Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Restriction Mapping”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 1,297 records · Page 72Linked to original sources

A physical map around the retinoblastoma gene.

The gene predisposing to retinoblastoma, RB1, has been mapped to 13q14 and a cDNA clone has been isolated. Alterations of this chromosomal region are found not only in retinoblastoma, but in other tumor types including bone and soft tissue sarcomas, gastric tumors, small cell lung cancer, hematologic malignancies, rhabdomyosarcoma, and breast cancer. Genetic alterations implicating RB1 in some of these cancers have been observed. A long-range, overlapping restriction map around RB1 has been derived to provide a basis for study of rearrangements in tumors. Putative CpG islands closely linked to RB1 were identified, the effect of methylation was investigated, and RB1 transcriptional direction was determined. Using data in the literature, the map was oriented with respect to the centromere and it was determined that the distance between esterase D, a nearby gene, and RB1 was greater than 200 kb.

Carboxylesterase↗

Identification of human epidermal differentiation complex (EDC)-encoded genes by subtractive hybridization of entire YACs to a gridded keratinocyte cDNA library.

The epidermal differentiation complex (EDC) comprises a large number of genes that are of crucial importance for the maturation of the human epidermis. So far, 27 genes of 3 related families encoding structural as well as regulatory proteins have been mapped within a 2-Mb region on chromosome 1q21. Here we report on the identification of 10 additional EDC genes by a powerful subtractive hybridization method using entire YACs (950_e_2 and 986_e_10) to screen a gridded human keratinocyte cDNA library. Localization of the detected cDNA clones has been established on a long-range restriction map covering more than 5 Mb of this genomic region. The genes encode cytoskeletal tropomyosin TM30nm (TPM3), HS1-binding protein Hax-1 (HAX1), RNA-specific adenosine deaminase (ADAR1), the 34/67-kD laminin receptor (LAMRL6), and the 26S proteasome subunit p31 (PSMD8L), as well as five hitherto uncharacterized proteins (NICE-1, NICE-2, NICE-3, NICE-4, and NICE-5). The nucleotide sequences and putative ORFs of the EDC genes identified here revealed no homology with any of the established EDC gene families. Whereas database searches revealed that NICE-3, NICE-4, and NICE-5 were expressed in many tissues, no EST or gene-specific sequence was found for NICE-2. Expression of NICE-1 was up-regulated in differentiated keratinocytes, pointing to its relevance for the terminal differentiation of the epidermis. The newly identified EDC genes are likely to provide further insights into epidermal differentiation and they are potential candidates to be involved in skin diseases and carcinogenesis that are associated with this region of chromosome 1. Moreover, the extended integrated map of the EDC, including the polymorphic sequence tag site (STS) markers D1S1664, D1S2346, and D1S305, will serve as a valuable tool for linkage analyses.

Amino Acid Sequence↗

The Myb and Ahi-1 genes are physically very closely linked on mouse chromosome 10.

Ahi-1 has previously been identified as a common helper provirus integration site on mouse Chromosome (Chr) 10 in 16% of Abelson pre-B-cell lymphomas and shown to be closely linked to the Myb protooncogene. By using long-range restriction mapping, we have mapped the Myb and Ahi-1 regions within a 120-kbp DNA fragment. The Ahi-1 region is located approximately 35 kbp downstream of the Myb gene. A further confirmation of this finding was obtained by screening a mouse YAC library. The three positive clones obtained contained both the Myb and Ahi-1 gene sequences. To test whether provirus integration in the Ahi-1 region enhances the expression of Myb by a cis-acting mechanism, we have also examined Myb gene expression in A-MuLV-induced pre-B-lymphomas. Our data have revealed that there is no clear evidence for such activation in the tumors we have tested, indicating that provirus insertion in the Ahi-1 region is activating a novel gene, apparently involved in tumor formation.

Animals↗

Comparison of enterococcal and staphylococcal beta-lactamase-encoding fragments.

A restriction map of a 13.5-kb EcoRI fragment encoding beta-lactamase from a plasmid isolated from enterococcal strain PA was prepared and found to differ markedly from the published maps of beta-lactamase-encoding EcoRI fragments of two staphylococcal plasmids and the plasmid from enterococcal strain HH22. This comparison also showed that one of two contiguous EcoRV fragments that encompass the beta-lactamase gene differs in size in the PA strain from that found in the other strains. However, restriction sites in the beta-lactamase structural gene (blaZ) were identical in all four plasmids. Further studies compared the beta-lactamase genes of four clinical enterococcal isolates from various geographic locations with those described above. Isolates from Virginia and Florida generated EcoRV fragments identical to those from the plasmid from strain PA, while isolates from Lebanon and Argentina showed EcoRV fragments analogous to those from HH22 and the staphylococci studied. Although there is evidence suggesting that some of these beta-lactamase-producing enterococcal isolates represent a single strain, this study indicates that there is significant variation in the plasmids that encode beta-lactamase.

