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Correction of adenosine deaminase deficiency in cultured human T and B cells by retrovirus-mediated gene transfer.

A retroviral vector called SAX, containing the cloned human cDNA for adenosine deaminase (ADA), has been constructed and used to introduce the ADA gene into cultured T- and B-lymphocyte lines derived from patients with ADA deficiency. DNA analysis showed that the SAX vector was inserted intact into the T and B cells at approximately one copy per cell. The treated cells produced the characteristic isozymes of human ADA at a level similar to normal T and B lymphocytes. It is known that ADA-deficient lymphocytes are unusually sensitive to high levels of 2'-deoxyadenosine, and this is the mechanism thought to underlie the selective lymphocytotoxicity associated with ADA deficiency in vivo. Expression of the introduced ADA gene was sufficient to reverse the hypersensitivity of these genetically deficient lymphocytes to 2'-deoxyadenosine toxicity. These results support the suggestion that retroviral vector gene-delivery systems show promise for application to human gene therapy.

Adenosine Deaminase↗

Direct screening of recombinants in gram-positive bacteria using the secreted staphylococcal nuclease as a reporter.

A system for direct screening of recombinant clones in Lactococcus lactis, based on secretion of the staphylococcal nuclease (SNase) in the organism, was developed. The nuc gene (encoding SNase) was cloned on both rolling-circle and theta-replicating plasmids. L. lactis strains containing these nuc+ plasmids secrete SNase and are readily detectable by a simple plate test. A multicloning site (MCS) was introduced just after the cleavage site between leader peptide and the mature SNase, without affecting nuclease activity. Cloning foreign DNA fragments into any site of the MCS interrupts nuc and thus results in nuc mutant clones which are easily distinguished fron nuc+ clones on plates. The utility of this system for L. lactis was demonstrated by cloning an antibiotic resistance marker and Escherichia coli chromosomal DNA fragments into the MCS of the nucMCS cassette. Both cloning vectors containing the nucMCS cassette were also introduced into Streptococcus salivarius subsp. thermophilus, in which direct screening of nuc mutant recombinant clones was also achieved. The potential uses of nuc as a secretion reporter system are discussed.

Base Sequence↗

Expression of the S. aureus hysA gene in S. carnosus from a modified E. coli-staphylococcal shuttle vector.

We have modified an E. coli-staphylococcal shuttle vector for use in the general cloning and expression of genes from pathogenic staphylococci in Staphylococcus carnosus. As S. carnosus is non-pathogenic, this expression system will facilitate the study of the roles of individual gene products in the disease process. To evaluate the use of this expression system, a DNA fragment containing the Staphylococcus aureus hyaluronate lyase (hysA) gene was cloned into the modified vector, pNW21, and introduced into S. carnosus. Hyaluronate lyase was both produced and secreted by S. carnosus. In addition, the secreted HysA protein was enzymatically active, as determined using a zymographic assay.

Base Sequence↗

EcoK selection vectors for shotgun cloning into M13 and deletion mutagenesis.

For shotgun cloning into M13 vectors, a double-stranded cassette of synthetic oligonucleotides containing a SmaI site within the two halves of an EcoK site, has been introduced into the vector M13mp8. Cloning of blunt end DNA into the SmaI site destroys the EcoK site, and recombinants are therefore preferentially selected on transfection into a K strain of E.coli. For deletion mutagenesis using synthetic oligonucleotides, an M13 vector with four copies of the EcoK cassette has been made to facilitate the joining of lacZ or a Factor Xa cleavage site to any protein reading frame.

Base Sequence↗

Construction of a Helicobacter pylori-Escherichia coli shuttle vector for gene transfer in Helicobacter pylori.

