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At least 163 records · Page 9Linked to original sources

Isolation of cosmids corresponding to the chromosome breakpoints of a de novo autosomal translocation, t(6;19)(p21;q13.1), in a patient with multicystic renal dysplasia.

Hydronephrosis caused by pelvi-ureteric junction obstruction (PUJO) is a frequent urological malformation assumed to result from a deficient development of the ureteric bud. The exact etiology of pelvi-ureteric junction stenosis is unknown, but there is convincing evidence for a genetic cause, with linkage analysis predicting a hereditary hydronephrosis locus on chromosome 6p. We encountered a patient with a de novo autosomal t(6;19)(p21;q13.1) and attendant bilateral multicystic renal dysplasia (MRD), bilateral PUJO resulting in massive hydronephrosis, and an associated von Mayer-Rokitansky-Kuster disorder. On the basis of the presumption that in this patient the putative hydronephrosis gene might be disrupted by the translocation, we sought to isolate DNA from the breakpoint regions as the initial step in a strategy to identify genes affected by the t(6; 19). Using sequential rounds of fluorescence in situ hybridization (FISH) with cosmids selected from a detailed integrated map of the long arm of chromosome 19, we have identified a cosmid clone that spans the breakpoint. The position of the breakpoint was further localized by Southern blot analysis. Using a vectorette PCR approach, rearranged DNA fragments were isolated and, by comparative nucleotide sequence analysis, these were shown to contain ectopic sequences. A cosmid clone containing these ectopic sequences was isolated and shown by CASH (chromosome assignment using somatic cell hybrids) and FISH (fluorescence in situ hybridization) analysis to map to the short arm of chromosome 6 and to span the breakpoint found in the MRD patient. The isolated cosmid clones are useful reagents for analysis of other MRD patients and for the search for genes at or flanking the breakpoints.

Adult↗

Mapping the Trypanosoma cruzi genome: analyses of representative cosmid libraries.

In order to generate contiguous cosmid coverage of the genome of the protozoan parasite Trypanosoma cruzi for large-scale sequence analysis, a cosmid library of 36864 individual, primary clones was generated. Total genomic DNA of the reference strain CL Brener was fragmented both by partial digestion with MboI and by physical shearing. For cloning, a modified cosmid vector was used that simplifies analyses such as restriction mapping. The library's representation is about 25 genome equivalents, assuming a size of 55 Mb per haploid genome. No chimerism of inserts in the clones could be detected. The colinearity between cosmid inserts and genomic DNA was verified. Also, hybridizations to the gel-separated karyotype of the organism were carried out as a quality check. Gridded onto two nylon filters, the library was analyzed with a variety of probes. Apart from being used for combined physical and transcriptional mapping of the genome, library filters and clones are also available to interested parties.

Animals↗

Complete sequence of a 38.4-kb human cosmid insert containing the polymorphic marker DXS455 from Xq28.

The complete DNA sequence of a cosmid mapping to human Xq28 (DXS455) has been determined using a shotgun approach (genbank accession number: L31948). The cosmid insert is 38.4 kb in length, and contains several repetitive sequences, including a highly repetitive region located in a fragment previously shown to contain a polymorphic VNTR locus, as well as short di- and tri-nucleotide repeats. In addition to the previously known VNTR locus, a CA-repeat and an unusual 800-bp repetitive region have been found to be polymorphic. The repeated sequence mapping to the site of the VNTR locus spans 480 bp in the cosmid. In addition to several AT-dinucleotide stretches, this repeat has four copies of a 25 bp repeat unit and flanking sequences similar to this 25-mer. No expressed sequences have so far been identified in this cosmid.

Bacteriophage M13↗

[Rapid restriction mapping of DNA cloned in cosmid or lambda phage vectors].

A procedure for rapid restriction mapping of cosmid or lambda phage clones has been developed. The mapping of cosmid is based on linearization of circular cosmid DNA in vitro by the phage lambda terminase. Partial digestion products are selectively labelled at the right or left cos cohesive termini by hybridization with [32P] oligonucleotides complementary to the single-strand cos end. After gel electrophoresis and autoradiography, the restriction map can be directly determined from the "ladder" of partial digestion products of cosmid or lambda clones with computer program or by hand.

