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B Crouau-Roy

Publications and source records attributed to B Crouau-Roy.

27 records · Page 2Linked to original sources

Haplotypes without children: PCR applied to close loci on individual human sperm.

Indirect evidence of interindividual variation of the recombination fraction is considerable, but as yet direct evidence is lacking. Such interindividual variation could explain the widely observed gametic association in the major histocompatibility complex (MHC) region. A possible approach to this is the application of the polymerase chain reaction to closely linked markers on individual sperm. The feasibility of this approach is investigated here. Three loci in the human MHC (chromosome 6) were used in this study. Two are polymorphisms identifiable by oligonucleotide dot blotting, and one is a microsatellite polymorphism. The genetic distances between these loci are 0.5 and 1 centi-Morgan. We were able to double-type most cases for the two markers HLA-DPB and HLA-DRB in single haploid cells. The rate of double typings is comparable with that expected from the hypothesis of independent failures at two loci. However, this rate of failure remains too great to allow an analysis of segregation because allele specific failure cannot be ruled out. All double and triple typings (implicating the microsatellite) were perfectly correlated with each other; thus no recombinations were identified. With such close markers recombination would have been surprising and may indicate an inherent accuracy of positive haplotyping.

Alleles↗

Localization of the OTF3 gene within the human MHC class I region by physical and meiotic mapping.

OTF3 (octamer transcription factor 3) is a transcription factor containing a POU-specific domain and a homeodomain that could play a role in early development. In situ hybridization and pairwise linkage analysis showed that OTF3 gene maps close to the human MHC (major histocompatibility complex). In this paper, we define its localization within the MHC, around 100 kb telomeric to HLA-C, using a combination of physical and genetic analyses.

Alleles↗

Non-homologous recombination within the major histocompatibility complex creates a transcribed hybrid sequence.

The P5-1 cDNA clone maps to the human MHC class I region (Vernet et al. 1993a). In this paper, we show that the P5-1 cDNA represents a chimeric transcript in which the first exon of an MHC class I gene has been spliced to an unrelated sequence. The corresponding gene P5-1 is composed of the 5' sequence of an MHC class I gene including the promoter region, the first exon, and the half of the first intron fused to an unrelated intron, followed by a large exon. Furthermore, the non-class I part of P5-1 is present within the MHC class I region in multiple copies, defining the P5 family. Another member of the P5 family is fused to a class I gene, although by a type of rearrangement different from P5-1. These two fusion events between members of HLA class I and P5 families reflect the existence of a duplication unit including two class I genes and a P5 sequence. These data shed light on the MHC class I evolution and on the creation and evolution of new genes.

Base Sequence↗

Microsatellite, restriction fragment-length polymorphism, and sequence-specific oligonucleotide typing of the tumor necrosis factor region. Comparisons of the 4AOHW cell panel.

The location of the TNF and other genes in the central MHC and their possible relevance to disease susceptibility provided an impetus to develop useful typing markers. The 4AOHW undertook to assess the various markers available, including DNA sequence-based systems. A panel of well-characterized lymphoblastoid cell lines were typed by Nco I RLFP analysis, SSO typing, and TNF microsatellite typing. RFLP and SSO typing were relatively reproducible as judged by the blind replicates. The two techniques provided the same results with only one exception, and it would be reasonable to prefer SSO typing because of its advantages in terms of cost and time. Microsatellite typing was much more discriminating but, as expected, less robust in that some discrepancies were apparent. As a result of the workshop and subsequent testing, alleles and haplotypes were allocated to most cells within the 4AOHW panel, including 10W cells typed in previous studies. While there was evidence that microsatellites may be relatively stable, they have the potential to identify recent mutations within ancestral haplotypes.

Artifacts↗

Analysis of HLA-A/B recombinant families with new polymorphic markers.

