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Biomedical subjects

W J Bowers

Publications and source records attributed to W J Bowers.

At least 19 recordsLinked to original sources

Improved HSV-1 amplicon packaging using virion host shutoff mutants lacking mRNAse activity.

Given their generous transgene capacity and inherent neurotropism, herpes simplex virus (HSV-1)-based viral vectors are promising tools for gene delivery to the central nervous system. Despite their widespread pre-clinical use, vector toxicity remains a concern with regard to the use of herpes vectors in humans. One potential source of toxicity stems from the tegument-associated virion host shutoff protein (vhs), which induces translational arrest in the host cell through non-specific mRNAse activity. In the current study we utilized a series of HSV-1 viruses containing a deletion in the U(L)41 open reading frame to investigate: (1) the requirement of intact vhs function in amplicon packaging and (2) whether vhs influences the post-transduction survival of dissociated cortical neurons. Our results demonstrate that while amplicon yield was reduced an order of magnitude, U(L)41 deletion was associated with reduced vector toxicity. Furthermore, partial reconstitution of vhs function using mRNAse-inactive point mutants improved amplicon titers without imparting the toxicity observed with wild-type controls. These findings offer a novel approach to improving the titer and toxicity profiles of HSV-based viral vectors.

Animals↗

HSV amplicon delivery of glial cell line-derived neurotrophic factor is neuroprotective against ischemic injury.

Direct intracerebral administration of glial cell line-derived neurotrophic factor (GDNF) is neuroprotective against ischemia-induced cerebral injury. Utilizing viral vectors to deliver and express therapeutic genes presents an opportunity to produce GDNF within localized regions of an evolving infarct. We investigated whether a herpes simplex virus (HSV) amplicon-based vector encoding GDNF (HSVgdnf) would protect neurons against ischemic injury. In primary cortical cultures HSVgdnf reduced oxidant-induced injury compared to the control vector HSVlac. To test protective effects in vivo, HSVgdnf or HSVlac was injected into the cerebral cortex 4 days prior to, or 3 days, after a 60-min unilateral occlusion of the middle cerebral artery. Control stroke animals developed bradykinesia and motor asymmetry; pretreatment with HSVgdnf significantly reduced such motor deficits. Animals receiving HSVlac or HSVgdnf after the ischemic insult did not exhibit any behavioral improvement. Histological analyses performed 1 month after stroke revealed a reduction in ischemic tissue loss in rats pretreated with HSVgdnf. Similarly, these animals exhibited less immunostaining for glial fibrillary acidic protein and the apoptotic marker caspase-3. Taken together, our data indicate that HSVgdnf pretreatment provides protection against cerebral ischemia and supports the utilization of the HSV amplicon for therapeutic delivery of trophic factors to the CNS.

Animals↗

Immune responses to replication-defective HSV-1 type vectors within the CNS: implications for gene therapy.

Herpes simplex virus (HSV) is a naturally occurring double-stranded DNA virus that has been adapted into an efficient vector for in vivo gene transfer. HSV-based vectors exhibit wide tropism, large transgene size capacity, and moderately prolonged transgene expression profiles. Clinical implementation of HSV vector-based gene therapy for prevention and/or amelioration of human diseases eventually will be realized, but inherently this goal presents a series of significant challenges, one of which relates to issues of immune system involvement. Few experimental reports have detailed HSV vector-engendered immune responses and subsequent resolution events primarily within the confines of the central nervous system. Herein, we describe the immunobiology of HSV and its derived vector platforms, thus providing an initiation point from where to propose requisite experimental investigation and potential approaches to prevent and/or counter adverse antivector immune responses.

Animals↗

Dendritic cells transduced with HSV-1 amplicons expressing prostate-specific antigen generate antitumor immunity in mice.

There is currently much interest in generating cytotoxic T lymphocyte (CTL) responses against tumor antigens as a therapy for cancer. This work describes a novel gene transfer technique utilizing dendritic cells (DCs), an extremely potent form of antigen-presenting cell (APC), and herpes simplex virus-1 (HSV-1) amplicons. HSV-1 amplicons are plasmid-based viral vectors that are packaged into HSV-1 capsids, but lack viral coding sequences. Amplicon vectors have been constructed that encode the model tumor antigen ovalbumin (HSV-OVA) and human prostate-specific antigen (HSV-PSA), a protein that is expressed specifically in prostate epithelium and prostate carcinoma cells. These amplicons were packaged using a helper virus-free system that produces vector stocks that are devoid of contaminating cytotoxic helper virus. Transduction of DCs with HSV-OVA or HSV-PSA and co-culture with CTL hybridomas results in specific activation, indicating that transduced DCs express these transgenes and process the tumor antigens for class I MHC presentation to CTL. Mice immunized with HSV-PSA-transduced DCs generate a specific CTL response that can be detected in vitro by a (51)Cr-release assay and are protected from challenge with tumors that express PSA. These results indicate that DCs transduced with HSV-1 amplicon vectors may provide a tool for investigation of the biology of CTL activation by DCs and a new modality for immunotherapy of cancer.

Animals↗

Regulation of neuronal traits by a novel transcriptional complex.