Bacteriophage lambda↗

The detailed characterisation of a 400 kb cosmid walk in the BRCA1 region: identification and localisation of 10 genes including a dual-specificity phosphatase.

We have produced a detailed physical and transcriptional map of a 400 kb region within the narrowest flanking markers known to contain the hereditary breast and ovarian susceptibility gene, BRCA1. The approach described here has avoided the problems of chimaerism, instability and rearrangements commonly observed in yeast artificial chromosomes by converting the YAC clones into ordered chromosome 17-specific cosmid contigs and joining these contigs by cosmid end-walking. A detailed long-range restriction map provided a framework for the cosmid contig assembly and further refines existing physical mapping data. We have used a combined approach towards the isolation of the genes housed within these cosmids. This has resulted in the isolation and precise localisation of eight novel genes, including a novel G protein and an endogenous retrovirus related to the HERV-K family, and the previously described dual-specificity VHR phosphatase and MOX1 homeobox genes.

Animals↗

[Subregional localization of recombinant cosmids, containing microsatellite sequences, on human chromosome 13].

Twenty four recombinant cosmids were subregionally localized by fluorescent in situ hybridization on human chromosomes. Fifteen of the clones were found to belong to only one chromosome: 13 clones located on chromosome 13, one located on chromosome 1, and one on chromosome 11. Nine cosmids were located in nuclear organizer regions. The clones gave signals from NOR regions of chromosome 13 and all other chromosomes containing the NOR region. The cosmid probes were selected from the chromosome 13 cosmid library as ones containing microsatellite repeats with motifs GACA, GACT, GATG, TCC, and CA. Each of the 9 clones located in the NOR region contains microsatellites GACA and TCC. Among the 15 clones giving unique signals, we found 9 clones with the GACT microsatellite, and three clones containing one of the microsatellites GATG, TCC, and CA. These microsatellite-containing clones can be used to make polymorphic genetic markers for fine genetic mapping of chromosome 13.

Chromosome Mapping↗

Isolation of a cosmid clone corresponding to an inv(21) breakpoint of a patient with transient abnormal myelopoiesis.

Transient abnormal myelopoiesis (TAM) is a leukemoid reaction occurring occasionally on Down syndrome (DS) newborn infants. It has been hypothesized that "disomic homozygosity" in 21-trisomic cells plays an important role in the genesis of TAM, and the putative TAM gene was suggested to be mapped at a 21q11 region. We encountered a DS-associated TAM infant with a 47,XY,inv(21)(q11.1q22.13),+inv(21)(q11.1q22.13) karyotype. On the basis of another presumption that in this patient the putative TAM gene is disrupted by the break, we tried to isolate a breakpoint DNA. FISH analysis with cosmid clones corresponding to various sequence-tagged-site (STS) markers mapped at around 21q11.1-q11.2, we confirmed that the proximal breakpoint of the inv(21) was located between two STSs, G51E07 and D21S215, the latter locus being consistent with the previous tentative mapping. After construction of a cosmid contig encompassing between the two markers, we have isolated a cosmid clone corresponding to the proximal breakpoint of the inversion. This breakpoint was located near a previously identified duplicated region that is homologous to the sequence at 21q22.1. The isolated cosmid clone is useful for analysis of other TAM patients and for a search for a transcript at or flanking the breakpoint.

Adult↗

[Construction and characteristics of a cosmid library of genes of the bacterium Cornyebacterium glutamicum ATSS13032].

