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M Rossor

Publications and source records attributed to M Rossor.

At least 55 records · Page 3Linked to original sources

The Cystatin-C gene is not linked to early onset familial Alzheimer's disease.

The APP717 mutations discovered in only a few early onset Alzheimer's disease (AD) families have confirmed the genetic heterogeneity of this disorder. To identify the other gene(s) involved in the disease we selected the protease inhibitor, Cystatin-C, as a candidate gene. Cystatin-C is an amyloidogenic protein causing hereditary cerebral haemorrhage with amyloidosis-Icelandic type (HCHWA-I). It is localised with the beta-amyloid peptide in the arterial walls of AD brains. We have analysed the segregation of a polymorphic marker in this gene in 8 early onset AD families. Two early onset families showed clear non-segregation of the marker with the disease. When the 8 families are analysed together (assuming only one other gene is involved), they present exclusion linkage criteria. These data indicate that Cystatin-C is not the site of the defect in 2 families and is not likely to be in the other families analysed. We conclude that the deposition of Cystatin-C in AD is a secondary event in the disease process, and that this gene is not pathogenic in familial AD.

Adult↗

Screening for the APP codon 670/671 mutations in Alzheimer's disease.

A mutation at codons 670 and 671 of exon 16 of the amyloid precursor protein has recently been identified as a cause of early onset familial Alzheimer's disease. Using restriction enzyme digestion, screening failed to reveal the occurrence of this mutation in 43 families with early onset, 31 families with late onset, 30 cases of sporadic Alzheimer's disease or 30 clinically normal individuals.

Adult↗

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↗

Familial progressive supranuclear palsy.

A progressive extrapyramidal syndrome and dementia occurred in three members of one family. The age of onset was in the seventh decade and the affected individuals showed many of the clinical features of progressive supranuclear palsy (PSP). Necropsy of one individual revealed the neuropathological features of PSP. We propose that this family has a familial form of PSP and review the evidence in the literature that a familial form exists.

Aged↗

Familial Alzheimer's disease with the amyloid precursor protein position 717 mutation and sporadic Alzheimer's disease have the same cytoskeletal pathology.

The cytoskeletal pathology of a patient with familial Alzheimer's disease (AD) associated with the probably causal amyloid precursor protein (APP) codon 717 Val----Ile mutation is described. In addition to moderately extensive beta A4 protein deposition within the substance of the brain and in blood vessel walls (congophilic angiopathy), there was abundant cytoskeletal pathology in the form of neurofibrillary tangles, plaque neurites and neuropil threads. Interestingly, plentiful cortical and subcortical Lewy bodies were also seen. In order to compare the cytoskeletal pathology in this case with that seen in sporadic cases of AD we (1) studied the immunohistochemical profile of the amyloid and cytoskeletal pathology with antibodies to beta A4 protein, tau, phosphorylated neurofilament epitopes and ubiquitin and (2) performed a biochemical fractionation and Western blot analysis for the abnormally phosphorylated form of tau (A68) characteristically seen in AD. No substantial difference between the familial case and sporadic cases could be found. We conclude that it is now reasonable to hypothesise that an abnormality in APP metabolism is responsible not only for the deposition of beta A4 protein, but also for the range of cytoskeletal pathology, typical of AD.

Alzheimer Disease↗

A locus for familial early-onset Alzheimer's disease on the long arm of chromosome 14, proximal to the alpha 1-antichymotrypsin gene.

Although mutations in the beta-amyloid precursor protein gene (APP) on chromosome 21 cause some cases of early-onset Alzheimer's disease (AD), most cases evidently do not have mutations in APP. We analysed ten early-onset families for linkage to APP and markers elsewhere in the genome. One family (F172) was consistent with linkage to chromosome 21 and was subsequently found to have an APP Val to Ile mutation. Of the others, all but one were consistent with linkage to markers in the middle long arm of chromosome 14. However, no family showed independent evidence of linkage with two point analysis and only one showed independent evidence of linkage on multipoint analysis. Therefore, we cannot rule out heterogeneity at these loci although tests for heterogeneity were not significant.

Adult↗

Screening for mutations in the open reading frame and promoter of the beta-amyloid precursor protein gene in familial Alzheimer's disease: identification of a further family with APP717 Val-->Ile.

