Search PubMed⌕ Search

Biomedical subjects

C Junien

Publications and source records attributed to C Junien.

At least 145 records · Page 8Linked to original sources

The structural gene for lecithin:cholesterol acyl transferase (LCAT) maps to 16q22.

We have used a cDNA clone for human lecithin:cholesterol acyl transferase (LCAT) and Southern blotting techniques to identify the human LCAT gene in DNA from a series of rodent X human somatic cell hybrids. Our results are compatible with the location of the gene on human chromosome 16, and this has been confirmed using in situ hybridization of the LCAT cDNA to human metaphase chromosomes. These results confirm the earlier studies on LCAT-deficient patients, indicating that the structural gene for LCAT is on human chromosome 16q22.

Animals↗

[Molecular diagnosis of Duchenne and Becker muscular dystrophies. Current data].

Carrier diagnosis and prenatal diagnosis of Duchenne's muscular dystrophy (DMD) and Becker's muscular dystrophy (BMD) has become possible using some twenty RFLPs detected by more than a dozen Xp21 probes that are either intragenic or flanking the disease locus. Results from familial studies on 88 DMD and BM families stress important considerations concerning a priori and final risks, individuals necessary for the identification of the phase, and the different strategies that can be applied, regardless of whether the study concerns an on-going pregnancy or a carrier-status determination, and whether the patient is at high or low risk. Finally, multiple sources of difficulties in interpreting the results depend on a) the occurrence of new mutations that must be traced; b) the existence of meiotic recombination; c) the necessity, in some instances, of relying upon the sole identification of the paternal X. These considerations emphasize the characteristics and the important limitations of this type of methodology.

Creatine Kinase↗

The isolation of genomic recombinants for the human apolipoprotein B gene and the mapping of three common DNA polymorphisms of the gene--a useful marker for human chromosome 2.

We have used four independently isolated cDNA probes for human apolipoprotein B (apo B), to isolate overlapping genomic recombinants for the 3' portion of the apo B gene. The cDNA clones and a unique fragment from the genomic recombinant have been used to identify the human apo B gene in DNA from a series of rodent X human somatic cell hybrids. Our results provide evidence for the assignment of this gene to the short arm of human chromosome 2 (p23-pter). We have used the cDNA probes to identify three common DNA polymorphisms. The first, detected with the restriction enzyme XbaI and our probe pAB4, has a rare allele frequency of 0.48. The other two polymorphisms are detected with the probe pAB3. The enzyme MspI detects at least three alleles, with frequencies of 0.67, 0.16 and 0.15, while that detected with the enzyme EcoRI has a rare allele frequency of 0.12. The relative position of these polymorphisms has been mapped using the genomic recombinants. Investigation of a small number of haplotypes indicates that there is linkage equilibrium between the polymorphisms, which have a total polymorphism information content (PIC) value of more than 0.8. These polymorphisms will provide useful markers for genetic studies on chromosome 2 and for the analysis of the involvement of variants of the apo B gene in the development of hyperlipidaemia.

Animals↗

The pro alpha 2(V) collagen gene (COL5A2) maps to 2q14----2q32, syntenic to the pro alpha 1 (III) collagen locus (COL3A1).

A recombinant probe specific for the pro alpha 2 chain of human Type V collagen has been used for the localization of the corresponding gene (COL5A2) to chromosome 2. Regional mapping by in situ hybridization and analysis of DNA from human X rodent cell lines indicated that COL5A2 is confined within the segment 2q14----2q32, thus syntenic to the pro alpha 1 (III) collagen gene (COL3A1).

Animals↗

Further evidence for the dispersion of the human fibrillar collagen genes.

Recombinant DNA probes specific for the human pro alpha 1(II) and pro alpha 1(III) collagen chains have been used for the chromosomal localization of the two genes. Restriction endonuclease analysis of DNA from human-rodent hybrid cell lines in conjunction with in situ hybridization of human metaphasic chromosomes have shown that the gene coding for the pro alpha 1 chain of type II collagen (COL2A1) is located on chromosome 12 in the segment 12q131----12q132. Likewise, the gene coding for the pro alpha 1 chain of type III collagen (COL3A1) was assigned to the segment 2q31----2q323 of chromosome 2.