A representative genomic library of the Corynebacterium glutamicum ATCC 13032 genes in a cosmid vector Lorist6 was created. The cosmids contain inserts of bacterial DNA obtained by partial digestion with the Sau3A I restrictase. Five hundred and thirty individual primary recombinant clones were transferred into the wells of microtiter plates, where they are now being preserved. The average size of the bacterial DNA inserts determined via a sum of restriction fragment sizes of recombinant molecules is about 38 kb. The capacity of the obtained gene library is 8.4 equivalents of the C. glutamicum genome, i.e., every fragment of the genome is on average represented by eight clones and is presented in at least one clone with the probability > 99%. Clone grids (sets of recombinant clones located on the hybridization membrane in regular and reproducible order) were created. Specificity of the created clone library and its representativeness were confirmed experimentally by hybridization of clone grids with DNA probes corresponding to unique regions of the Corynebacterium genome. A plasmid containing the pheA prephenate dehydratase gene, olygonucleotide corresponding to the lysC gene, and the 21 RNA probe obtained from the insert ends in different cosmids were used as probes. The created set of clones allows the construction of a cosmid contig overlapping the C. glutamicum genome and a physical genetic map on its base.

Corynebacterium↗

Restriction map of a YAC and cosmid contig encompassing the oculopharyngeal muscular dystrophy candidate region on chromosome 14q11.2-q13.

As part of our effort to clone positionally the oculopharyngeal muscular dystrophy (OPMD) gene, we constructed a YAC contig, a cosmid contig, and an EcoRI restriction map of the OPMD candidate region. The YAC contig spans more than 2 Mb and encompasses the loci D14S283 and D14S990 and the cardiac alpha and beta myosin heavy chain genes (MYH6 and MYH7). A 700-kb cosmid contig containing the D14S990 and the myosin genes and a long-range restriction map covering the region between D14S990 and the MYH6 and MYH7 gene cluster were established. A detailed EcoRI restriction map of the cosmid contig was determined, and five putative CpG islands were identified. Based on these data, the four loci were mapped within an approximately 600-kb region with the following centromere to telomere order: D14S283, D14S990, MYH6, and MYH7. The YAC and cosmid contigs will facilitate the identification of genes lying within the OPMD candidate interval.

Chromosome Walking↗

Plasmids useable as gene-cloning vectors in an in vitro packaging by coliphage lambda: "cosmids".

A plasmid which contains a cos site of lambda and can be packaged into lambda bacteriophage particles is termed a "cosmid". Such plasmids can be used as gene cloning vectors in conjunction with an in vitro packaging system. The properties of a new series of cosmids based on the ColE1 replicon are described, including small temperature-sensitive plasmids which have lost mobilisation functions and carry no IS sequences. Amongst these plasmids are vectors for XmaI, BglII, BamHI, HindIII, PstI, KpnI, SalI and EcoRI. It is demonstrated that by using cosmids in particular size ranges these plasmids provide a high efficiency cloning system which yields essentially only hybrid clones without resort to a second selection or screening step, and without prior modification (e.g. phosphatase) treatment of the DNA. Attempts were made to optimise the cloning properties of the cosmid system. An Escherichia coli "gene bank" was obtained with an efficiency of 5 . 10(5) clones per microgram of E. coli DNA, and in which any particular unselected marker may be found in about one out of every 400 clones. It was demonstrated that deletion of mobilisation functions leads to loss of ability to form relaxation-complex without affecting copy number or segregation properties of the temperature-sensitive derivatives. The vectors are amplifiable in chloramphenicol to make up about 50% of the total cellular DNA.

Coliphages↗

Stable cosmid vectors that enable the introduction of cloned fragments into a wide range of gram-negative bacteria.

A cosmid cloning system has been developed which is useful for the construction of genomic libraries and the introduction of clones into a broad range of bacterial species. The cosmids pMMB33 and pMMB34 allow selective cloning into their unique BamHI site of 36-kb DNA fragments generated by BamHI, Sau3A and MboI partial digestion. This selective cloning is achieved by a strategy that avoids formation of polycosmids without a dephosphorylation step. It uses two unique recognition sites within the vectors for endoncleases that generate blunt-ended DNA fragments for the preparation of left and right cosmid "arms". An alternative method that uses the unique EcoRI and SstI sites and dephosphorylation of the cosmid arms prior to BamHI digestion is also outlined and discussed. The DNA is first cloned with either vector into a rec- E. coli strain, where clones can be maintained stably, and can then be introduced by mobilization into a wide range of Gram-negative species to permit the study of gene expression and complementation. Because mobilization is much more efficient than transformation, the vector has the advantage that it can be transferred between bacterial species that specify different restriction systems, where transformation appears to be inefficient. The vectors have been used to generate gene libraries from the chromosomal DNA of several Pseudomonas and a Thiobacillus species. The genes specifying myo-inositol transport from Pseudomonas strain JD34 have been cloned with this system.

