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Construction of an ordered genomic library of Mycoplasma genitalium.

As a first step towards sequencing the chromosome of the suspected human pathogen Mycoplasma genitalium, we attempted to clone its entire genome in a set of ordered cosmids. Cosmid libraries were established by partial digestion of M. genitalium genomic DNA with Sau3AI or EcoRI. A chromosome-walking strategy was used to identify 20 overlapping cosmid clones which contained over 99% of the genome. The final 5.1 kb could not be cloned in cosmids, and was eventually obtained from a genomic library established in a lambda vector. Correspondence of cloned and genomic EcoRI fragments indicated no detectable major deletions or rearrangements in the library. The library was oriented on established XhoI and SmaI physical maps of the chromosome with restriction sites present at the expected locations in the library. The genome contained 74 EcoRI fragments which added up to a total genome size of 578 kb. These were arranged in a partial EcoRI physical map, and those containing the MgPa major attachment protein-encoding operon and its repeat sequences were identified. The existence of this ordered genomic library, which accurately and completely encompasses the entire M. genitalium genome, should serve as a valuable tool for many future studies of this organism and facilitate our long-term goal of sequencing its genome.

Bacterial Proteins↗

Promoter and intronic sequences of the human thiopurine S-methyltransferase (TPMT) gene isolated from a human PAC1 genomic library.

PURPOSE: To isolate and characterize the polymorphic human thiopurine S-methyltransferase (TPMT) gene. METHODS: The human TPMT gene was isolated by PCR screening of a phage artificial chromosome (PAC) library, using exon- and intron-specific primers, then mapped and sequenced. RESULTS: Two separate PAC1 clones were isolated that contained the same 25 kb gene with 9 exons encompassing the entire TPMT open reading frame. Structural characterization revealed distinct differences when compared to a TPMT gene previously isolated from a chromosome 6-specific human genomic library; the 5'-flanking region (putative promoter) contains 17 additional nucleotides located at position-77 upstream from the transcription start site, in addition to several nucleotide sequence differences, and intron 8 is only 1.6 kb, 5 kb shorter than previously reported. Southern and PCR analyses of genomic DNA from 18 unrelated individuals revealed only the TPMT gene structure corresponding to the PAC clones we isolated. Analysis of the TPMT promoter activity using the 5'-terminal region confirmed transcriptional activity in human HepG2 and CCRF-CEM cells. The 5'-flank is 71% GC rich and does not contain consensus sequences for TATA box or CCAAT elements. FISH analysis demonstrated the presence of the TPMT-homologous sequence on the short arm of chromosome 6 (sublocalized to 6p22). CONCLUSIONS: These findings establish the genomic structure of the human TPMT gene, revealing differences in the promoter and intronic sequences compared to that previously reported and providing a basis for future studies to further elucidate its biological function and regulation.

Bacteriophages↗

Versatile shuttle vectors and genomic libraries for use with Schizosaccharomyces pombe.

We have constructed a variety of pUC-based vectors designed for maintenance in Schizosaccharomyces pombe. These can be used for both gene bank construction and subcloning. Plasmids pUR18 and pUR19 are modifications of pUC vectors containing the Sc. pombe ars1 and ura4 sequences and retaining the lacZ XGal blue-white selection system for screening for DNA inserts. These vectors have been used to construct representative Sc. pombe and Saccharomyces cerevisiae genomic libraries. To assist in the creation of gene deletions, we have constructed another two plasmids. Combined with the technique of partially filling-in 5' overhangs created with restriction enzymes, these plasmids simplify the replacement of all or part of an open reading frame by a functional ura4 gene. Furthermore, such constructs can be excised with SfiI as a linear fragment for use in Sc. pombe transformations. When integrated into the Sc. pombe genome, the site of integration can be easily mapped by pulsed-field gel electrophoresis using the presence of a novel NotI site.

Base Sequence↗

Genomic libraries and a host strain designed for highly efficient two-hybrid selection in yeast.

