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At least 235 records · Page 13Linked to original sources

A human genome YAC library in a selectable high-copy-number vector.

An experimental yeast artificial chromosome (YAC) library consisting of one genome equivalent of human DNA was prepared in a selectable high-copy-number (hcn) YAC vector. Screening for unique loci was accomplished by PCR of successively smaller DNA pools and by hybridization to high-density microcolony blots. Inserts averaged 200 kb in size, but several YACs with inserts averaging about 650 kb were obtained when polyamines were added prior to yeast transformation. YACs were identified for 17 out of 29 sequence-tagged sites (STS) screened by a PCR-based approach. All YACs in the size range of 100-600 kb that were examined could be obtained at significantly elevated copy numbers following growth of the clones in methotrexate/sulfanilamide/thymidine-supplemented medium. The hcn YACs could also be selected during growth in microtiter dishes, and the resulting clones were used to prepare high-density microcolony DNA blots for hybridization with radiolabeled PCR products. DNA pools for the PCR-based screening of this experimental library are available to investigators interested in applications of hcn YACs.

Base Sequence↗

Large-scale screening of intracellular protein localization in living fission yeast cells by the use of a GFP-fusion genomic DNA library.

BACKGROUND: Intracellular localization is an important part of the characterization of a gene product. In an attempt to search for genes based on the intracellular localization of their products, we constructed a green fluorescent protein (GFP)-fusion genomic DNA library of S. pombe. RESULTS: We constructed the S. pombe GFP-fusion genomic DNA library by fusing, in all three reading frames, random fragments of genomic DNA to the 5' end of the GFP gene in such a way that expression of potential GFP-fusion proteins would be under the control of the own promoters contained in the genomic DNA fragments. Fission yeast cells were transformed with this plasmid library, and microscopic screening of 49 845 transformants yielded 6954 transformants which exhibited GFP fluorescence, of which 728 transformants showed fluorescence localized to distinct intracellular structures such as the nucleus, the nuclear membrane, and cytoskeletal structures. Plasmids were isolated from 516 of these transformants, and a determination of their DNA sequences identified 250 independent genes. The intracellular localizations of the 250 GFP-fusion constructs was categorized as an image database; using this database, DNA sequences can be searched for based on the localizations of their products. CONCLUSIONS: A number of new intracellular structural components were found in this library. The library of GFP-fusion constructs also provides useful fluorescent markers for various intracellular structures and cellular activities, which can be readily used for microscopic observation in living cells.

Amino Acid Sequence↗

Use of a Mycobacterium tuberculosis H37Rv bacterial artificial chromosome library for genome mapping, sequencing, and comparative genomics.

The bacterial artificial chromosome (BAC) cloning system is capable of stably propagating large, complex DNA inserts in Escherichia coli. As part of the Mycobacterium tuberculosis H37Rv genome sequencing project, a BAC library was constructed in the pBeloBAC11 vector and used for genome mapping, confirmation of sequence assembly, and sequencing. The library contains about 5,000 BAC clones, with inserts ranging in size from 25 to 104 kb, representing theoretically a 70-fold coverage of the M. tuberculosis genome (4.4 Mb). A total of 840 sequences from the T7 and SP6 termini of 420 BACs were determined and compared to those of a partial genomic database. These sequences showed excellent correlation between the estimated sizes and positions of the BAC clones and the sizes and positions of previously sequenced cosmids and the resulting contigs. Many BAC clones represent linking clones between sequenced cosmids, allowing full coverage of the H37Rv chromosome, and they are now being shotgun sequenced in the framework of the H37Rv sequencing project. Also, no chimeric, deleted, or rearranged BAC clones were detected, which was of major importance for the correct mapping and assembly of the H37Rv sequence. The minimal overlapping set contains 68 unique BAC clones and spans the whole H37Rv chromosome with the exception of a single gap of approximately 150 kb. As a postgenomic application, the canonical BAC set was used in a comparative study to reveal chromosomal polymorphisms between M. tuberculosis, M. bovis, and M. bovis BCG Pasteur, and a novel 12.7-kb segment present in M. tuberculosis but absent from M. bovis and M. bovis BCG was characterized. This region contains a set of genes whose products show low similarity to proteins involved in polysaccharide biosynthesis. The H37Rv BAC library therefore provides us with a powerful tool both for the generation and confirmation of sequence data as well as for comparative genomics and other postgenomic applications. It represents a major resource for present and future M. tuberculosis research projects.

Chromosome Mapping↗

Nucleotide sequence of a putative succinate dehydrogenase operon in Thermoplasma acidophilum.