Cloning, Molecular↗

Isolation of transforming DNA by cosmid rescue.

A procedure has been developed to allow the recovery of an integrated plasmid genome from a transformed cell, together with large areas of the flanking DNA sequences. DNA from Saccharomyces cerevisiae BAS2, in which the pBR322--ura 3 plasmid (Y1p5) is integrated at the yeast histone H2A and H2B locus, was used to generate a cosmid library, using a new cosmid vector (pTL5) that is ampicillin sensitive and tetracycline resistant. Colonies were selected for ampicillin resistance, which was conferred by the incorporation of the integrated pBR322 beta-lactamase gene into the recombinant cosmid. Restriction enzyme and blot hybridization analyses show that the rescued clones contain the yeast histone genes in addition to the Y1p5 sequences; a total of approximately 50 kilobase pairs of DNA sequences flanking the plasmid was recovered as a series of overlapping cosmids. This approach should allow the recovery of most genes that can be linked to a marker pBR322 sequence and for which a specific phenotype can be selected in a recipient eukaryotic cell.

Bacteriophage lambda↗

The construction of cosmid libraries of eukaryotic DNA using the Homer series of vectors.

We have constructed and characterised a series of approved, disabled cosmid vectors which we call Homer cosmids and have examined the optimal conditions for the construction of libraries of eukaryotic DNA segments using these vectors. Analysis of these libraries shows that most of the sequences we have tested for are present at the expected frequency and that the libraries can be stably propagated. We have also directly tested the stability of cosmid clones carrying tandemly repeated inserts. This work shows that it should be possible to clone most eukaryotic genes using cosmid vectors and that such cloning systems have considerable advantages over those more commonly used.

Animals↗

Symbiotic Expression of Cosmid-Borne Bradyrhizobium japonicum Hydrogenase Genes.

The expression of cosmid-borne Bradyrhizobium japonicum hydrogenase genes in alfalfa, clover, and soybean nodules harboring Rhizobium transconjugants was studied. Cosmid pHU52 conferred hydrogen uptake (Hup) activity in both free-living bacteria and in nodules on the different plant hosts, although in nodules the instability of the cosmid resulted in low levels of Hup activity. In contrast, cosmid pHU1, which does not confer Hup activity on free-living bacteria, gave a Hup phenotype in nodules on alfalfa and soybean. Nodules formed by B. japonicum USDA 123Spc(pHU1) recycled about 90% of nitrogenase-mediated hydrogen evolution. Both subunits of hydrogenase (30- and 60-kilodalton polypeptides) were detected in enzyme-linked immunosorbent assays of bacteroid preparations from nodules harboring B. japonicum strains with pHU1 or pHU52. Neither pHU53 nor pLAFR1 conferred detectable Hup activity in either nodules or free-living bacteria. Based on the physical maps of pHU1 and pHU52, it is suggested that a 5.5-kilobase EcoRI fragment unique to pHU52 contains a gene or part of a gene required for Hup activity in free-living bacteria but not in nodules. This conclusion is supported by the observation that two Tn5 insertions in the chromosome of B. japonicum USDA 122DES obtained by marker exchange with Tn5-mutagenized pHU1 abolished Hup activity in free-living bacteria but not in nodules.

Journal Article↗

Sequence analysis of two cosmids from Schizosaccharomyces pombe chromosome III.

