PubMed Health⌕ Search

Biomedical subjects

H Backhovens

Publications and source records attributed to H Backhovens.

43 records · Page 3Linked to original sources

Absence of genetic linkage of Charcot-Marie-Tooth disease (HMSN Ia) with chromosome 1 gene markers.

We previously reported a large Charcot-Marie-Tooth family not linked to the Duffy blood group marker, supporting the existence of genetic heterogeneity in this neuropathy. In order to investigate the possibility of another disease locus on chromosome 1, we analyzed this family further, using DNA polymorphisms of 6 genes. Absence of linkage makes a second disease locus on chromosome 1 unlikely.

Charcot-Marie-Tooth Disease↗

The Duffy blood group is linked to the alpha-spectrin locus in a large pedigree with autosomal dominant inheritance of Charcot-Marie-Tooth disease type 1.

The alpha-spectrin locus (SPTA) on chromosome 1 maps to 1q22-q25 and alpha-spectrin specific probes detect restriction fragment length polymorphisms (RFLPs) with the endonucleases MspI and PvuII. The Duffy blood group (FY) has been mapped to the 1p21-q23 region. We found positive linkage between the alpha-spectrin and the Duffy loci with a maximal Lod score of 3.81 at theta = 0.0 using the computer program MLINK. This indicates that both loci are very closely linked and probably localized to 1q22-q23.

Blood Group Antigens↗

Expression of glial fibrillary acidic protein in rat C6 glioma relates to vimentin and is independent of cell-cell contact.

Glial fibrillary acidic protein (GFAP) was induced in rat C6 glioma cells grown in M199 and HAM F10 media by addition of 1 mM dibutyryl cyclic AMP. The amount of GFAP per cell increased 7- and 33-fold in M199 and HAM F10 media, respectively. GFAP could be induced in each phase of the cell culture except for the lag phase, where GFAP synthesis was delayed until the onset of the logarithmic growth. The induction took place under conditions where the total protein content of the cell decreased. Measurement of the amount of vimentin indicated that GFAP was induced under conditions of low vimentin concentration. Our results do not support the hypothesis that GFAP induction depends on cell-cell contact or cell proliferation. They indicate a shift from vimentin to GFAP synthesis by an as yet unknown mechanism.

Animals↗

Failure of familial Alzheimer's disease to segregate with the A4-amyloid gene in several European families.

The gene coding for the amyloid protein, a component of neuritic plaques found in brain tissue from patients with Alzheimer's disease, has been localized to chromosome 21, and neighbouring polymorphic DNA markers segregate with Alzheimer's disease in several large families. These data, and the association of Alzheimer's disease with Down's syndrome, suggest that overproduction of the amyloid protein, or production of an abnormal variant of the protein, may be the underlying pathological change causing Alzheimer's disease. We have identified a restriction fragment length polymorphism of the A4-amyloid gene, and find recombinants in two Alzheimer's disease families between Alzheimer's disease and the A4-amyloid locus. This demonstrates that the gene for plaque core A4-amyloid cannot be the locus of a defect causing Alzheimer's disease in these families. These data indicate that alterations in the plaque core amyloid gene cannot explain the molecular pathology for all cases of Alzheimer's disease.

Adult↗

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↗