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M Cruts

Publications and source records attributed to M Cruts.

71 records · Page 4Linked to original sources

Molecular genetic analysis of familial early-onset Alzheimer's disease linked to chromosome 14q24.3.

Genetic linkage studies have indicated that chromosome 14q24.3 harbours a major locus for early-onset (onset age <65 years) Alzheimer's disease (AD3). Positional cloning efforts have identified a novel gene S182 or presenilin 1 as the AD3 gene. We have mapped S182 in the AD3 candidate region between D14S277 and D14S284 defined by genetic linkage studies in the two chromosome 14 linked, early-onset AD families AD/A and AD/B. We have shown that S182 is expressed in lymphoblasts and have determined the complete cDNA in both brain and lymphoblasts by RT-PCR sequencing. S182 is alternatively spliced in both brain and lymphoblasts within a putative phosphorylation site located 5' in the coding region. We identified two novel mutations, Ile143Thr and Gly384la located in, respectively, the second transmembrane domain and in the sixth hydrophilic loop of the putative transmembrane structure of S182. As families AD/A and AD/B have very similar AD phenotype our observation of two mutations in functionally different domains suggest that onset age and severity of AD may not be very helpful predictors of the location of putative S182 mutations.

Age of Onset↗

A yeast artificial chromosome contig from human chromosome 14q24 spanning the Alzheimer's disease locus AD3.

Familial Alzheimer's disease has been previously linked to three genetic loci on chromosomes 21, 19 and 14. The AD3 locus on chromosome 14 has not been cloned and the molecular defect in chromosome 14-linked AD3 families has yet to be identified. Genetic linkage analysis has placed the AD3 locus in band 14q24 between the dinucleotide markers D14S61 and D14S289, a genetic distance of approximately 6.4 cM. We have constructed a yeast artificial chromosome (YAC) contig that covers the entire minimal region, encompassing all genetic markers that are non-recombinant for the disease in AD3-linked families. This contig, constructed by using a combination of YAC end sequence walking and sequence-tagged site (STS) mapping, consists of 63 YACs from three different libraries. The AD3 contig contains 12 polymorphic dinucleotide repeat markers from D14S61 to D14S251, as well as an additional 43 non-polymorphic STSs. This contiguous physical map of the region will allow the physical distances between the markers to be determined, as well as providing a framework for the identification of candidate genes.

Aged↗

Genetic and physical characterization of the early-onset Alzheimer's disease AD3 locus on chromosome 14q24.3.

Genetic linkage studies have provided significant evidence that a major gene defect, AD3, for familial early-onset Alzheimer's disease (EOAD) is located at chromosome 14q24.3, between the short tandem repeat (STR) markers D14S52 and D14S53 defining a genetic size of 22.7 cM for the AD3 candidate region. We constructed a physical map of the AD3 region using yeast artificial chromosomes (YACs) selected from both the CEPH and megaCEPH YAC libraries using the AD3 linked STR markers as well as new sequence-tagged sites (STSs) designed based on YAC terminal sequences. The YAC map is contiguous in the region between D14S258 and D14S53, a region of 8.2 cM, and has an estimated physical size of 4-8 Mb. The YAC contig map was used as a framework to localize three known genes, a pseudogene and two brain expressed sequence tags (ESTs). Linkage analysis studies in two Belgian chromosome 14 EOAD families AD/A and AD/B, identified obligate recombinants in family AD/A with D14S289 and D14S61 reducing the genetic size of the candidate AD3 region substantially. The minimal AD3 candidate region measured 6.4 cM on the genetic map and is contained within six overlapping megaCEPH YACs that covered a physical distance estimated between 2 and 6 Mb. These YACs as well as other YACs in the YAC contig map are valuable resources in gene cloning efforts or genomic sequencing experiments aiming at isolating the AD3 gene.

Age of Onset↗

Genetic analysis of the cellular oncogene fos in patients with chromosome 14 encoded Alzheimer's disease.