28 amino acids from the N-terminal region of a putative terminal oxidase from the archaebacterium Thermoplasma acidophilum were determined by Edman degradation. On basis of this amino acid sequence a degenerated oligonucleotide was synthesized and used as a radioactive probe for Southern blot analysis of EcoRI digested genomic DNA. A 2.3 kb EcoRI fragment strongly hybridized to the probe and size selected genomic library from genomic DNA was constructed. Several clones scored positive by screening the library with the degenerated oligonucleotide, from which only one clone contained a EcoRI DNA fragment encoding the 28 amino acid sequence determined by protein sequencing. Sequence analysis revealed the presence of three genes in the typical arrangement of an operon. The first gene codes for a protein containing 11 cystein residues in an arrangement typical for Fe/S proteins. Protein sequence comparison revealed significant homologies to the fumarate reductase and succinate dehydrogenase of other bacteria. The two other genes encode small hydrophobic proteins probably serving as membrane anchor for the Thermoplasma acidophilum succinate dehydrogenase.

Amino Acid Sequence↗

Growth hormone secretagogue receptor family members and ligands.

We have previously reported the cloning and characterization of a new orphan G-protein-coupled receptor (GPC-R), the growth hormone secretagogue receptor (GHS-R), and shown that this receptor mediates the activity of the growth hormone-releasing peptides (GHRPs) and nonpeptide ligands such as L-692,429 and MK-0677. Because the GHS-R obviously does not belong to any of the known GPC-R subfamilies, we searched for GHS-R family members by screening a human genomic library using low-stringency hybridization and screening a Pufferfish genomic library. The Pufferfish was selected because of its compact genome. From the human genomic library, a homolog, GPR38, with 52% identity to the GHS-R was isolated. From the Pufferfish library, three family members were isolated. The Pufferfish gene having 58% identity to the GHS-R, on expression in HEK293 cells, was activated with GHRP-6 and MK-0677. These results indicate that the GHS-R has been conserved for at least 400 million years and that the Pufferfish genome is appropriate for isolation of GHS-R family members. In our search for endogenous ligands for the orphan receptors GHS-R and GPR38, we showed that adenosine is a partial agonist of the GHS-R and that motilin is the endogenous ligand for GPR38. We also confirmed that the endogenous ligand ghrelin is a full agonist of the GHS-R.

Adenosine↗

Molecular cloning, DNA sequence and transcriptional analysis of the Rhodospirillum molischianum B800/850 light-harvesting genes.

The amino acid sequences of the B800/850 light-harvesting proteins from Rhodospirillum molischianum were determined by Edman degradation. On the basis of these amino acid sequences, two degenerated oligonucleotides were synthesized and used for PCR of genomic DNA. The resulting 150 bp DNA fragment was cloned, sequenced and used for subsequent Southern blot analysis of digested genomic DNA. A 2.3 kbp EcoRI fragment strongly hybridized to the probe and a size selected genomic library from genomic DNA was constructed. One clone scored positive during screening of the library with the PCR-fragment and subsequent DNA sequence analysis of the clone revealed the presence of three A-genes (A1A2A3) encoding alpha-polypeptides and of two B-genes (B1B2) encoding beta-polypeptides of the B800/850 complex. The arrangement of the different genes are B1A1, B2A2 and A3 where only B1 and B2 are preceded by typical Shine-Dalgarno sequences. In addition, typical nucleotide sequences for a rho-independent termination of transcription are located downstream of the genes A1 and A2. The deduced amino acid sequences revealed that the alpha-genes encoded for identical polypeptides, whereas the deduced beta-polypeptides differed in their amino acid sequence at four positions. Transcriptional operon analysis revealed that the genes A1B1 and A2B2 are both dicistronically transcribed, whereas the gene A3 is not.

Amino Acid Sequence↗

Immunization of mice with a Mycobacterium tuberculosis genomic expression library results in lower bacterial load in lungs after challenge with BCG.

Tuberculosis is a serious infectious disease in many developing countries. The lack of an effective vaccine for preventing this disease has stimulated the search for new vaccine candidates against Mycobacterium tuberculosis. In the present work, the construction of a genomic expression library of M. tuberculosis in a eukaryotic expression vector was carried out. Immunization of Balb/c mice with a plasmid DNA pool from this library (containing 8360 clones) induced a significant IgG antibody response. Immunized mice were challenged by intratracheal route with 10(5) cfu of non-pathogenic Mycobacterium bovis BCG and were sacrificed 21 days post-challenge. Mice immunized with the genomic expression library showed a significant reduction of viable bacteria in lungs and less pulmonary tissue damage. Granulomas were not observed and the lungs had a more discrete perivascular inflammatory cell infiltrate compared to control mice. Results suggest that the genomic expression library contains genes encoding proteins that are protective against M. tuberculosis infection.