In this study, a Helicobacter pylori-Escherichia coli shuttle vector was constructed for transferring DNA into H. pylori. The smallest cryptic plasmid (1.2 kb), pHP489, among those harbored by 77 H. pylori isolates was selected as a base replicon for constructing vectors. HindIII-digested pHP489 was ligated with a kanamycin resistance gene [aph(3')-III], which originated from Campylobacter jejuni, to produce the recombinant plasmid pHP489K. pHP489K was efficiently transformed into and stably maintained in H. pylori strains. The shuttle vector pBHP489K (3.6 kb) was constructed by the recombination of pHP489, ColE1, and aph(3')-III sequences. pBHP489K was reciprocally transformed into and maintained in both H. pylori and E. coli. Introduction of the shuttle vector clone DNA (pBHP489K/AB; 6.7 kb), containing the ureA and ureB genes of H. pylori, into urease-negative mutants of H. pylori led to the restoration of their urease activity. The transformants were confirmed to contain the incoming plasmid DNA. pBHP489K satisfied the requirements for an H. pylori-E. coli shuttle vector, implying that it might be a useful vector for investigating pathogenicity and restriction-modification systems of H. pylori.

Cloning, Molecular↗

Masking of retroviral envelope functions by oligomerizing polypeptide adaptors.

We have constructed chimeric retroviral envelopes displaying N-terminal polypeptides that are known to form homotrimeric associations. The amphotropic receptor (RAM-1) binding domain from the trimeric surface (SU) glycoprotein of 4070A murine leukemia virus (MLV)-inhibited ecotropic receptor (Rec-1) mediated infection by the SU glycoprotein of Moloney MLV when grafted to its N-terminus. The block to Rec-1-mediated infection was reversed when the RAM-1 binding domain was cleaved from the vector particles using an engineered factor Xa protease-sensitive cleavage signal between the envelope glycoprotein and its N-terminal extension. Trimeric leucine zipper peptides and the trimeric C-terminal domain of CD40 ligand were shown to inhibit RAM-1-mediated infection of NIH3T3 cells by the 4070A envelope when fused to its N-terminus, whereas monomeric helical peptides and the monomeric epidermal growth factor domain did not. The block to RAM-1-mediated infection was reversed when the trimeric polypeptides were cleaved from the vector particles by addition of factor Xa protease. Envelope binding assays using cleaved and uncleaved chimeric 4070A envelopes revealed that binding to RAM-1 receptors on mammalian cells was hindered by trimeric, but not by monomeric, N-terminal polypeptides. These results have important implications for the design of protease-activatable vectors for targeted gene delivery.

3T3 Cells↗

Genetic manipulation of antibiotic-producing Streptomyces.

The genetic manipulation of Streptomyces species has been facilitated by the development of versatile cloning vectors, robust gene transfer systems and transposable elements. These molecular genetic tools have been used to construct antibiotic-producing strains with improved properties and recombinants for the production of hybrid glycopeptide and macrolide antibiotics, novel anthelminthic agents and novel cytotoxic anthracyclines.

Anthelmintics↗

An improved cloning vector for construction of gene replacements in Listeria monocytogenes.

Listeria monocytogenes is a gram-positive, facultative intracellular bacterium implicated in severe food-borne illness (listeriosis) in humans. The construction of well-defined gene replacements in the genome of L. monocytogenes has been instrumental to several genetic studies of the virulence and other attributes of the organism. Construction of such mutations by currently available procedures, however, tends to be labor intensive, and gene replacement mutants are sometimes difficult to recover due to lack of direct selection for the construct. In this study we describe the construction and use of plasmid vector pGF-EM, which can be conjugatively transferred from Escherichia coli S17-1 to L. monocytogenes and which provides the genetic means for direct selection of gene replacements.

ATP-Dependent Proteases↗

Modulation of adenovirus vector tropism via incorporation of polypeptide ligands into the fiber protein.