Autoradiography↗

Chicken lysozyme gene contains several intervening sequences.

The organization of the chicken lysozyme gene and its neighboring sequences was examined by a comparison of the restriction map of the lysozyme structural gene with the map of the lysozyme gene in genomic DNA. Chicken DNA was cleaved with restriction endonucleases and the DNA fragments were separated by agarose gel electrophoresis. After transfer of the fragments onto nitrocellulose filters, those fragments that contain lysozyme mRNA sequences were detected by hybridization of the filters to labeled probes generated from pls-1, a recombinant plasmid carrying the lysozyme structural gene. This analysis revealed the presence of at least three intervening sequences, two of which interrupt the protein coding region and one of which is located in the 3' untranslated region. When oviduct DNA and sperm DNA were compared, no difference was observed in the size and number of restriction fragments that contain either lysozyme or ovalbumin structural gene sequences.

Animals↗

Top-down construction of an ordered Schizosaccharomyces pombe cosmid library.

A very rapid and efficient method for sorting and ordering large numbers of clones is presented. This top-down mapping approach divides the entire ordering problem into many smaller tasks and analyzes in parallel a gridded membrane array of clones by hybridization with probe pools. The strategy was tested on a 15-fold-coverage Schizosaccharomyces pombe cosmid library. About 1600 clones were assigned to chromosomes and to regions defined by the Not I and Sfi I restriction maps. Then, the clones were ordered into 20 contigs, which is consistent with statistical expectations for the degree of genome coverage used. The parallel ordering of clones and the computer-based analysis of digitized images make this approach very efficient; it is about 8-fold faster than existing methods. Only 61 hybridizations were needed to order 1600 clones.

Base Sequence↗

A 5.5-Mb high-resolution integrated map of distal 11q13.

The distal part of 11q13, which contains several genes relevant to human diseases, has been poorly mapped as part of genome-wide mapping efforts. In the prospect of drawing a fine-scale integrated map of the area containing KRN1 and OMP, we have established a framework of markers by hybridization to DNA of somatic cell hybrids and by fluorescence in situ hybridization (FISH) on metaphase chromosomes. The probes studied were used to isolate 27 YACs and 16 cosmids that could be organized in three contigs covering approximately 6 Mb. These contigs were separated by two gaps that are likely to contain sequences underrepresented in YAC libraries. They were then integrated based on long-range restriction mapping and DNA-fiber FISH into a high-resolution physical map, which covers a 5.5-Mb region and includes 36 anonymous markers and 10 genes. This map will be used to search for genes within the 2/3 of this region where none have been localized as yet. It will also lay the ground for the characterization of an amplicon surrounding GARP in breast cancer and for the search of disease genes within this region.

Animals↗

[Restriction analysis of autonomously replicating molecules containing exogenous DNA in a transgenic silkworm line].

Early embryos of the silkworm, Bombyx mori, were injected with plasmid p1,5LTR, harboring DNA copies of the Rous sarcoma long terminal repeats (LTR). Three generations of insects were obtained whose total DNA carried DNA sequences of the injected plasmid. Plasmid rescue method revealed that exogenous DNA was present in extrachromosomal molecules that harbored also cellular DNA sequences. A restriction map of the plasmid rescued from the F2 generator was constructed.

Animals↗

Chromosomal localization of seven cloned antigen genes provides evidence of diploidy and further demonstration of karyotype variability in Trypanosoma cruzi.

The karyotype of Trypanosoma cruzi was studied by pulsed field gel electrophoresis (PFGE) in conditions that allowed 20-25 chromosome bands to be detected. However, several of these bands were present in non-equimolar amounts, suggesting that the total chromosome number is considerably higher. The patterns obtained with the different cloned and uncloned strains were unique, suggesting that the karyotype of T. cruzi is highly variable. The chromosomal localizations of seven cloned genes were determined by Southern blotting of PFGE-separated chromosomes. Three of the clones gave rise to similar patterns and mapped on a chromosome or a family of chromosomes larger than 1.6 Mb. Two clones mapped on either single or pairs of chromosomes, which in some cases differed considerably in size between the different strains tested, suggesting that extensive chromosome rearrangements occur in T. cruzi. Another clone hybridized to several chromosomes in most strains and probably represents a family of genes. Lastly, one clone hybridized to nearly all chromosomes. Many of the clones hybridized to pairs of restriction fragments in the different strains, suggesting that they are allelic. For one of the clones it was possible to provide further evidence for the allelic nature of the fragments by establishing detailed restriction maps around them and by showing that the two fragments in a pair hybridized to chromosomes which differed slightly in size. Taken together, the results infer that the genome of T. cruzi epimastigotes is diploid.