Animals↗

A BAC-based physical map of the Drosophila buzzatii genome.

Large-insert genomic libraries facilitate cloning of large genomic regions, allow the construction of clone-based physical maps, and provide useful resources for sequencing entire genomes. Drosophila buzzatii is a representative species of the repleta group in the Drosophila subgenus, which is being widely used as a model in studies of genome evolution, ecological adaptation, and speciation. We constructed a Bacterial Artificial Chromosome (BAC) genomic library of D. buzzatii using the shuttle vector pTARBAC2.1. The library comprises 18,353 clones with an average insert size of 152 kb and an approximately 18x expected representation of the D. buzzatii euchromatic genome. We screened the entire library with six euchromatic gene probes and estimated the actual genome representation to be approximately 23x. In addition, we fingerprinted by restriction digestion and agarose gel electrophoresis a sample of 9555 clones, and assembled them using FingerPrint Contigs (FPC) software and manual editing into 345 contigs (mean of 26 clones per contig) and 670 singletons. Finally, we anchored 181 large contigs (containing 7788 clones) to the D. buzzatii salivary gland polytene chromosomes by in situ hybridization of 427 representative clones. The BAC library and a database with all the information regarding the high coverage BAC-based physical map described in this paper are available to the research community.

Animals↗

Highly efficient method for obtaining a subtracted genomic DNA library by the modified in-gel competitive reassociation method.

A highly efficient method to obtain a subtracted genomic DNA library using 1 microgram of target DNA was developed by modification of the previously reported in-gel competitive reassociation procedure. The modified method was based on polymerase chain reaction amplification after selective purification of a target-target reassociated molecule of subtracted DNA fragments to increase cloning efficiency. For a model experimental system, the subtracted DNA library was constructed after two cycles of subtractive reassociation between cervical cancer DNA fragments containing human papilloma virus DNA and the 100-fold excess of dephosphorylated normal tissue DNA fragments which were size-fractionated in agarose gel. Colony hybridization using human papilloma virus DNA as a probe revealed that a more than 500-fold enrichment of human papilloma virus DNA sequences in the subtracted DNA library could easily be obtained. This simple and efficient method will enable us to isolate an unknown foreign DNA fragment and an unknown amplified DNA fragment which might be present in cancer.

Base Sequence↗

Microsatellites obtained using strand extension: an enrichment protocol.

A new method is described to enrich genomic libraries for clones containing microsatellite repeats. The method involves selection on completed M13 genomic libraries rather than on genomic DNA before library construction. It uses two reactions, in which microsatellite oligonucleotides prime strand extension. The first reaction uses a biotinylated primer allowing vectors with microsatellite-containing inserts to be selected with streptavidin-coated magnetic beads. This reaction may be dependent on the strand displacement activity of the Klenow fragment of DNA Polymerase I. The second strand extension reaction is included to improve the relative transformation efficiency of microsatellite-containing clones. In control experiments starting with 0.7% microsatellite-containing clones, enrichment averaged 99.5%. The method was tested empirically on antechinus and abalone genomic libraries in which enrichment for (CA)n microsatellites was efficient enough that clones could be sequenced without further screening. This protocol is technically straightforward and permits the isolation of a large number of microsatellite markers in less time than is required to execute traditional protocols involving rounds of filter hybridization.

Bacteriophage M13↗

Isolation and characterization of xnov, a Xenopus laevis ortholog of the chicken nov gene.

We have isolated an ortholog (xnov) of the chicken nov gene (for nephroblastoma overexpressed; encoding a putative avian proto-oncogene) from Xenopus laevis (Xl) by screening an Xl ovary cDNA library and genomic library using the entire coding region of human CTGF (encoding connective tissue growth factor) as a probe and by 5'RACE (rapid amplification of cDNA ends). xnov has the same genomic organization as chicken nov, mouse fisp12 and cyr61, but has a unique promoter sequence. The Xl open reading frame (ORF) encodes a 343-amino-acid (aa) polypeptide of 37.9 kDa. Xnov shows 62.9, 60.5, 52.2, 52.1, 47.6 and 45.8% identity with the chicken Nov, human NovH, human CTGF, mouse Fisp12, chicken Cef10 and mouse Cyr61 proteins, respectively. Xnov contains four aa domains which characterize the CTGF family. RT-PCR (reverse transcription-polymerase chain reaction) analysis shows that the xnov mRNA is very low in abundance and appears to be present throughout early Xl development. Our results also indicate that xnov and nov are not orthologs of human CTGF.

