear developmentally and behaviourally normal. PrP is a protein anchored to the neuronal surface by glycosylphosphatidylinositol, suggesting a role in cell signalling or adhesion. Here we report that hippocampal slices from PrP null mice have weakened GABAA (gamma-aminobutyric acid type A) receptor-mediated fast inhibition and impaired long-term potentiation. This impaired synaptic inhibition may be involved in the epileptiform activity seen in Creutzfeldt-Jakob disease and we argue that loss of function of PrPC may contribute to the early synaptic loss and neuronal degeneration seen in these diseases.

Action Potentials↗

Confirmation that familial clustering and age of onset in late onset Alzheimer's disease are determined at the apolipoprotein E locus.

We confirm that familial clustering in late onset Alzheimer's disease is associated with the zeta 4 allele of apolipoprotein E. This allele occurs in the great majority (82%) of late onset familial Alzheimer cases. Together with previously published data, it is suggested that the effect of a single zeta 4 allele is to increase the risk of developing AD by an amount equivalent to 5 years and that the effect of zeta 4 homozygosity is to increase the risk of developing AD by an amount equivalent to 10 years of age.

Age of Onset↗

Molecular genetics of human prion diseases.

Human prion diseases occur in inherited, sporadic and acquired forms. The inherited forms are associated with coding mutations in the prion protein gene and the identification of one of these pathogenic mutations allows definitive diagnosis and has resulted in a widening of the previously recognized phenotypic spectrum of these diseases. Study of acquired prion disease provides evidence for genetic susceptibility to development of disease following treatment with contaminated pituitary hormones. Sporadic prion disease occurs predominantly in individuals homozygous with respect to a common PrP polymorphism at residue 129. The identification of pathogenic PrP alleles and the role of the codon 129 PrP gene polymorphism in determining susceptibility to prion disease provides strong support for the idea that an abnormal isoform of PrP, PrPSc, is the principal constituent of the prion and that its propagation involves direct PrP-PrP interactions which occur most readily between identical PrP molecules.

Alleles↗

Prion dementia.

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Dementia↗

Inherited prion disease (PrP lysine 200) in Britain: two case reports.

OBJECTIVE: To identify cases of inherited prion diseases in Britain and to assess their phenotypic features. DESIGN: Screening study of patients suspected clinically to have Creutzfeldt-Jakob disease and other neurodegenerative diseases by prion protein gene analysis. SETTING: Biochemical research department. SUBJECTS: Patients suspected to have Creutzfeldt-Jakob disease and other neurodegenerative diseases. RESULTS: Two patients with symptoms characteristic of sporadic Creutzfeldt-Jakob disease were found to have inherited prion protein disease (PrP lysine 200), with a mutation at codon 200 of the prion protein gene. Both were homozygous at codon 129 of the gene. One patient was a man aged 58 of British descent while the other was of Libyan Jewish origin. CONCLUSION: Two foci of inherited prion disease are known, among Libyan Jews and in Slovakia. A separate British focus of the disease may also exist. Heterozygosity at codon 129 may lead to reduced penetrance of the mutation.

Codon↗

Mutations and polymorphisms in the prion protein gene.

Inherited forms of prion diseases are associated with mutations in the prion protein gene. A common polymorphism at codon 129 is also implicated in the predisposition of individuals to sporadic or iatrogenic forms of the disease. This update lists all the currently published mutations and polymorphisms together with their clinical phenotypes, and discusses the significance of the codon 129 genotype in inherited, sporadic, and iatrogenic cases. There are two categories of mutation. Insertions of additional numbers of an octapeptide lying within an octapeptide repeat region now account for six variations and there are also six point mutations. The identification of mutations in this gene has lead to a broadening of the spectrum of clinical phenotypes that can be classified as prion diseases and have provided an important tool in the diagnosis of familial dementias.

Chromosome Mapping↗

Genetic characterization of a familial non-specific dementia originating in Jutland, Denmark.

Dementias with non-specific pathological changes are a relatively common but under diagnosed form of presenile dementia. A high proportion of reported cases are familial. We report on molecular genetic findings in the largest known pedigree with this syndrome. We have excluded the mutations known to cause familial prion disease, APP-linked familial Alzheimer's disease and candidate regions for Huntington's disease, other forms of Alzheimer's disease and motor neuron disease. We have demonstrated that familial non-specific dementia is a novel genetic dementia.

Aged↗