A major gene for familial early-onset Alzheimer's disease (AD) has been localised to chromosome 14q24.3. The c-fos gene (FOS), localised to 14q24.3-q31, is a candidate for the AD gene since it may be involved in the transcription regulation of the amyloid precursor protein gene (APP). Part of APP codes for the beta A4 amyloid present in AD brain lesions. We analyzed linkage of AD in the 2 early-onset AD families. AD/A and AD/B, using a polymerase chain reaction (PCR) based assay for a restriction fragment length polymorphism (RFLP). The RFLP is detected in BstNI digested DNA and is located near the 3' end of FOS. No obligate recombinants were detected. The 4 exons of FOS were sequenced in one pathologically confirmed AD patient in each family. No exonic mutations were found. Two intronic sequence variations were observed, one in intron 2 and one in intron 3. The intron 2 variation did not segregate with AD. The intron 3 variation which is a single G insertion was used in linkage studies in families AD/A and AD/B and showed conclusive linkage in both families in the absence of recombinants. Therefore, FOS cannot yet be excluded as a candidate gene for AD in these families since mutations may be present in regulatory sequences.

Alzheimer Disease↗

APOE genotype does not modulate age of onset in families with chromosome 14 encoded Alzheimer's disease.

A recent study has demonstrated an association of the apolipoprotein E allele epsilon 4 (APOE*4) to familial and sporadic late-onset Alzheimer's disease (AD). Also, in late-onset AD families linked to chromosome 19, the onset age decreased when the number of APOE*4 alleles increased. A similar effect of the APOE*4 genotype was observed in early-onset AD families linked to mutations in the APP gene located on chromosome 21. We assessed whether the APOE genotype had an influence on the age of onset of AD in chromosome 14 linked early-onset AD families. No significant effect of the APOE genotype on onset age could be detected.

Age of Onset↗

Apolipoprotein E4 allele in a population-based study of early-onset Alzheimer's disease.

Several studies have reported an association of the apolipoprotein E allele epsilon 4 (APOE*4) to familial and sporadic late-onset Alzheimer's disease (LOAD). Here we report on the relationship between APOE*4 and early-onset Alzheimer's disease (EOAD) in a Dutch population-based study. The frequency of the APOE*4 allele was 2.3 times higher among EOAD cases compared to controls. Among patients, the allele frequency was 1.6 times higher in those with a positive family history than in those without. A significant increase in risk of EOAD was found for subjects homozygous for APOE*4 regardless of family history of dementia, but an increase in EOAD risk for APOE*4 heterozygotes could only be shown in subjects with a positive family history. Our study demonstrates a significant association between APOE*4 and EOAD which is modified by family history of dementia.

Adult↗

A population-based study of familial Alzheimer disease: linkage to chromosomes 14, 19, and 21.

Linkage of Alzheimer disease (AD) to DNA markers on chromosomes 14, 19, and 21 was studied in 10 families in which the disease was apparently inherited as an autosomal dominant trait. Families were derived from a Dutch population-based epidemiologic study of early-onset AD. Although in all probands the onset of AD was at or before age 65 years, the mean age at onset was after age 65 years in four families (referred to as "LOAD"). Among the six families with early-onset AD (referred to as "EOAD," i.e., mean age of onset of AD of relatives was at or before age 65 years), conclusive linkage to 14q24.3 was found in one family with a very early onset (around 47 years), while linkage to the same region was excluded in two other families. For the LOAD families, predominantly negative lod scores were obtained, and the overall lod score excluded linkage to chromosome 14. The results with markers on chromosome 19 and chromosome 21 were not conclusive for EOAD and LOAD. The findings of our study confirm genetic heterogeneity within familial EOAD.

Aged↗

Unique sequence homology in the pericentromeric regions of the long arms of chromosomes 13 and 21.

We previously isolated two polymorphic chromosome 21q probes, pVC1.21c (D21S190) and pVC1.34a (D21S149), localized in 21qcen-21q21.2. In addition, pVC1.21c recognized a sequence in 21q22.1-q22.2 and both probes cross-hybridized with non-chromosome-21 sequences. In this study we refined the proximal 21q locations of probes pVC1.21c and pVC1.34a to 21q11.1 and demonstrated that they recognize sequences on chromosome 13 but not on chromosomes 14, 15, and 22. Furthermore, the polymorphisms associated with the two loci were assigned to pericentromeric 13q for pVC1.34a and distal 21q for pVC1.21c. Our results are indicative of a region of unique sequence homology in the pericentromeric region of the long arms of chromosomes 13 and 21.

