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A Vandenberghe

Publications and source records attributed to A Vandenberghe.

At least 73 records · Page 4Linked to original sources

Study of the origin of nondisjunction in a family with two cases of Down syndrome using cytogenetic and molecular polymorphisms.

We analyzed the possibility of inherited predisposition to nondisjunction in a family with two cases of Down syndrome using restriction fragment length polymorphisms and cytogenetic heteromorphisms. In both patients the extra chromosome 21 was the result of a nondisjunction event at first meiotic division in the mother. Since both patients are maternally related, genetic predisposition cannot be excluded in this family.

Blotting, Southern↗

Physical mapping of chromosome 21 DNA markers in Alzheimer's disease region using somatic cell hybrids.

From a chromosome 21 phage library, we selected 10 clones located proximal of the senile plaque amyloid precursor protein gene. Since a locus for Alzheimer's disease (AD) has been localized in the pericentromeric region of chromosome 21, the selected phage clones are potential candidate probes for genetic analysis of AD. In this study, we subcloned single-copy fragments of the selected phage clones, refined their physical localization, and examined their chromosomal distribution in relation to their position on chromosome 21. The results indicated that the phage clones are identifying nine chromosome 21 loci, which, if polymorphic, may be helpful in localizing the AD locus more precisely. Moreover, since all phage clones are located close to the centromere of chromosome 21, they can be used to determine the parental origin of nondisjunction in trisomy 21 with high reliability.

Alzheimer Disease↗

The pericentromeric 21 DNA marker pGSM21 (D21S13) contains an expressed HTF island.

The DNA marker locus D21S13, localized in the 21q11.1-q21 region, has been closely linked to familial Alzheimer's disease. We constructed a physical map of 1.7 Mb around D21S13 using probes pGSM21 and pGSE9. The results indicated that pGSM21 contains recognition sites for at least three rare-cutting restriction enzymes. The clustering of rare-cutting restriction sites is indicative of the presence of an HTF (HpaII tiny fragment) island. Restriction site mapping and methylation analysis proved that pGSM21 contains a methylation-free HTF island. Furthermore, a cDNA correlate has been isolated confirming that pGSM21 is part of an expressed sequence. Today, the gene associated with pGSM21 is the gene closest to the centromere on the 21q arm.

Chromosomes, Human, Pair 21↗

Assignment of the Charcot-Marie-Tooth neuropathy type 1 (CMT 1a) gene to 17p11.2-p12.

Charcot-Marie-Tooth disease type 1a (CMT 1a) is an autosomal dominant peripheral neuropathy linked to the DNA markers D17S58 and D17S71, located in the pericentromeric region of the chromosome 17p arm. We analyzed an extended 5-generation Belgian family, multiply affected with CMT 1a, for linkage with eight chromosome 17 markers. The results indicated that the CMT 1a mutation is localized in the chromosomal region 17p11.2-p12 between the marker D17S71 and the gene for myosin heavy polypeptide 2 of adult skeletal muscle.

Charcot-Marie-Tooth Disease↗

DNA fingerprints revealing common and divergent human DNA methylation patterns.

We compared DNA fingerprints of different cell populations from the same individuals, after separate digestion with the isoschizomers MboI and Sau3A. Methylation differences were observed within every individual when comparing fingerprints of Sau3A- with MboI-digested DNA, and of Sau3A-digested sperm with somatic DNA. In some cases, differences were also detected between fingerprints of Sau3A-digested somatic DNA originating from various cell sources. Methylation patterns common to all cell populations examined, including the germline, were observed with a higher frequency than divergent ones. These 'common methylations' are most likely to find their origin during early embryogenesis.

DNA↗

Linkage analysis of the Duffy blood group marker with several chromosome 1 genes in an extended pedigree with Charcot-Marie-Tooth disease.

We have recently demonstrated tight linkage of the Duffy blood group marker to the alpha-spectrin gene in an extended pedigree with Charcot-Marie-Tooth neuropathy. To determine a more precise location of the Duffy blood group locus on the chromosome 1 map we have tested several more chromosome 1 genes for linkage with this marker. We found suggestive linkage with the antithrombin III and apolipoprotein A2 genes and conclusive linkage with the gene coding for beta-nerve growth factor.

Blood Group Antigens↗

Exclusion analysis of Charcot-Marie-Tooth neuropathy (CMT1) with chromosome 1p markers.

