Localization of the tenascin-C gene to pig chromosome 1.
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Biomedical subjects
Publications and source records attributed to M Yerle.
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A bovine bivariate flow karyotype has been established from a primary fibroblast cell culture carrying a 4;10 Robertsonian translocation. From 27 to 36 populations could be resolved by flow cytometry although the anticipated number was 31. Separation of chromosomal pairs into two populations explains this high resolution and confirms the high level of heteromorphism previously observed. We used a PARM-PCR (Priming Authorizing Random Mismatches) procedure for the production of paint probes from flow-sorted chromosome fractions. These probes were used for chromosome identification by fluorescence in situ hybridization (FISH) on R-banded metaphase spreads. We present the localization of all the bovine chromosome types on the flow karyotype. Twenty-two chromosome types including the translocated chromosome were sorted as pure fractions.
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One of the most widely studied simple sequences in the mammalian genome is the (TG)n dinucleotide sequence. Because these microsatellites are highly polymorphic, we chose to study microsatellites from cosmids to provide genetic markers for the porcine genome. After screening a porcine cosmid library with a (CA)10 probe, 20 cosmids containing microsatellites were subcloned and 17 microsatellites identified by sequencing. Oligonucleotide primers flanking the repeat were designed for seven (TG)n microsatellites with n > 14. These seven microsatellites revealed polymorphism and were regionally assigned to chromosomes by fluorescent in situ hybridization of initial cosmids. These seven loci will be useful for both the construction of the genetic map and as landmark loci on the physical map of the porcine genome.
The murine Ity/Lsh/Bcg locus belongs to a conserved region between mouse Chromosome 1 and human chromosome 2. This gene governs mouse resistance to several intracellular pathogens. We have localized the gene on sheep chromosome 2q41-->q42 by radioactive in situ hybridization using a 2.1-kb fragment of the ovine equivalent of this gene.
Follicle-stimulating hormone (FSH) and luteinizing hormone (LH) are members of the glycoprotein hormone family and play essential roles in gametogenesis and sexual development of mammals. Fragments of the porcine genes coding for the beta subunits of FSH and LH were amplified by PCR and used as probes for radioactive in situ hybridization in order to map these loci in the pig. Primers were chosen on the genomic DNA nucleotide sequences of FSHB and LHB as published in GenBank. Fragments of 1,127 bp (FSHB) and 1,239 bp (LHB) were cloned and verified by sequencing. FSHB was localized to pig chromosome bands 2p1.6-->p1.2 and LHB to pig chromosome band 6q2.1. The localization of LHB to the so-called halothane region of chromosome 6 could be expected from comparative mapping data. For FSHB, no conclusions can be drawn in this respect since, up to the present, too few genes are located on porcine chromosome 2.
The genes coding for the insulin-like growth factor-1 receptor (IGF1R) and a porcine endothelium-derived 21-residue vasoconstrictor peptide (EDN) were localized in the pig by means of radioactive in situ hybridization. IGF1R was mapped to chromosome region 1q1.7-->q2.1 and EDN to 7p1.3-->p1.2. The results are discussed in relation to the position of their homologous loci in man.
Nineteen cosmids have been mapped to pig chromosomes by fluorescence in situ hybridization. Two kinds of cosmid clones were isolated as potential physical and genetic markers for the pig genome. Anonymous cosmids were obtained by screening a commercial cosmid library and were localized to Chromosomes (Chrs) 1, 2, 6, 7, 8, 10, 11, 12, 13, and 14. Some of these cosmids were found to reveal RFLP type DNA polymorphism. Microsatellite-containing cosmid clones were isolated by screening a pig cosmid library with a (CA)10 probe and were regionally mapped to Chrs 2, 6, 7, 13, and 14. Ten of the 19 chromosomes in the pig were labeled with these probes. Two-color fluorescence in situ hybridization was used to increase the efficiency of the cosmid localizations.
The genes coding for the regulatory type I alpha subunit (PRKAR1A) and the catalytic beta subunit (PRKACB) of cAMP-dependent protein kinase and the genes for interleukin 1 alpha (IL1A) and interleukin 1 beta (IL1B) were localized in the pig by means of radioactive in situ hybridization. PRKAR1A was mapped to 12p1.4 and PRKARB to 6q3.1-->q3.3. The genes for IL1A and IL1B were both assigned to Chromosome (Chr) 3, in the region q1.2-->q1.3 and q1.1-->q1.4, respectively. The cDNA nucleotide sequences of these porcine genes were compared with those of human, mouse, and cattle. The location of the genes was discussed in relation to the position of their homologous loci in these mammalian species.