Animals↗

Cytogenetic forms of retinoblastoma: their incidence in a survey of 66 patients.

Sixty-six retinoblastoma patients were investigated using high resolution banding techniques, sister chromatid exchange (SCE) studies, and esterase-D phenotype determination and dosage. Seven patients (in six families) were found to be carriers of a rearrangement of band 13q14 due to de novo deletions, apparently balanced de novo translocations, or parental insertions. The possible role of submicroscopic parental insertions is suggested to explain transmission of nonchromosomal forms through unaffected carriers.

Child↗

Segregation analysis of a marker localised Xp21.2-Xp21.3 in Duchenne and Becker muscular dystrophy families.

A DNA marker C7, localised Xp21.1-Xp21.3, has been studied in kindreds segregating for Duchenne muscular dystrophy (DMD) and Becker muscular dystrophy (BMD). In DMD families four crossovers were observed in 38 informative meioses between C7 and the DMD locus (theta = 0.12, z max = +2.72). In BMD families no recombinants were observed in the 16 informative meioses studied. These data are consistent with the localisation of the mutations in these disorders being in the same region of Xp21. Studies in families also segregating for the DNA marker 754 support the previously reported physical order of these loci as X centromere-754-DMD-BMD-C7-X telomere. A recombination fraction of 0.11 (z max = +5.58) was found between DMD-754 by combining our previously published data with the data presented here. C7 and 754 thus provide good bridging markers for the diagnosis of DMD and BMD.

Chromosome Banding↗

The isolation, characterisation, and chromosomal assignment of the gene for human 3-hydroxy-3-methylglutaryl coenzyme A reductase, (HMG-CoA reductase).

We have used a cDNA clone for Chinese hamster 3-hydroxy-3-methylglutaryl coenzyme A (HMG-CoA) reductase to isolate a genomic recombinant for human HMG-CoA reductase. The identity of the gene was confirmed by partial sequence analysis. Several unique fragments that will be useful for restriction fragment length polymorphism (RFLP) studies were identified. In situ hybridisation of a 2.6 kb unique fragment of the gene to human metaphase chromosomes localised the human HMGCoA reductase gene to human chromosome 5q12.

Animals↗

Isolation and characterisation of a cDNA clone for human apolipoprotein CI and assignment of the gene to chromosome 19.

We have synthesised a mixed oligonucleotide 17 bases long and used it to isolate cDNA clones for apolipoprotein CI (apo CI) from an adult liver cDNA library. The partial sequence of one of these clones confirms its identity. We have used this probe and Southern blotting techniques to identify the human apo CI gene in DNA from a series of rodent X human somatic cell hybrids. Our results provide evidence for the assignment of this gene to human chromosome 19.

Animals↗

The organization of two related subfamilies of a human tandemly repeated DNA is chromosome specific.

Several clones containing clusters of repetitive elements were isolated from a human chromosome 22 specific library. An EcoRI-XhoI fragment of 860bp was subcloned and was shown to belong to a family of tandemly repeated DNA linked to the Y-specific 3.4 kb HaeIII band. This probe hybridizes to several sets of sequences or subfamilies. The most abundant subfamily is a 1.8kb long sequence containing one EcoRV site, and in most repeats, one AvaII and one KpnI site. Using human-rodent somatic cell hybrid DNA, we have shown that this cluster is present on human chromosome 9 although presence on chromosome 15 is not excluded. Another subfamily, 6.1kb long, appears to be exclusive of chromosome 16. By in situ hybridization with metaphasic chromosomes, these sets of repeats were mapped to the constitutive heterochromatin of a few chromosomes. Coexistence in one genome of long tandem repeats of distinct organization but similar length may represent the outcome of a continuous process of fixation of variant sequences. Homologous repeats are also abundant in four higher primate genomes (Orangutan, gorilla, chimpanzee, and man) but absent in other primates (African green monkey, rhesus monkey, baboon, and mouse lemur).

Animals↗

The structural gene for aldolase B (ALDB) maps to 9q13----32.