We report the complete sequence of two cosmids, SPCC895 (38457 bp insert, EMBL Accession No. AL035247) and SPCC1322 (42068 bp insert, EMBL Accession No. AL035259), localized on chromosome III of the Schizosaccharomyces pombe genome. Fourteen Coding DNA sequences (CDSs) were identified in SPCC895 and 17 in SPCC1322. Two known genes were found in each cosmid: map2 and gms1 on SPCC895, encoding the mating type P-factor precursor and an UDP-galactose transporter, respectively, and bub1 and ade6 in SPCC1322, encoding a protein kinase and a phosphoribosylaminoimidazole carboxylase, respectively. The fission yeast K RNA gene has been localized to SPCC895. Three ribosomal proteins have been predicted among these two cosmids. Nine CDSs similar to known proteins were found on SPCC895, and seven on SPCC1322. They include putative genes for an uridylate kinase, a proteasome catalytic component, an ion transporter, a checkpoint protein, a translation initiation protein, a SNARE complex protein, a protein involved in cytoskeletal organization, a spindle pole body-associating protein, pre-mRNA splicing factor RNA helicase, a 3'-5' exonuclease for RNA 3' ss-tail, an UTP-glucose-1-phosphate uridylyltransferase, a leukotriene A(4) hydrolase, a member of the RanBP7-importin beta-Cse1p superfamily, a Ca(++)-calmodulin-dependent serine/threonine protein kinase and a prohibitin antiproliferative protein. One CDS is predicted to be an integral membrane protein. One CDS from SPCC895 is similar to a CDS of unknown function from Saccharomyces cerevisiae and three from SPCC1322 are similar to CDSs of unknown function from Candida albicans, S. cerevisiae and Sz. pombe, respectively. Finally, one CDS of SPCC895 and three of SPCC1322 correspond to orphan genes.

Amino Acid Sequence↗

Adeno-cosmid cloning vectors for regulated gene expression.

BACKGROUND: Adenovectors are widely used for efficient delivery of genes into a variety of cell types and organisms. However, the construction of the desired vector/genes combination, especially if it involves the cloning of several gene cassettes, can be laborious due to the large size of these vectors. New methods are needed to simplify the construction of complex combinations of gene cassettes into adenovectors. METHODS: Using simple cloning techniques and exploiting the lambda-phage packaging system, we devised efficient methods for the 'selection' of the desired vector constructs. Thus we generated a series of cosmids containing the adeno helper dependent (HD) backbone in which we inserted cis- and trans-acting tetracycline (tet) elements for the regulation of any gene of interest. One of these cosmids has been used to produce an HD adenovirus carrying a tetracycline-regulated gene expressing beta-galactosidase. RESULTS: We have demonstrated that the adeno-cosmid system allows rapid and efficient cloning of genes of interest in helper dependent vectors, and described a prototype 'ready-to-use' vector in which any gene of interest can be easily expressed under the control of the tet system. The HD viruses produced with this novel methodology can be grown at high titers, can be easily separated from the helper adenovirus, and allow delivery and regulated gene expression in a variety of tissues. CONCLUSIONS: Exploiting the lambda-packaging system, complex adeno constructs can be generated with a simple and reproducible protocol, which allows selection of the desired size construct, counterselecting for the frequently observed intramolecular recombinations and deletions.

Adenoviridae↗

Analysis of chromosome 21 copy number in uncultured amniocytes by fluorescence in situ hybridization using a cosmid contig.

A comparison of the use of chromosome 21-specific libraries, DOP-PCR 21 paints, yeast artificial chromosome (YAC) clones, single cosmids, and a 21q cosmid contig as probes for the detection of the copy number of chromosome 21 in interphase cells by fluorescence in situ hybridization shows that the cosmid contig is a satisfactory probe for interphase analysis of chromosome 21. The contig cCMP21.a, which is 55 kb in length, is highly chromosome 21-specific and produces intense, compact signals in a high proportion of interphase cells. A retrospective blind analysis of coded uncultured amniotic fluid samples correctly detected four trisomy 21 cases out of 49 samples.

Amniocentesis↗

Isolation and mapping of a cosmid clone containing the human NAT2 gene.

The NAT2 gene encodes for a polymorphic arylalkylamine N-acetyltransferase and thus accounts for the human N-acetylation polymorphism. By a NAT2-specific primer set we have screened a human chromosome 8-specific cosmid library. A positive cosmid clone was mapped by fluorescence in situ hybridization to 8p22. The polymerase chain reaction followed by restriction analysis of the PCR product was used to identify allele 2 to be contained in the cosmid clone.

Arylamine N-Acetyltransferase↗