We previously described a large five-generation family with autosomal dominant inheritance of hereditary motor and sensory neuropathy type I, or Charcot-Marie-Tooth disease (CMT1). The genetic defect in this family was not linked to the Duffy blood group. We investigated the possibility of a disease locus on the short arm of chromosome 1 using 12 anonymous DNA markers. Two markers, D1S2 and D1S22, showed positive linkage, suggesting the existence of a CMT1 locus on 1p. D1S2 and D1S22 are clustered in the 1p31----p22 region. However, multipoint linkage analysis, including additional DNA markers from this chromosome region, excluded a possible CMT1 locus in this part of chromosome 1.

Charcot-Marie-Tooth Disease↗

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↗

Localization of the mutation in an extended family with Charcot-Marie-Tooth neuropathy (HMSN I).

Hereditary motor and sensory neuropathy type I (HMSN I) or Charcot-Marie-Tooth (CMT) disease is an autosomal dominant peripheral neuropathy. In some CMT families linkage has been reported with either the Duffy blood group or the APOA2 gene, both located on chromosome 1q. More recently, linkage has been found in six CMT families with two chromosome 17p markers. We extensively analyzed a multi-generation Charcot-Marie-Tooth family by using molecular genetic techniques in order to localize the CMT gene defect. First, we constructed a continuous linkage group of 11 chromosome 1 markers and definitely excluded chromosome 1 as the site of mutation. Second, we analyzed the family for linkage with chromosome 17. The two-point lod scores obtained with D17S58 and D17S71 proved that this Charcot-Marie-Tooth family is linked to chromosome 17. Moreover, multipoint linkage results indicated that the mutation is most likely located on the chromosome 17p arm, distal of D17S71.

Charcot-Marie-Tooth Disease↗

Primary and secondary structure of the 18S ribosomal RNA of the bird spider Eurypelma californica and evolutionary relationships among eukaryotic phyla.

The primary structure of the 18S rRNA of the bird spider Eurypelma californica has been determined in the framework of a study of metazoan phylogeny on the basis of ribosomal RNA structure. A secondary-structure model was derived by comparison of the sequence with that of 43 other eukaryotic small-ribosomal-subunit RNA sequences presently available. This comparison allows a rather detailed secondary-structure pattern to be postulated for a eukaryote-specific area of highly variable sequence and length for which no consensus model has hitherto been attained. A dendrogram, reflecting evolutionary relationships among the 40 eukaryotic species of known 18S rRNA structure, was constructed by a matrix method selecting the best-fitting tree on the basis of a least-squares criterion. The tree shows an early divergence of a microsporidium, an euglenoid, kinetoplastids and a slime mold. Among the remaining species, two main clusters are distinguishable, one comprising the Ciliata, the other comprising Metazoa, green plants, fungi and several protists. Among the Metazoa, the three phyla presently investigated, viz. Chordata, Arthropoda and Nemathelminthes, are distinguishable as three separate lines of descent.

Animals↗

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↗

The 5S ribosomal RNA sequences of a red algal rhodoplast and a gymnosperm chloroplast. Implications for the evolution of plastids and cyanobacteria.

The 5S ribosomal RNA sequences have been determined for the rhodoplast of the red alga Porphyra umbilicalis and the chloroplast of the conifer Juniperus media. The 5S RNA sequence of the Vicia faba chloroplast is corrected with respect to a previous report. A survey of the known sequences and secondary structures of 5S RNAs from plastids and cyanobacteria shows a close structural similarity between all 5S RNAs from land plant chloroplasts. The algal plastid 5S RNAs on the other hand show much more structural diversity and have certain structural features in common with bacterial 5S RNAs. A dendrogram constructed from the aligned sequences by a clustering algorithm points to a common ancestor for the present-living cyanobacteria and the land plant plastids. However, the algal plastids branch off at an early stage within the plastid-cyanobacteria cluster, before the divergence between cyanobacteria and land plant chloroplasts. This evolutionary picture points to the occurrence of multiple endosymbiotic events, with the ancestors of the present algal plastids already established as photosynthetic endosymbionts at a time when the ancestors of the present land plant chloroplasts were still free-living cells.

Base Sequence↗

Absence of linkage with the Duffy blood group in a family with Charcot-Marie-Tooth neuropathy.

We report a large Belgian family with Charcot-Marie-Tooth disease (CMT) or hereditary motor and sensory neuropathy type I (HMSN-I). The pedigree consists of 5 generations with 350 family members comprising 42 patients. The disease is transmitted according to an autosomal dominant inheritance pattern. Several HMSN-I families have been reported to be closely linked to the Duffy blood group marker on chromosome 1. These families were designated HMSN-Ib families, opposed to the HMSN-Ia families which do not show evidence for such a linkage. Therefore we examined our family for the Duffy linkage relationship. We found no evidence for a strong linkage of the disease to the Duffy blood group locus, indicating that this family is of genetic subtype Ia.

Blood Group Antigens↗