Amino Acid Sequence↗

[Construction of a genomic DNA library of Toxoplasma gondii (ZS2 strain), screening of specific clone and DNA diagnosis of toxoplasmosis].

We have constructed a genomic DNA library of Toxoplasma gondii (ZS2 strain) and screened out a specific DNA sequence for T. gondii. The restriction map of the cloned DNA fragment (1.1kb) was analysed. The Southern and dot-blot analyses showed that the 32P-labeled cloned DNA fragment hybridized to the parasite DNA, DNAs from peripheral white blood cells and thymus of baby pigs artificially infected with T. gondii and DNAs of T. gondii- positive anencephalus and hydrocephalus, but did not hybridize to DNAs from controls, i. e., normal human and baby pig peripheral white blood cells, spleen of normal mouse, Plasmodium falciparum, Pneumocystis carinii and pBR322. As few as 100 T. gondii parasites or 500pg purified DNA from T. gondii can be detected by dot blot hybridization. This established DNA probe method was specific and sensitive and has been successfully used in detecting various cases infected with T. gondii.

Animals↗

The isolation and partial characterization of linked alpha A- and alpha D-globin genes from a duck DNA recombinant library.

Genomic DNA from an adult duck (Cairina moschata) was used to construct a library of cloned DNA fragments in the vector lambda Charon 4A. Screening of the DNA library resulted in the isolation of a recombinant, D alpha G-1, which carries both the adult duck alpha A- and alpha D-globin genes. The two globin genes are separated by approx. 2.2 kb of DNA, they are encoded by the same DNA strand and their orientation with respect to the direction of transcription is 5'- alpha D- alpha A-3'. Partial sequence analyses indicate that the two alpha-globin genes contain intervening sequences at positions homologous to those in chicken and mammalian alpha-globin genes.

Amino Acid Sequence↗

Identification and characterization of the gene encoding the mitochondrial elongation factor G in rice.

A plant nuclear gene coding for a mitochondrial elongation factor G (mEF-G) was cloned from a cDNA library and genomic library of rice (Oryza sativa L.). This DNA sequence predicts a 757-amino-acid protein exhibiting 79%, 55% and 49% homology to Arabidopsis thaliana, Saccharomyces cerevisiae and rat mEF-G respectively, 53% homology to the elongation factor G in Escherichia coli and 43% homology to soybean chloroplast elongation factor G. The deduced amino acid sequence contains the characteristic motifs shared by all GTP binding proteins. Comparison of the sequence of the genomic clone to that of the cDNA clone revealed that this gene is split nineteen times by introns, although the gene of Arabidopsis is split seventeen times by introns. Some of the introns found in the rice genome are relatively long and they result in a long gene with a size of approximately 15 kb.

Amino Acid Sequence↗

Construction of a genomic DNA library of the Toxoplasma gondii ZS2 strain, screening of specific clones, and DNA diagnosis of toxoplasmosis.

We have constructed a genomic DNA library of the Toxoplasma gondii ZS2 strain and isolated a specific cloned DNA sequence from this organism. The restriction map of this cloned 1.1-kb DNA fragment was analyzed. Southern and dot-blot analyses showed that the 32P-labeled DNA fragment hybridized to parasite DNA, to DNAs from peripheral blood leukocytes and the thymus of baby pigs that were artificially infected with T. gondii, and to DNAs of T. gondii-positive anencephalic and hydrocephalic fetuses. It did not hybridize with DNA from controls, (i.e., normal human and baby pig peripheral blood leukocytes, spleen of normal mice, Plasmodium falciparum, Pneumocystis carinii, and pBR322). As few as 100 T. gondii parasites or 500 pg of purified DNA from T. gondii can be detected by dot-blot hybridization. This probe method was specific and sensitive, and has been used successfully in detecting various clinical cases of toxoplasmosis with T. gondii.

Animals↗

Isolation, characterization, inheritance and linkage of microsatellite DNA markers in white spruce (Picea glauca) and their usefulness in other spruce species.