We used a cloned cDNA probe for the B subunit of human aldolase (ALDB) and Southern blotting techniques to analyse DNA from a series of rodent X human somatic cell hybrids for the presence of specific ALDB-related sequences. Our results provide evidence for the assignment of the gene for ALDB to chromosome 9. Moreover, by direct gene dosage determination in two patients with chromosome 9 unbalanced rearrangements and by in situ hybridization we refined the regional chromosomal assignment to 9q13----q32 and most probably to 9q21.3----9q22.2.

Animals↗

Isolation and characterization of the human fibrillar collagen genes.

In order to elucidate some of the mechanisms leading to the pathological expression of the human fibrillar collagens, as well as to understand the evolution of these loci, specific cDNA and genomic clones have been isolated. The primary structure of the COOH-terminal propeptide of the four collagen chains and either part or the entire exon/intron arrangement of the genes have been determined. Interspecies and pairwise comparison revealed that the four loci have evolved at slightly different rates, maintaining, however, remarkably similar exon/intron arrangement. The fibrillar genes, albeit sharing the same elaborate structure, exhibit different sizes that correlate with the average length of their intron sequences, possibly because of their different chromosomal origin.

Animals↗

[A new case of partial monosomy of chromosome 12,del(12)(p11.01 to p12.109) confirming the location of the gene for lactate dehydrogenase B].

A new case of partial monosomy of the short arm of chromosome 12 is described in a 17-year-old girl and compared with other observations reported in the literature. The breakpoints were localized to region 12p11----12p.12.1. Qualitative and quantitative activity of LDHB allowed a precise assignment of the structural gene to sub-band 12p12.2.

Adolescent↗

The beta chorionic gonadotropin-beta luteinizing gene cluster maps to human chromosome 19.

We used a cloned human cDNA probe homologous to the placenta chorionic gonadotropin beta subunit (CGB) and to the pituitary luteinizing hormone beta subunit (LHB) and Southern blotting techniques to analyse DNA from a series of rodent X human somatic cell hybrids for the presence of specific gonadotropin beta subunit related sequences. Our results provide evidence for the assignment and linkage of the eight genes (or pseudogenes) coding for the beta subunit of these glycoprotein hormones to chromosome 19. Moreover, we observed a strict concordance between the permissivity of mouse X man hybrid cells to enteroviruses (which is linked to the presence of specific cell receptors encoded by human chromosome 19) and the presence of CGB and LHB related sequences, thus confirming the localization of the structural genes for the beta subunits on chromosome 19.

Animals↗

Del11p13/nephroblastoma without aniridia.

A patient is reported with del11p13, low catalase level, nephroblastoma, chordee and cryptorchidism, no evident mental retardation, and with normal irides. This unique observation suggests the following order of loci in 11p13, from centromere to telomere: catalase, Wilms tumor, aniridia. The chromosomal origin of nephroblastoma may be more frequent than estimated on the basis of its association with aniridia.

Acatalasia↗

Conservation of the human COL1A1-TK-GAA synteny and homoeologous assignment in the African green monkey and the baboon (Cercopithecoidae).

The pro alpha 1 (I) collagen structural gene (COL1A1), the acid alpha-glucosidase (GAA), and the thymidine kinase (TK) genes, known to be closely linked in man (HSA) and mapped to HSA17, were found syntenic in two Cercopithecoidae species, the baboon (Papio papio, PPA) and the African green monkey (Cercopithecus aethiops, CAE) and assigned to homoeologous chromosomes, PPA16 and CAE19, respectively. The assignment of COL1A1 was obtained using two human cDNA probes. Hind III restriction sites found in man were present in the two species. The particular CAE individual used in the experiment showed a polymorphism for one DNA fragment.

Animals↗

The gene for human fibroblast interferon (IFB) maps to 9p21.

The interferons have been classified into alpha, beta, and gamma (leukocyte, fibroblast, and immune). We used a human genomic clone for beta 1 interferon IFB to determine the gene copy number in two patients with unbalanced rearrangements of 9p. Our results provide evidence for regional assignment of this gene to 9p21.

Alleles↗