The two-hybrid system is a powerful technique for detecting protein-protein interactions that utilizes the well-developed molecular genetics of the yeast Saccharomyces cerevisiae. However, the full potential of this technique has not been realized due to limitations imposed by the components available for use in the system. These limitations include unwieldy plasmid vectors, incomplete or poorly designed two-hybrid libraries, and host strains that result in the selection of large numbers of false positives. We have used a novel multienzyme approach to generate a set of highly representative genomic libraries from S. cerevisiae. In addition, a unique host strain was created that contains three easily assayed reporter genes, each under the control of a different inducible promoter. This host strain is extremely sensitive to weak interactions and eliminates nearly all false positives using simple plate assays. Improved vectors were also constructed that simplify the construction of the gene fusions necessary for the two-hybrid system. Our analysis indicates that the libraries and host strain provide significant improvements in both the number of interacting clones identified and the efficiency of two-hybrid selections.

Base Sequence↗

A human genomic library enriched in transcriptionally active sequences (aDNA library).

Core histone hyperacetylation, in particular of H4, is concentrated in the promoter-upstream regions of active genes and in certain cases is locuswide. Antibodies to hyperacetylated H4 were used to immunoprecipitate dinucleosomal chromatin derived from K562 human erythroleukemic cells by micrococcal nuclease digestion. The extracted DNA was made into a genomic library and was expected to contain sequences from genes active in K562 cells (an active, 'aDNA' library). Clones (180) were randomly selected from the library; 24 of 103 tested (23%) contained highly repeated sequences, as determined by their hybridization to total genomic DNA, and were not analyzed further. An additional 10 clones (6%) were shown to contain no insert DNA. The remaining 146 were sequenced and compared with the nucleic acid databases and in all six frames to the protein databases: Sixeen clones could be assigned to known genes, the majority of which (12) were tissue specific. All but 2 of these 16 corresponded to segments 5' of the coding sequences, as expected if H4 acetylation is concentrated at promoter regions. Thirty-three clones (23%) displayed high sequence identity to cDNAs in the expressed sequence tag database (dbEST). Northern blots and reverse transcription (RT)-PCR were used to determine the proportion of clones representing sequences expressed in K562 cells: Although only 1 of 34 tested clones showed a band in Northern hybridization, RT-PCR demonstrated that at least 12 of 40 tested clones (30%) were present in the mRNA population. Because a further 8 of these 40 clones were identified as gene fragments by database sequence comparisons, it follows that about half of this subset of 40 clones is derived from genes. The aDNA library is thus very gene rich and not skewed toward the most highly expressed sequences, as in mRNA libraries. The aDNA library is also rich in promoters and could be a valuable source of such sequences, particularly those that lack CpG islands or other features that allow their specific selection.

Blotting, Northern↗

Genetic selection for and molecular dynamic modeling of a protein transmembrane domain multimerization motif from a random Escherichia coli genomic library.

In order to identify new transmembrane helix packing motifs in naturally occurring proteins, we have selected transmembrane domains from a library of random Escherichia coli genomic DNA fragments and screened them for homomultimerization via their abilities to dimerize the bacteriophage lambda cI repressor DNA-binding domain. Sequences were isolated using a modified lambda cI headpiece dimerization assay system, which was shown previously to measure transmembrane helix-helix association in the E. coli inner membrane. Screening resulted in the identification of several novel sequences that appear to mediate helix-helix interactions. One sequence, representing the predicted sixth transmembrane domain (TM6) of the E. coli protein YjiO, was chosen for further analysis. Using site-directed mutagenesis and molecular dynamics, a small set of models for YjiO TM6 multimerization interface interactions were generated. This work demonstrates the utility of combining in vivo genetic tools with computational systems for understanding membrane protein structure and assembly.

Amino Acid Motifs↗

Coleopterancidal delta-endotoxin and constructing its genomic library.