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The nerve growth factor beta gene (NGFB) belongs to a conserved syntenic group on human chromosome 1 and mouse Chromosome 3. The objective of this study was the isolation of a part of the porcine NGFB gene and its use as a genetic and physical marker in the pig genome. On the basis of a nucleotide sequence comparison among different species, NGFB-specific primers were chosen to amplify the corresponding porcine sequence by PCR. A pig genomic DNA fragment of 763 bp was isolated, and its DNA sequence, containing the complete coding sequence of mature NGFB, was determined. It was demonstrated that pig NGFB is largely homologous with NGFB of other species (mouse, cattle, chicken) and especially with human NGFB; the isolated clone shows 91% nucleotide and 99% translated amino acid sequence identity to the human NGFB sequence. The porcine DNA clone allowed us to identify an RFLP marker for genetic mapping in pigs and was used to map the NGFB gene to pig chromosome region 4q1.6-->q2.3 by radioactive in situ hybridization. Previously, we had localized to the same chromosome another member of this syntenic group, the gene encoding alpha 1 Na+,K+ ATPase (ATP1A1). These results show that a portion of the homologous region between human chromosome 1 and mouse Chromosome 3 is also conserved on pig chromosome 4.
Two genes coding for Na+,K(+)-ATPase alpha and beta subunits are localized on pig chromosome 4, to the q1.6-->q2.3 and 1.3-->q2.1 regions, respectively, by radioactive in situ hybridization. According to nucleotide and amino acid sequence comparisons with different human isoforms of Na+,K(+)-ATPase, these pig alpha beta ATPase genes show strong homologies with human alpha 1 and beta subunit ATPase genes, respectively. These results are discussed with respect to comparative mapping data of conserved genes in mammalian species. We showed that the pig cDNA probes encoding ATPase alpha and beta genes reveal DNA polymorphism in Meishan and Large White pigs.
The 19 chromosomal pairs of the swine karyotype are resolved into 18 peaks denoted A to Q and Y by dual-beam flow cytometry. The chromosomal content of six peaks has previously been determined by analyzing male/female differences, karyotypes of animals carrying translocations, and PCR studies of genes with known assignments. For the remaining chromosomes, putative assignments to flow peaks were deduced from comparison of DNA contents, determined by flow cytometry, and chromosomal size. We present here the complete characterization of the pig bivariate flow karyotype using the PARM-PCR technique combined with fluorescence in situ hybridization. Chromosome-specific probes were generated by PCR amplification of 300 sorted chromosomes with primers under nonspecific conditions and used to paint chromosomes by FISH. The chromosomal content of each peak was identified: peaks A (chromosome 1), B (13), C (6), D (2), E (14), F (3), G (7), H (9,4,X), H1 (9), I (15), J (8), K (5), L (10), M (12), N (16), O (11), P (17), Q (18), Y (Y). We were able to characterize perfectly the pig bivariate flow karyotype. Such techniques could be applied to any other species.
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For insight into the general organization of the swine leukocyte antigen (SLA) complex, the swine major histocompatibility complex (MHC), four sequences related to the heat-shock proteins HSP70 were characterized by screening of a pig genomic cosmid library with a swine cDNA HSP70 2.6-kb probe. This yielded three positive clones: HC2.2, HC3.2, and HC4.2. Restriction site maps revealed a large overlap of HC2.2 with HC3.2, whereas HC4.2 was independent. Southern blot hybridization with the 5' section, the central section, and the 3' section of the 2.6-kb probe and also with a swine 4.5-kb HSP70 genomic probe suggested the existence, within the overlapping clones, of three distinct HSP70 sequences encompassing a segment no longer than 22 kb. The HC4.2 clone, which hybridized with the same probes, displayed a single band of 7.3 kb, probably corresponding to one gene only. Fluorescent in situ hybridization on swine chromosome metaphases with the whole HC2.2 or HC4.2 cosmids allowed the assignment of HC2.2 to MHC region on Chromosome (Chr) 7 (Cen-p1.1), and of HC4.2 to Chr 14 (q2.4-2.5). Thus, as in humans, the swine MHC comprises three closely linked HSP70 loci. The presence of additional genes belonging to the same inducible HSP70 gene family can be expected from what is known in humans. The HSP70 gene found here on the pig Chr 14 may be one of these putative unidentified genes.
The gene encoding the porcine growth hormone (GH) has been localized to the q-arm of chromosome 12 using high-resolution R-banded chromosomes for in situ hybridization. We report here the localization of GH on the p-arm of this chromosome when using in situ hybridization on high-resolution G-banded chromosomes. Sequential Q- and R-banding show that this discrepancy is caused by a reversed orientation of chromosome 12 in the R-banded high-resolution karyotype published by Rønne et al. (1987) and the G-banded standard karyotype.
We present here a new PCR-based technique that allows the production of several micrograms of DNA from only 300 flow-sorted chromosomes. During the first two PCR cycles, the annealing temperature is decreased to 30 degrees C, and numerous random loci are amplified under nonspecific conditions. As demonstrated here for pig chromosomes 1 and 18, the PCR products may be used to identify the chromosomal content of the flow-karyotype peaks of any species by fluorescence in situ hybridization.
The genes coding for glucose regulated protein, 78kDal (GRP78), hormone-sensitive lipase (LIPE), plasminogen activator or urokinase (PLAU), and D-amino acid oxidase (DAO) were localized in the pig by radioactive in situ hybridization. GRP78 was mapped to 1q2.10-->q2.13 and LIPE was localized to chromosome 6cen-->q1.2. The genes for PLAU and DAO were both assigned to chromosome 14, in the region q2.4-->q2.6 and q2.1-->q2.3, respectively. The results are compared to mapping data in other mammalian species.