The efficacy of adenovirus (Ad)-based gene therapy might be significantly improved if viral vectors capable of tissue-specific gene delivery could be developed. Previous attempts to genetically modify the tropism of Ad vectors have been only partially successful, largely due to the limited repertoire of ligands that can be incorporated into the Ad capsid. Early studies identified stringent size limitations imposed by the structure of the Ad fiber protein on ligands incorporated into its carboxy terminus and thus limited the range of potential ligand candidates to short peptides. We have previously identified the HI loop of the fiber knob domain as a preferred site for the incorporation of targeting ligands and hypothesized that the structural properties of this loop would allow for the insertion of a wide variety of ligands, including large polypeptide molecules. In the present study we have tested this hypothesis by deriving a family of Ad vectors whose fibers contain polypeptide inserts of incrementally increasing lengths. By assessing the levels of productivity and infectivity and the receptor specificities of the resultant viruses, we show that polypeptide sequences exceeding by 50% the size of the knob domain can be incorporated into the fiber with only marginal negative consequences on these key properties of the vectors. Our study has also revealed a negative correlation between the size of the ligand used for vector modification and the infectivity and yield of the resultant virus, thereby predicting the limits beyond which further enlargement of the fiber knob would not be compatible with the virion's integrity.

Adenoviruses, Human↗

Engineering zucchini yellow mosaic potyvirus as a non-pathogenic vector for expression of heterologous proteins in cucurbits.

Plant virus vectors provide an attractive biotechnological tool for the transient expression of foreign genes in whole plants. As yet there has been no use of recombinant viruses for the improvement of commercial crops. This is mainly because the viruses used to create vectors usually cause significant yield loss and can be transmitted in the field. A novel attenuated zucchini yellow mosaic potyvirus (AG) was used for the development of an environmentally safe non-pathogenic virus vector. The suitability of AG as an expression vector in plants was tested by analysis of two infectious viral constructs, each containing a distinct gene insertion site. Introduction of a foreign viral coat protein gene into AG genome between the P1 and HC-Pro genes, resulted in no expression in planta. In contrast, the same gene was stably expressed when inserted between NIb and CP genes, suggesting that this site is more suitable for a gene vector. Virus-mediated expression of reporter genes was observed in squash and cucumber leaves, stems, roots and edible fruit. Furthermore, AG stably expressed human interferon-alpha 2, an important human anti-viral drug, without affecting plant development and yield. Interferon biological activity was measured in cucumber and squash fruit. Together, these data corroborate a biotechnological utility of AG as a non-pathogenic vector for the expression of a foreign gene, as a benefit trait, in cucurbits and their edible fruit.

Amino Acid Sequence↗

Design of an HIV-1 lentiviral-based gene-trap vector to detect developmentally regulated genes in mammalian cells.

The recent development of HIV-1 lentiviral vectors is especially useful for gene transfer because they achieve efficient integration into nondividing cell genomes and successful long-term expression of the transgene. These attributes make the vector useful for gene delivery, mutagenesis, and other applications in mammalian systems. Here we describe two HIV-1-based lentiviral vector derivatives, pZR-1 and pZR-2, that can be used in gene-trap experiments in mammalian cells in vitro and in vivo. Each lentiviral gene-trap vector contains a reporter gene, either beta-lactamase or enhanced green fluorescent protein (EGFP), that is inserted into the U3 region of the 3' long terminal repeat. Both of the trap vectors readily integrate into the host genome by using a convenient infection technique. Appropriate insertion of the vector into genes causes EGFP or beta-lactamase expression. This technique should facilitate the rapid enrichment and cloning of the trapped cells and provides an opportunity to select subpopulations of trapped cells based on the subcellular localization of reporter genes. Our findings suggest that the reporter gene is driven by an upstream, cell-specific promoter during cell culture and cell differentiation, which further supports the usefulness of lentivirus-based gene-trap vectors. Lentiviral gene-trap vectors appear to offer a wealth of possibilities for the study of cell differentiation and lineage commitment, as well as for the discovery of new genes.

Animals↗

Replacement vectors for localized gene cloning in the specified region of Streptomyces lividans 66 and model method for the screening of desired recombinants via counter-selection.