The composition of crystal proteins and plasmid patterns in five new coleopterancidal strains of Bacillus thuringiensis were investigated. Larvae of Plagiodera versicolora were chosen as a model insect in bioassay. Strain YM-03 had the highest toxicity. Plasmid patterns were detected by rapid agarose gel electrophoresis. It was demonstrated that plasmid patterns of five Bt strains were quite different. The partial amino acid sequences of the N-terminal of crystal protein from YM-03 were analyzed by amino acid analyzer. A genomic library of delta-endotoxin of YM-03 was constructed. The EcoRI fragments (20-30 kb) from the total DNA were ligated with the vector DNA of pLAFRI. Thirteen clones which contained both of pLAFRI and foreign DNA fragments were obtained from 17 recombined plasmids. The frequency of recombinant clones was 76%. Three positive clones, LE392 (pBYM2), LE392 (pBYM3) and LE392 (pBYM4) were detected from 1200 resistant clones by using a synthesized 18bp probe from a coleopterancidal delta-endotoxin gene. It was shown that LE392 (pBYM3) and LE392 (pBYM4) had the same EcoRI digestion patterns and that they all contained coleoptera-specific delta-endotoxin gene but showed a different level of expression.

Amino Acid Sequence↗

Cloning of open reading frames and promoters from the Saccharomyces cerevisiae genome: construction of genomic libraries of random small fragments.

We have developed a novel efficient method, carrier-facilitated insertion, to insert small (150-600 bp) DNA fragments into plasmid vectors. This method employs a carrier segment of vector DNA to circumvent the difficulties in ligating two fragments together to generate a recombinant circle efficiently. We have used carrier-facilitated insertion to construct three genomic libraries of random (DNase I-generated) fragments from the Saccharomyces cerevisiae genome. One of these was an expression library, and the other two were promoter-cloning libraries. 87-90% of the Escherichia coli colonies in each library contained recombinant plasmids, and less than 3% of the recombinants contained more than one insert. Detection of open reading frames among the inserts in the expression library was accomplished by testing for beta-galactosidase activity. This methodology, unencumbered by the intrinsic disproportionality of cDNA libraries, can be used to identify and clone DNA that codes for a specific antigenic determinant. When used in combination with a method to detect and isolate random constitutive, repressible and inducible yeast promoters, these libraries should permit a comprehensive analysis of the yeast genome and its expression.

Cloning, Molecular↗

Isolation of 105 microsatellite loci from an ovine genomic library enriched for microsatellites.

This paper reports on the development of a small-insert (approximately 700 bp) total-genomic library for sheep specifically designed for enrichment for microsatellite (ms) loci. Four enriched libraries were prepared by amplification of the primary library with CA15, CA11, TG15 and TG11 oligonucleotide primers. A total of 11,020 clones was recovered, screened for dinucleotide repeats and over 500 positive clones sequenced. Sequence analysis indicated low clone redundancy and yielded 105 new ovine ms loci. Seventy-two percent of the new loci were found to be polymorphic in the sires of the AgResearch International Mapping Flock (IMF). The 105 new microsatellite loci increase the number of microsatellites available for sheep by >7%.

Animals↗

Retro-recombination screening of a mouse embryonic stem cell genomic library.

Targeted gene disruption is an important tool in molecular medicine, allowing for the generation of animal models of human disease. Conventional methods of targeting vector (TV) construction are difficult and represent a rate limiting step in any targeting experiment. We previously demonstrated that bacteriophage are capable of acting as TVs directly, obviating the requirement for 'rolling out' plasmids from primary phage clones and thus eliminating an additional, time consuming step. We have also developed methods which facilitate the construction of TVs using recombination. In this approach, modification cassettes and point mutations are shuttled to specific sites in phage TVs using phage-plasmid recombination. Here, we report a further improvement in TV generation using a recombination screening-based approach deemed 'retro-recombination screening' (RRS). We demonstrate that phage vectors containing specific genomic clones can be genetically isolated from a lambdaTK embryonic stem cell genomic library using a cycle of integrative recombination and condensation. By introducing the gam gene of bacteriophage lambda into the probe plasmid it is possible to select for positive clones which have excised the plasmid, thus returning to their native conformation following purification from the library. Rapid clone isolation using the RRS protocol provides another method by which the time required for TV construction may be further reduced.