Animals↗

Development of a recombinant Anaplasma marginale DNA probe.

An Anaplasma marginale DNA probe has been developed by using an improved method for the isolation of genomic DNA. Purified genomic A. marginale DNA from the St. Croix isolate was partially digested with Sau 3A1 into fragments (greater than or equal to 5.0 kb). The restriction fragments were cloned using standard techniques in the pBR322 vector and used to transform E. coli (DH5) host cells. The recombinant A. marginale DNA library was screened by the colony lifting procedure. Colonies containing plasmids with A. marginale DNA inserts were identified by hybridization with a genomic A. marginale DNA radiolabeled probe (32P). Seven recombinant A. marginale DNA probes were evaluated by dot-blot in vitro hybridization assays to identify candidates as diagnostic tools in bovine anaplasmosis studies. Specificity and sensitivity experiments were carried out by using heterologous and homologous DNAs. The heterologous panel contained bovine DNA (WBC) and blood parasites DNA from Babesia bovis (Bb), Babesia bigemina (Bbi), Eperythrozoon suis (Es) and Eperythrozoon wenyoni (Ew). The homologous DNA panel included A. marginale DNAs of 12 different isolates which were isolated in the Caribbean, Mexico, and the U.S.A. The selected diagnostic probe was identified as pSt. Croix A1, and labeled with 32P by using in vitro nick translation and random primer techniques. The pSt. Croix A1 probe demonstrated 100% specificity and high sensitivity by hybridization in dot blotting and Southern blotting. The probe can detect 500-1000 infected erythrocytes per microliters which corresponds to a parasitemia of less than 0.01%. The A. marginale DNA insert was approximately 6.4 kb in size and a partial restriction map has been constructed.

Anaplasma↗

Cloning of the complete Mycoplasma pneumoniae genome.

The complete genome of Mycoplasma pneumoniae was cloned in an ordered library consisting of 34 overlapping or adjacent cosmids, one plasmid and two lambda phages. The genome size was determined by adding up the sizes of either the individual unique EcoRI restriction fragments of the gene bank or of the XhoI fragments of genomic M. pneumoniae DNA. The values from these calculations, 835 and 849 kbp, are in good agreement. An XhoI restriction map was constructed by identifying adjacent DNA fragments by probing with selected cosmid clones.

Cloning, Molecular↗

Corynephage Cog, a virulent bacteriophage of Corynebacterium glutamicum, and its relationship to phi GA1, an inducible phage particle from Brevibacterium flavum.

The host range of the virulent bacteriophage Cog among several strains of amino acid-producing corynebacteria is limited to Corynebacterium glutamicum LP-6. Cog is a typical corynephage of the Siphoviridae family (B1 morphotype) with an isometric head of 52 nm and a medium length, striated tail of 190 nm. It has a linear genome of 39.7 kb with cohesive ends and 53% G + C; a restriction map is presented, including regions of DNA homology (by hybridization) with the inducible phage particle phi GA1 from Brevibacterium flavum.

Bacteriophages↗

Cloning of the essential myotonic dystrophy region and mapping of the putative defect.

Myotonic dystrophy is a common dominant disorder (global incidence of 1:8,000) with variable onset and a protean nature of symptoms mainly involving progressive muscle wasting, myotonia and cataracts. To define the molecular defect, we have cloned the essential region of chromosome 19q13.3, including proximal and distal markers in a 700-kilobase contig formed by overlapping cosmids and yeast artificial chromosomes (YACs). The central part of the contig bridges an area of about 350 kilobases between two new flanking crossover borders. This segment has been extensively characterized through the isolation of five YAC clones and the subsequent subcloning in cosmids from which a detailed EcoRI, HindIII, MluI and NotI restriction map has been derived. Two genomic probes and two homologous complementary DNA probes were isolated using the cosmids. These probes are all situated within approximately 10 kilobases of genomic DNA and detect an unstable genomic segment in myotonic dystrophy patients. The length variation in this segment shows similarities to the instability seen at the fragile X locus. The physical map location and the genetic characteristics of the length polymorphism is compatible with a direct role in the pathogenesis of myotonic dystrophy.

Blotting, Southern↗

Molecular characterization of two bacteriophages isolated from Desulfovibrio vulgaris NCIMB 8303 (Hildenborough).

A preliminary endonuclease restriction map of a bacteriophage isolated from Desulfovibrio vulgaris has been established. BamHI cleaved whole phage DNA into four fragments while HindIII cut the same DNA into seven fragments. Mapping studies succeeded in linking the four BamHI fragments into two DNA segments; however, no linkage between the two segments was detected. These data imply that two phages were induced from cultures of D. vulgaris and that the two segments represented the DNA from these phages. Support for this hypothesis came from size approximation of restriction enzyme fragments, electron micrographs, and density gradients.