Two DNA fragments (3.5 kb and 3.8 kb in size) flanking both ends of the phi HAU3R gene in the genome of Streptomyces lividans 66 were determined and cloned in their natural relative orientations in pIJ653, a cosmid vector derived from the multi-copy Streptomyces plasmid pIJ101, resulting in pHZ806. After insertion of spectinomycin/streptomycin (spc/str) resistance gene into the pIJ101 replication region in pHZ806 and insertion of a hygromycin (hyg) resistance gene between 3.5 kb and 3.8 kb DNA fragments, a new vector with a non-functional Streptomyces replicon, pHZ808, was obtained. In principle, any DNA fragment cloned between 3.5 kb and 3.8 kb fragments of this vector can be stably integrated between the two corresponding regions after introduction into the wild-type S.lividans strains, with synchronous replacement of the DNA between the two regions of the chromosome within which phi HAU3R gene is located. The resultant recombinant strains will thus become phi HAU3-sensitive (phi HAU3S). This phenotype could serve as a good indication that the desired gene replacement has occurred. This principle was demonstrated to be successful using pHZ808 as vector. phi HAU3-resistance gene (phi HAU3R) from the genome of S.lividans 66 was substituted by the hygromycin resistance gene (hyg) from pHZ808. An additional advantage of using pHZ808 as the vector to clone foreign genes is that hyg could be served as a reportor gene to imply that foreign DNA fragment has been co-integrated with hyg. The recombinants will have both hygR and phi HAU3S.

Anti-Bacterial Agents↗

High efficiency gene transfer to the central nervous system of rodents and primates using herpes virus vectors lacking functional ICP27 and ICP34.5.

The safe and efficient use of herpes simplex virus (HSV)-based vectors to deliver genes of potentially therapeutic benefit to the central nervous system will require their effective disablement by the inactivation of viral genes required for lytic growth. Here we report that viruses lacking functional genes for ICP27 (which is required for growth in all cell types) and ICP34.5 (which is required for growth in nondividing cell types) can deliver a marker gene to both the rodent and primate CNS with high efficiency whilst producing relatively minimal damage and having no effect on sodium currents in dorsal root ganglion neurons. Such viruses paradoxically deliver genes at much higher efficiency than the less disabled single mutant lacking ICP34.5 alone and also, as expected, produce less damage in vivo. Moreover, unlike the single mutant lacking ICP27 the double mutant viruses cannot revert to wild-type by acquistion of complimenting gene sequences during growth of virus stocks in vitro on dividing cells expressing ICP27 since artificial expression of ICP34.5 in these cells is not required. Such ICP27-; ICP34.5- viruses thus offer a platform for the development of vectors which are sufficiently safe for ultimate use in human gene therapy.

Animals↗

Replication and packaging of helper-dependent adenoviral vectors.

A helper-dependent adenovirus vector (HD AdV) that lacks all the coding sequences of viral proteins from the vector backbone was developed to overcome the problem of host cellular immune responses against E1-deleted AdV. One of the limitations of the current HD AdV system is its relatively inefficient propagation compared with that of E1-deleted AdV, which deters application of the HD AdV, especially in large animal models. We hypothesized that the low titers might be due in part to defects in replication and packaging of the vector DNA. We propagated two HD AdVs with similar marker gene cassettes and stuffer sequences, using two different helper viruses, and determined the replication and packaging efficiencies of viral DNA. Our analysis indicated a difference in replication and packaging efficiencies between the two vectors, which resulted in different propagation efficiencies. Furthermore, dl309, which is similar to the wild-type virus, demonstrated superior helper function over that of the loxP-containing helper virus, AdLC8cluc. These findings may have significant implications for the design of improved production systems of HD AdVs.

Adenoviridae↗

Introduction of foreign DNA into mycobacteria using a shuttle phasmid.

Mycobacteria are major pathogens of man and animals. There are approximately 10 million cases of tuberculosis world wide with an annual mortality of three million people. Leprosy, caused by Mycobacterium leprae, afflicts over ten million people, primarily in developing countries. M. tuberculosis and mycobacteria of the M. avium-intracellulare-scrofulaceum (MAIS) group are major opportunistic pathogens of patients with acquired immune deficiency syndrome (AIDS). M. paratuberculosis is the cause of Jöhne's disease in cattle. Yet, BCG (Bacille Calmette-Guerin), an avirulent strain of M. bovis, is the most widely used human vaccine in the world, having been administered to about 2.5 X 10(9) people since 1948 (ref. 4). BCG was highly protective against tuberculosis in England, but has been found not to be effective in preventing pulmonary tuberculosis in adults in Southern India. We have initiated studies to develop the methodology for efficient gene transfer in mycobacteria. We have constructed recombinant shuttle phasmids which are chimaeras containing mycobacteriophage DNA into which an E. coli cosmid is inserted. They can replicate in E. coli as plasmids and in mycobacteria as phages, and transfer DNA across both genera. These shuttle vectors permit for the first time the introduction of foreign DNA by infection into M. smegmatis and BCG. By introducing and ultimately expressing genes for protective antigens for a variety of pathogens, it may be possible to develop cultivatable mycobacteria into useful multivaccine vehicles.