Animals↗

Filter transfer of genomic libraries in a state accessible to DNA-binding proteins.

I have developed a method for transferring plaque DNA of lambda genomic libraries onto 3MM filters in a state accessible to DNA-binding proteins. DNA bound to 3MM is available to proteins as large as Escherichia coli RNA polymerase and maintains template activity similar to that in free solution. Lambda Plaques can be lifted onto 3MM filter disks, deproteinized, and used for transcription assays in vitro. The RNA synthesized is complementary to phage rather than to E. coli DNA and plaques can be identified by autoradiography. Furthermore, the filters can subsequently be probed with radioactive nucleic acids under standard hybridization conditions. Finally, colorimetric assays can be employed with lactate dehydrogenase (LDH) A in which plaques are identified by the localized reduction of nitroblue tetrazolium.

Animals↗

A versatile shuttle cosmid vector for the efficient construction of genomic libraries and for the cloning of fungal genes.

A shuttle cosmid vector, pANsCos1, has been constructed for Escherichia coli and filamentous fungi. This vector contains two cos sequences separated by a single XbaI restriction site. pANsCos1 allows the efficient construction of representative genomic libraries from as little as 15-20 micrograms of genomic DNA. Due to the presence of a functional hygromycin B phosphotransferase gene (hph) transformation of fungal protoplasts with pAN-sCos1, or derivatives of it, results in the formation of hygromycin B-resistant transformants. The T7 and T3 RNA polymerase promoter sequences flanking the cloning site, in combination with two adjacent NotI sites facilitate genomic walking and the rapid construction of restriction maps of cloned inserts.

Cloning, Molecular↗

Use of a recombination-deficient phage lambda system to construct wheat genomic libraries.

The poor cloning efficiency of wheat (Triticum aestivum cv. Yamhill) DNA in conventional cloning vectors has previously prevented the preparation of complete genomic libraries. We show here that while wheat DNA does not clone efficiently using the vector Ch4A, it can be cloned efficiently using Ch32. Ch32 clones are red- gam+ and therefore can be propagated on recombination-deficient hosts. These results suggest that instability of wheat sequences in conventional lambda vector systems has frustrated previous attempts to prepare libraries.

Bacteriophage lambda↗

Isolation of a series of HLA class I clones from a human chromosome 6 genomic library.

Human metaphase chromosomes were fractionated by a fluorescent-activated cell sorter (FACS II) and the chromosome 6 fraction was sorted. A genomic library was constructed in lambda gtWES cloning arms using a partial EcoRI digest of the chromosomal DNA. We estimate that at least 60% of our library represents chromosome 6 material, and as 1.2 x 10(5) recombinants were obtained, this indicates that the majority of clonable chromosome 6 sequences are represented. The library was screened with a mouse H-2 class I clone and 18 HLA class I recombinants were isolated from 4 x 10(4) plaques.

Cell Fractionation↗

Cloning of apoprotein AI gene and observation on DNA polymorphism of apoprotein AI/CIII gene-loci in genomic library from a liver of Chinese.

For the research on the structure and function of the HDL apoproteins, we have successfully constructed a complete genomic library, in self-prepared EMBL3 lambda vector and the packaging extracts of lysogenic strains BHB2688, BHB2690, from a Chinese fetal liver, which will be widely used in the research on the structure and function of apoproteins. In this study, a DNA sequence polymorphism, revealed by digestion of human DNA with the restriction endonuclease Sst1 and hybridization with an apoprotein AI cDNA probe, has been shown to be located at apoAI/CIII gene-loci. Three gene related fragments (5.7 Kb, 4.0 Kb and 3.0 Kb) were detected. The 5.7 Kb fragment is common and the polymorphism is demonstrated by the presence of either a 4.0 Kb fragment (S1 allele) or the 3.0 Kb fragment (S2 allele). Individuals were genotyped S1S1 or S1S2. Our result showed that the frequency of genotype S1S2 was higher in hypertriglyceridemic subjects than that in normolipidemic subjects.