The MHC in humans is a much studied region of the genome, the genes of which display a high rate of polymorphism and a high rate of linkage disequilibrium. Four families in which intra-class-I recombination has occurred have been analyzed with six polymorphic markers between HLA-A and -B in order to determine the full haplotypes of the whole families and to localize the points of crossover. The previously proposed order of the markers was confirmed by recombination mapping. In one family, the crossover was shown to have occurred in the 20-kb stretch of DNA bounded by the two markers (P3B and P5) between which no evidence of linkage disequilibrium was found, a region which constitutes of only about 1% of the distance between HLA-A and HLA-B. Although supportive of the suggestion of a hot spot of recombination in this region, based on the apparent lack of linkage disequilibrium between the markers P3B and P5, more such families need to be tested in order to confirm or refute this hypothesis.

Crossing Over, Genetic↗

Tumor necrosis factor microsatellites in four European populations.

The human genome contains a large number of interspersed simple repeat sequences that vary in length among individuals and can therefore serve as highly informative polymorphic markers. Several such variable sites (microsatellites) have been described within the TNF genes within the MHC. In this study, individuals from four Caucasian populations have been typed for three TNF-associated microsatellites in order to define their haplotypes. Of the 208 possible haplotypes, eight exist at a high frequency in all populations and account for approximately 60% of the haplotypes studied, but with marked variations in their frequencies among populations. A few population/sample-specific haplotypes have been identified. The ability of alleles to define haplotypes uniquely varies not only among the loci, but also among the alleles: some alleles displaying complete gametic association (linkage disequilibrium) and others displaying very little.

Alleles↗

Microsatellite DNA markers from HLA region (D6S105, D6S265 and TNFa) in autochthonous Basques from Northern Navarre (Spain).

BACKGROUND: The extent of the genetic polymorphism of the HLA complex is becoming well characterized in Basque population and their subpopulations. This level of knowledge mainly concerns HLA class I loci. However, Basque population surveys dealing with HLA class II genes and/or microsatellites in the HLA region are still very scarce. AIM: The population genetics of three highly polymorphic short tandem repeat (STR) loci, D6S105, D6S265 and TNFa, from HLA region has been analysed in autochthonous (indigenous) Basques from Northern Navarre (Spain). The same blood samples have been typed for HLA class II genes from DQ/DR/DP regions and some findings from that information can be found therein. SUBJECTS AND METHODS: Blood samples were taken from 107 unrelated autochthonous Basques from Northern Navarre. The criterion used to define Northern Navarrese identity was that of three generations of Basque surnames and birthplaces. RESULTS: The main features observed in Navarrese Basques were the rather high frequencies of alleles D6S105*4 and D6S265*7. A novel allele has been detected at the D6S265 locus (13: 145 bp). The most frequent haplotype was D6S105*8-D6S265*4 with a highly significant linkage disequilibrium being presented. The high frequency of allele TNFa*1 in Basques is noteworthy and this characteristic is not shared by other European populations, where TNFa*1 is absent or shows negligible values. The multidimensional scaling analysis (MDS) for TNFa allele frequencies has shown a high variability among populations and that alleles TNFa*1 (F(ST) = 0.0615) and TNFa*12 (F(ST) = 0.0424) seem to have significant influence over the spatial population configuration. TNFa*2 showed the lowest FST value (0.0077) because of its conspicuous homogeneous distribution all over the European populations. CONCLUSIONS: Findings shown here on HLA microsatellites and their relationships with other HLA class I and class II genes in Basques can be helpful for those studies mainly addressed at detecting associations between HLA genes and diseases in the Basque area as a whole, and particularly in its autochthonous population, settled there since remote times.

Alleles↗

Microsatellite variation in an introduced mouflon population.

As previous studies of genetic polymorphism in the mouflon (Ovis gmelini) have not provided any valuable markers for population studies, we tested the capacity of microsatellites to index the genetic diversity of a recently introduced mouflon population. Six pairs of bovine primer amplified microsatellites in mouflon, and all six were polymorphic. Furthermore, despite the low number of founders, five loci had a high gene diversity in this introduced population. Unlike other genetic markers, microsatellites could be powerful to study the genetic structure of mouflon populations.

Animals↗