Bacteriophages↗

[Construction of the mutants of rice nonspecific lipid transfer protein and expression comparison in two kinds of thioredoxin fusion expression vectors].

Five structural important residues of rice nonspecific lipid transfer protein LTP110 were mutated by site-directed mutagenesis. Sequence results showed that they were all mutated successfully. After trying various E. coli expression systems, thioredoxin fusion expression system was found to be a proper system to express wild type and mutant LTP110. cDNA sequences encoding wild type LTP110 and the mutants Y17A, P72L, R46A, D43A, C50A were cloned into two kinds of thioredoxin fusion expression vectors. The expression results were compared. In pTrxFus/GI724 expression system, wild type LTP110 and the mutants Y17A, P72L, R46A could be expressed at low level while D43A and C50A could not be expressed normally; in pET32a(+)/BL21 (DE3) trxB- expression system, wild type LTP110 and all mutant proteins could be expressed very well and the levels were higher than that in pTrxFus/GI724 system. LTP110 fusion protein expressed in pET32a(+) vector was purified and its activity was checked by fluorescence labeled fatty acid. Results indicated that the recombinant LTP110 fusion protein has lipid binding activity. This work provides good basis for the further study.

Amino Acid Sequence↗

Construction of high, intermediate and low-copy-number promoter-probe plasmids for Bacillus subtilis.

We constructed promoter-probe plasmids for Bacillus subtilis based on the promoterless gene for penicillinase (penP) of Bacillus licheniformis. A Bacillus stearothermophilus DNA fragment, which contained translational stop codons for all three reading frames and transcription terminators of the alpha-amylase gene, was inserted upstream from the Shine-Dalgarno sequence for the penP gene. A low-copy-number plasmid (about 10 copies per chromosome), pPF101, carried tetracycline-resistance gene, whereas another high-copy-number plasmid (about 55 copies per chromosome), pPF201, conferred resistance to kanamycin. The intermediate-copy-number plasmids (about 20 copies per chromosome), pPF001, pPF002, pPF011 and pPF012, conferred chloramphenicol resistance to both B. subtilis and Escherichia coli. Vector plasmids, pPF011 and pPF012, were provided with single cloning sites for BamHI, SacI, SmaI and XbaI upstream from the protein coding region of penP, whereas other plasmids contained only unique BamHI cloning sites. The applicability of these plasmids was demonstrated by cloning a promoter for the alpha-amylase gene.

Bacillus subtilis↗

The mobile element IS1207 of Brevibacterium lactofermentum ATCC21086: isolation and use in the construction of Tn5531, a versatile transposon for insertional mutagenesis of Corynebacterium glutamicum.

IS1207 is the insertion most frequently found among the spontaneous mutations that abolish the activity of an Escherichia coli phage lambda cI gene integrated in the Corynebacterium Brevibacterium lactofermentum ATCC21086 genome. We examined the transposition of transposon-like structures composed of a selective kanamycin resistance gene (aph3), and one or two IS1207 sequences. One of these, the Tn5531 transposon, transposed efficiently in Corynebacterium glutamicum. A replicative and a non-replicative Tn5531 delivery vector were used in Tn5531 mutagenesis. As IS1207, transposon Tn5531 shows a high frequency of transposition and mutagenesis, and a low target specificity. These features make of Tn5531 an adequate choice for gene identification and gene tagging experiments.

Brevibacterium↗