Microsatellite DNA/simple-sequence-repeat (SSR) loci were identified, isolated and characterized in white spruce (Picea glauca) by screening both a non-enriched partial genomic library and a partial genomic library enriched for (AG/TC)n-containing clones. Inheritance and linkage of polymorphic SSR loci were determined in F1 progeny of four controlled crosses. We also assessed the compatibility and usefulness of the P. glauca microsatellite DNA markers in five other Picea species. Twenty-four microsatellites were identified by sequencing 32 clones selected from screens of 5,400 clones from the two libraries. The (AG/TC)n microsatellites were the most abundant in the non-enriched library. Eight microsatellite DNA loci were of the single-copy type, and six of these were polymorphic. A total of 87 alleles were detected at the six polymorphic SSR loci in 32 P. glauca individuals drawn from several populations. The number of alleles found at these six SSR loci ranged from 2 to 22, with an average of 14.5 alleles per locus, and the observed heterozygosity ranged from 0.48 to 0.91, with a mean of 0.66 per locus. Parents of the controlled crosses were polymorphic for five of the six polymorphic SSR loci. Microsatellite DNA variants at each of these five SSR loci followed a single-locus, codominant, Mendelian inheritance pattern. Joint two-locus segregation tests indicated complete linkage between PGL13 and PGL14, and no linkage between any of the remaining SSR loci. Each of the 32 P. glauca individuals examined had unique single or two-locus genotypes. With the exception of non-amplification of PGL12 in P. sitchensis, P. mariana, and P. abies and the monomorphic nature of PGL7 in P. mariana, primer pairs for all six polymorphic SSR loci successfully amplified specific fragments from genomic DNA and resolved polymorphic microsatellites of comparable sizes in P. engelmanni, P. sitchensis, P. mariana, P. rubens, and P. abies. The closely related species P. mariana and P. rubens, and P. glauca and P. sitchensiss could be distinguished by the PGL12 SSR marker. The microsatellite DNA markers developed and reported here could be used for assisting various genetics, breeding, biotechnology, tree forensics, genome mapping, conservation, restoration, and sustainable forest management programs in spruce species.

Base Sequence↗

Genomic DNA sequence, promoter expression, and chromosomal mapping of rat muscle carnitine palmitoyltransferase I.

Carnitine palmitoyltransferase I (CPT-I) is a key enzyme involved in the regulation of fatty acid oxidation. CPT-IA and CPT-IB are isoforms of carnitine palmitoyltransferase I, of which CPT-IA is expressed in liver, kidney, fibroblasts, and heart and CPT-IB is expressed in skeletal muscle, heart, brown and white adipocytes, and testes. Although the genomic DNA sequence of human CPT-IB is available, the transcription start site and upstream regulatory sequences are not known. For rat CPT-IB, only the cDNA sequence has been published. We have cloned the entire rat CPT-IB gene from a Lambda fix II rat kidney genomic library. The genomic structure contains 19 exons, with the transcription start site for CPT-IB located in a short first exon, which is a 13-bp extension to the previously published cDNA 5' sequence. The coding sequence is identical with the rat muscle cDNA. The rat CPT-IB gene contains 18 introns and 19 exons, the latter 18 exons showing 85% homology to the human CPT-IB cDNA. CPT-IB maps to rat chromosome 7 at band q34. A putative promoter region was identified to within 391 bp of the transcription start site. The muscle specificity of the 5' flanking region was verified by comparison of luciferase expression to that of beta-galactosidase in cardiac myocytes and in HepG2 cells.

Animals↗

Repeated sequences including RS1100 from Pseudomonas cepacia AC1100 function as IS elements.

Several lines of evidence were obtained that the previously identified, repeated sequence RS1100 of Pseudomonas cepacia strain AC1100 undergoes transposition events. DNA sequences flanking the chlorohydroxy hydroquinone (CHQ) degradative genes of this organism were examined from sources, including several independently isolated cosmid clones from an AC1100 genomic library and genomic DNAs of two independently maintained wild-type AC1100 isolates. Hybridization and restriction endonuclease mapping studies revealed these sequences to be similar except for their numbers and distributions of RS1100 copies. A recombinant plasmid containing the immediate chq gene region and excluding any copies of RS1100 was conjugated into AC1100 mutant RHA5 which was shown to have undergone a deletion of its corresponding DNA. Hybridization and restriction mapping analyses of several reisolated plasmids revealed the presence of RS1100 sequences at different positions within either the vector or insert portions. One such plasmid contained tandem copies of RS1100 with an intervening DNA sequence also of AC1100 origin. Similar experiments involving introduction of the promoter probe plasmid pKT240 into wild-type AC1100 cells resulted in the acquisition of high-concentration streptomycin resistance by a number of recipients. The reisolated plasmids in most cases also conferred streptomycin resistance to Escherichia coli transformants and in each case were found to contain insertions close to the upstream portion of the aphC structural gene. These insertions alternatively contained RS1100 sequences for a newly identified 3400 bp repeated sequence from AC1100. Based on these results, RS1100 has been redesignated as insertion sequence IS931 and the 3400 bp repeated sequence has been designated as IS932.

DNA Transposable Elements↗