Bacteriophages↗

A physical map of the region spanning the chromosome 12 translocation breakpoint in a mesothelioma with a t(X;12)(q22;p13).

We have constructed a physical map of a 4.6-cM region of human chromosome band 12p13.3 that contains a translocation breakpoint from a mesothelioma with a t(X;12)(q22;p13). The map contains a contig of 22 yeast artificial chromosomes (YACs), onto which we have placed 18 sequence tagged site (STS) markers, including seven genes: D12S370, FGF6, KCAN1, KCNA5, KCNA6, NTF3, and VWF. A second YAC contig, comprised of 22 YAC clones, was located distal to the mesothelioma breakpoint and contained 12 STS markers, including four genes (CACNL1A1, D12S380E, D12S381E, and D12S382E). Based on STS content and fluorescence in situ hybridization experiments, two stable, nonchimeric YAC clones were found that span the mesothelioma breakpoint. A long-range restriction map of an 800-kb region was constructed and used to refine the mesothelioma breakpoint to a region of approximately 100 kb, flanked by the potassium channel genes KCNA1 and KCNA5. The latter was confirmed by direct visual hybridization (DIRVISH) experiments, using cosmids isolated for markers flanking the breakpoint as probes.

Animals↗

[Effectiveness of chemical mutagenesis in multiple damage to one or both strands of plasmid DNA].

Methods for site-directed multiple modification of DNA have been developed and used for modification of either one or two strands of plasmid DNA. Plasmid DNAs modified in the region of the tet gene were transformed into Escherichia coli cells and Tet colonies were screened. It was shown that multiple lesions in one DNA strand performed using either N-methyl-N'-nitro-N-nitrosoguanidine (MNNG) or sodium bisulfite were effectively repaired in the cell by error-free mechanism. In contrast, modification of two DNA strands led to induction of mutations. The efficiency of mutagenesis in the case of modification of a local region of one DNA strand with sodium bisulfite and modification of the other strand with MNNG was 1.1-7.9%. Mutations were analysed by restriction mapping and sequencing. All of them were G----A transitions.

DNA Damage↗

Chromosomal mapping of the human M6 genes.

M6 is a neuronal membrane glycoprotein that may have an important role in neural development. This molecule was initially defined by a monoclonal antibody that affected the survival of cultured cerebellar neurons and the outgrowth of neurites. The nature of the antigen was discovered by expression cDNA cloning using this monoclonal antibody. Two distinct murine M6 cDNAs (designated M6a and M6b) whose deduced amino acid sequences were remarkably similar to that of the myelin proteolipid protein were previously isolated. We have isolated partial human cDNA and genomic clones encoding M6a and M6b and have characterized them by restriction mapping, Southern hybridization with cDNA probes, and sequence analysis. We have localized these genes within the human genome by FISH (fluorescence in situ hybridization). The human M6a gene is located at 4q34, and the M6b gene is located at Xp22.2. A number of human neurological disorders have been mapped to the Xp22 region, including Aicardi syndrome (MIM 304050), Rett syndrome (MIM 312750), X-linked Charcot-Marie-Tooth neuropathy (MIM 302801), and X-linked mental retardation syndromes (MRX1, MIM 309530). This raises the possibility that a defect in the M6b gene is responsible for one of these neurological disorders.

Amino Acid Sequence↗

Molecular cloning of cDNAs for the nerve-cell specific phosphoprotein, synapsin I.

To provide access to synapsin I-specific DNA sequences, we have constructed cDNA clones complementary to synapsin I mRNA isolated from rat brain. Synapsin I mRNA was specifically enriched by immunoadsorption of polysomes prepared from the brains of 10-14 day old rats. Employing this enriched mRNA, a cDNA library was constructed in pBR322 and screened by differential colony hybridization with single-stranded cDNA probes made from synapsin I mRNA and total polysomal poly(A)+ RNA. This screening procedure proved to be highly selective. Five independent recombinant plasmids which exhibited distinctly stronger hybridization with the synapsin I probe were characterized further by restriction mapping. All of the cDNA inserts gave restriction enzyme digestion patterns which could be aligned. In addition, some of the cDNA inserts were shown to contain poly(dA) sequences. Final identification of synapsin I cDNA clones relied on the ability of the cDNA inserts to hybridize specifically to synapsin I mRNA. Several plasmids were tested by positive hybridization selection. They specifically selected synapsin I mRNA which was identified by in vitro translation and immunoprecipitation of the translation products. The established cDNA clones were used for a blot-hybridization analysis of synapsin I mRNA. A fragment (1600 bases) from the longest cDNA clone hybridized with two discrete RNA species 5800 and 4500 bases long, in polyadenylated RNA from rat brain and PC12 cells. No hybridization was detected to RNA from rat liver, skeletal muscle or cardiac muscle.

Animals↗