Following the identification of mutations in the beta-amyloid precursor protein (APP) gene in familial, early onset Alzheimer's disease (AD), we have developed a screening protocol using single strand conformation analysis (SSCA) to screen exon 17 for the known mutations within APP. In addition, we used this protocol to screen the other seventeen exons of APP and a three hundred and thirty base pair regulatory region of the promoter for new mutations in 9 families with early onset AD. Exons 16 and 17, which encode the deposited beta-amyloid peptide, were screened in a further 10 families. Our screening procedure identifies all the reported mutations within APP. While we have identified a further family with APP717 Val-->Ile, we did not find any previously undescribed mutations. Screening of other exons of APP in 2 families in which we have previously reported mutations at APP717, failed to reveal other sequence abnormalities supporting the hypothesis that the mutations at APP717 cause the disease in these families. These data suggest that mutations in APP are a rare cause of familial early onset AD (3/21 families tested) and that within APP most, possibly all, mutations which cause AD are in exon 17.

Adult↗

Amaurosis fugax in young people.

Nine young adults (median age 19.5 years) who suffered from amaurosis fugax (AF) are described. The attacks of AF were short in duration and preceded by premonitory symptoms in five cases and by a migrainous headache in two. In five patients the visual loss progressed in a lacunar pattern unlike the 'curtain' pattern characteristic of AF in older patients. Investigation revealed no evidence of an embolic or atheromatous aetiology. In two cases a minor abnormality was found on echocardiography. We conclude that AF in young adults has a different clinical pattern and may have a different aetiology, possibly migrainous, compared with that seen in older patients. The pattern of visual loss in some of the cases suggests that the choroidal circulation rather than the retinal circulation is primarily affected.

Adolescent↗

Sequencing of exons 16 and 17 of the beta-amyloid precursor protein gene in 14 families with early onset Alzheimer's disease fails to reveal mutations in the beta-amyloid sequence.

A mutation within exon 17 at codon 717 of the beta-amyloid protein precursor (APP) gene is one cause of early onset familial Alzheimer's disease. Direct sequencing of exons 16 and 17 of the beta-amyloid precursor protein gene in 14 families with familial early onset Alzheimer's disease without the known pathogenic mutation (APP717) failed to reveal other mutations within the beta-amyloid sequence in this form of the disorder.

Adult↗

Early-onset Alzheimer's disease caused by mutations at codon 717 of the beta-amyloid precursor protein gene.

A mutation at codon 717 of the beta-amyloid precursor protein gene has been found to cosegregate with familial Alzheimer's disease in a single family. This mutation has been reported in a further five out of approximately 100 families multiply affected by Alzheimer's disease. We have identified another family, F19, in which we have detected linkage between the beta-amyloid precursor protein gene and Alzheimer's disease. Direct sequencing of exon 17 in affected individuals from this family has revealed a base change producing a Val----Gly substitution, also at codon 717. The occurrence of a second allelic variant at codon 717 linked to the Alzheimer's phenotype supports the hypothesis that they are pathogenic mutations.

Alzheimer Disease↗

Genetic linkage studies suggest that Alzheimer's disease is not a single homogeneous disorder.

Alzheimer's disease, a fatal neurodegenerative disorder of unknown aetiology, is usually considered to be a single disorder because of the general uniformity of the disease phenotype. Two recent genetic linkage studies revealed co-segregation of familial Alzheimer disease with the D21S1/S11 and D21S16 loci on chromosome 21. But two other studies, one of predominantly multiplex kindreds with a late age-of-onset, the other of a cadre of kindreds with a unique Volga German ethnic origin, found absence of linkage at least to D21S1/S11. So far it has not been possible to discern whether these conflicting reports reflect aetiological heterogeneity, differences in methods of pedigree selection, effects of confounding variables in the analysis (for example, diagnostic errors, assortative matings), or true non-replication. To resolve this issue, we have now examined the inheritance of five polymorphic DNA markers from the proximal long arm of chromosome 21 in a large unselected series of pedigrees with familial Alzheimer's disease. Our data suggest that Alzheimer's disease is not a single entity, but rather results from genetic defects on chromosome 21 and from other genetic or nongenetic factors.

Alzheimer Disease↗