Blotting, Southern↗

Presenile dementia and cerebral haemorrhage linked to a mutation at codon 692 of the beta-amyloid precursor protein gene.

Several families with an early-onset form of familial Alzheimer's disease have been found to harbour mutations at a specific codon (717) of the gene for the beta-amyloid precursor protein (APP) on chromosome 21. We now report, a novel base mutation in the same exon of the APP gene which co-segregates in one family with presenile dementia and cerebral haemorrhage due to cerebral amyloid angiopathy. The mutation results in the substitution of alanine into glycine at codon 692. These results suggest that the clinically distinct entities, presenile dementia and cerebral amyloid angiopathy, can be caused by the same mutation in the APP gene.

Adult↗

Mapping of a gene predisposing to early-onset Alzheimer's disease to chromosome 14q24.3.

Genetic linkage studies with chromosome 21 DNA markers and mutation analysis of the beta-amyloid protein precursor gene located in 21q21.3 have indicated that early-onset Alzheimer's disease (EOAD) is a heterogeneous disorder for which at least one other chromosomal locus exists. We examined two extended histopathologically confirmed EOAD pedigrees, AD/A and AD/B, with highly informative short tandem repeat (STR) polymorphisms and found complete linkage of the disease to a (CA)n dinucleotide repeat polymorphism at locus D14S43 in 14q24.3 (Zmax = 13.25 at theta = 0.0). Using additional chromosome 14 STR polymorphisms we were able to delineate the region containing the EOAD gene to an area of, at most, 8.9 centiMorgans between D14S42 and D14S53, flanking D14S43 on both sides.

Adult↗

Identification of chromosome 21 DNA polymorphisms for genetic studies in Alzheimer's disease and Down syndrome.

Linkage studies in families with presenile onset of Alzheimer's disease (AD) indicated the presence of a predisposing gene on the proximal long arm of chromosome 21. We mapped four new loci in the candidate AD region using somatic cell hybrids. For three of the four loci, several restriction fragment length polymorphisms were found; for one locus, a multiallelic (CA)n dinucleotide polymorphism was detected. Preliminary genetic mapping of the new polymorphic loci relative to the AD-linked loci was obtained in a reference pedigree. In addition, we used the (CA)n dinucleotide polymorphism to reconstruct the non-disjunction event in a Down syndrome (DS) patient whose mother died of familial AD.

Alzheimer Disease↗

Subregional localization of the chromosome 21 loci D21S24 and D21S26 using physical mapping techniques.

We were able to refine the chromosomal position of two existing marker loci, using an extended chromosome 21 somatic cell hybrid panel. The locus D21S26 mapped in the region 21q11.2-q21.1, and the locus D21S24 in 21q22.1-q22.2. Physical and genetic analysis indicated that D21S26 is tightly linked to D21S13 and D21S16, two markers previously linked to familial Alzheimer's disease.

Alzheimer Disease↗

Genetic association of the presenilin-1 regulatory region with early-onset Alzheimer's disease in a population-based sample.

Genetic association has been reported between a di-allelic polymorphism in intron 8 of presenilin-1 (PSEN1) and Alzheimer's disease (AD) in some studies but not in others. In a population-based series of 102 patients with early onset AD and 118 community controls we examined whether polymorphisms in linkage disequilibrium with intron8 of PSEN1 may explain the association. In addition to the intron 8 polymorphism (P = 0.05), a promoter polymorphism (P = 0.03) and the simple tandem repeat (STR) polymorphism D14S1028 located upstream of PSEN1 (P = 0.04) were found to be marginally significantly associated to AD. When excluding PSEN1 mutation cases (n = 6), the intron 8 association was explained by linkage disequilibrium to the dominant PSEN1 mutations. In the non-mutation cases, the weak associations between the polymorphisms in the regulatory region remained. Our study suggests that a polymorphism/mutation in the promoter or regulatory region of PSEN1 rather than the polymorphism in intron 8 of PSEN1 is associated with early onset AD.

Age of Onset↗