Apolipoprotein A-I↗

Optimizing restriction fragment fingerprinting methods for ordering large genomic libraries.

We present a statistical analysis of the problem of ordering large genomic cloned libraries through overlap detection based on restriction fingerprinting. Such ordering projects involve a large investment of effort involving many repetitious experiments. Our primary purpose here is to provide methods of maximizing the efficiency of such efforts. To this end, we adopt a statistical approach that uses the likelihood ratio as a statistic to detect overlap. The main advantages of this approach are that (1) it allows the relatively straightforward incorporation of the observed statistical properties of the data; (2) it permits the efficiency of a particular experimental method for detecting overlap to be quantitatively defined so that alternative experimental designs may be compared and optimized; and (3) it yields a direct estimate of the probability that any two library members overlap. This estimate is a critical tool for the accurate, automatic assembly of overlapping sets of fragments into islands called "contigs." These contigs must subsequently be connected by other methods to provide an ordered set of overlapping fragments covering the entire genome.

Genomic Library↗

Cloning of genes encoding pectolytic enzymes from a genomic library of the phytopathogenic bacterium, Erwinia chrysanthemi.

Erwinia chrysanthemi are phytopathogenic enterobacteria causing soft-rot disease due to pectolytic enzymes degrading plant cell walls. We constructed a genomic library from Sau3A-digested E. chrysanthemi B374 DNA cloned in the BamHI site of the broad-host-range cosmid pMMB33 grown in Escherichia coli. Out of 1500 kanamycin-resistant (KmR) transductants of E. coli, nine pectolytic-enzyme-positive clones were identified. One of these contained the pEW325 cosmid with a 35-kb insert of Erwinia DNA. Cell extracts of E. coli harboring the cosmid pEW325 were fractionated on a polyacrylamide electrofocusing gel; bands with pectolytic activity were found to co-focus with pectolytic enzymes of E. chrysanthemi B374 strain. Cosmid pEW325 encodes three pectolytic enzymes PL10, PL20 and PL130 with isoelectric points of about 9.3, 9.2 and 4.6, respectively. These enzymes are lyases that cleave polygalacturonate by transelimination, and give rise to unsaturated products. A 15-kb HindIII fragment coding for polygalacturonate lyases was subcloned in pBR322, and a physical map of the resulting plasmid pPL01 was constructed. Starting from the pPL01, various endonuclease-generated fragments were subcloned into pBR322. Genes encoding pectate lyases were localized within an 8-kb fragment (pPL04) and then in a 2.7-kb fragment (pPL03). Polygalacturonate lyases are expressed at various levels; they accumulated in the periplasmic space of E. coli host, whereas E. chrysanthemi secreted these enzymes into the culture medium.

Chromosome Mapping↗

Nucleotide sequence and expression in E. coli of a human interferon-alpha gene selected from a genomic library using synthetic oligonucleotides.

The complete nucleotide sequence of a human interferon-alpha gene is reported. The gene, designated IFN-alpha M1, was isolated from a human genomic library in phage lambda Charon 4A using synthetic oligonucleotides as hybridization probes. Based on a comparison of nucleotide sequence data obtained from this recombinant phage with published interferon-alpha gene sequences, a region of DNA capable of coding for a pre-interferon of 189 amino acids was identified. An AluI fragment containing the coding region for the mature interferon was inserted into the HincII site of the phage M13mp11, resulting in a fusion of portions of the IFN-alpha M1 and the beta-galactosidase genes. Antiviral activity was detected in extracts from E. coli infected with the recombinant M13 phage carrying the fused gene. The antiviral activity was completely neutralized by antibodies to human interferon-alpha.

Amino Acid Sequence↗