The transcriptional repressor, REST, helps restrict neuronal traits to neurons by blocking their expression in nonneuronal cells. To examine the repercussions of REST expression in neurons, we generated a neuronal cell line that expresses REST conditionally. REST expression inhibited differentiation by nerve growth factor, suppressing both sodium current and neurite growth. A novel corepressor complex, CoREST/HDAC2, was shown to be required for REST repression. In the presence of REST, the CoREST/HDAC2 complex occupied the native Nav1.2 sodium channel gene in chromatin. In neuronal cells that lack REST and express sodium channels, the corepressor complex was not present on the gene. Collectively, these studies define a novel HDAC complex that is recruited by the C-terminal repressor domain of REST to actively repress genes essential to the neuronal phenotype.

Animals↗

Development of herpes simplex virus-1 amplicon-based immunotherapy for chronic lymphocytic leukemia.

Herpes simplex virus (HSV)-based vectors have favorable biologic features for gene therapy of leukemia and lymphoma. These include high transduction efficiency, ability to infect postmitotic cells, and large packaging capacity. The usefulness of HSV amplicon vectors for the transduction of primary human B-cell chronic lymphocytic leukemia (CLL) was explored. Vectors were constructed encoding beta-galactosidase (LacZ), CD80 (B7.1), or CD154 (CD40L) and were packaged using either a standard helper virus (HSVlac, HSVB7.1, and HSVCD40L) or a helper virus-free method (hf-HSVlac, hf-HSVB7.1, and hf-HSVCD40L). Both helper-containing and helper-free vector stocks were studied for their ability to transduce CLL cells, up-regulate costimulatory molecules, stimulate allogeneic T-cell proliferation in a mixed lymphocyte tumor reaction, and generate autologous cytotoxic T lymphocytes (CTLs). Although helper-containing and helper-free amplicon stocks were equivalent in their ability to transduce CLL cells, a vigorous T-cell proliferative response was obtained using cells transduced with hf-HSVB7.1 but not with HSVB7.1. CLL cells transduced with either HSVCD40L or hf-HSVCD40L were compared for their ability to up-regulate resident B7.1 and to function as T-cell stimulators. Significantly enhanced B7.1 expression in response to CD40L was observed using hf-HSVCD40L but not with HSVCD40L. CLL cells transduced with hf-HSVCD40L were also more effective at stimulating T-cell proliferation than those transduced with HSVCD40L stocks and were successful in stimulating autologous CTL activity. It is concluded that HSV amplicons are efficient vectors for gene therapy of hematologic malignancies and that helper virus-free HSV amplicon preparations are better suited for immunotherapy.

Antigen-Presenting Cells↗

Modulation of the neuronal glutamate transporter EAAT4 by two interacting proteins.

Glutamate is the main excitatory neurotransmitter in the mammalian central nervous system and is removed from the synaptic cleft by sodium-dependent glutamate transporters. To date, five distinct glutamate transporters have been cloned from animal and human tissue: GLAST (EAAT1), GLT-1 (EAAT2), EAAC1 (EAAT3), EAAT4, and EAAT5 (refs 1-5). GLAST and GLT-1 are localized primarily in astrocytes, whereas EAAC1 (refs 8, 9), EAAT4 (refs 9-11) and EAAT5 (ref 5) are neuronal. Studies of EAAT4 and EAAC1 indicate an extrasynaptic localization on perisynaptic membranes that are near release sites. This localization facilitates rapid glutamate binding, and may have a role in shaping the amplitude of postsynaptic responses in densely packed cerebellar terminals. We have used a yeast two-hybrid screen to identify interacting proteins that may be involved in regulating EAAT4--the glutamate transporter expressed predominately in the cerebellum--or in targeting and/or anchoring or clustering the transporter to the target site. Here we report the identification and characterization of two proteins, GTRAP41 and GTRAP48 (for glutamate transporter EAAT4 associated protein) that specifically interact with the intracellular carboxy-terminal domain of EAAT4 and modulate its glutamate transport activity.

Amino Acid Sequence↗

HSV amplicon-mediated neurotrophin-3 expression protects murine spiral ganglion neurons from cisplatin-induced damage.

Ototoxicity is a major dose-limiting side effect of cisplatin (DDP) administration due to its propensity to induce destruction of hair cells and neurons in the auditory system. Previous studies demonstrated that TrkC-expressing spiral ganglion neurons (SGN) are protected from the cytotoxic effects of DDP by localized delivery of the trophic factor neurotrophin-3 (NT-3). Successful in vivo implementation of such a therapy requires the development of an efficient gene delivery vehicle for expression of NT-3 within the cochlea. To this end, we constructed a herpes simplex virus (HSV) amplicon vector that expressed a c-Myc-tagged NT-3 chimera (HSVnt-3myc). Helper virus-free vector stocks were initially evaluated in vitro for their capacity to direct expression of NT-3 mRNA and protein. Transduction of cultured murine cochlear explants with HSVnt-3myc resulted in production of NT-3 mRNA and protein up to 3 ng/ml as measured over a 48-h period in culture supernatants. To determine whether NT-3 overexpression could abrogate DDP toxicity, cochlear explants were transduced with HSVnt-3myc or a murine intestinal alkaline phosphatase-expressing control vector, HSVmiap, and then exposed to cisplatin. HSVnt-3myc-transduced cochlear explants harbored significantly greater numbers of surviving SGNs than those infected with control virus. These data demonstrate that amplicon-mediated NT-3 transduction can attenuate the ototoxic action of DDP on organotypic culture. The potency of NT-3 in protecting spiral ganglion neurons from degeneration suggests that in vivo neurotrophin-based gene therapy may be useful for the prevention and/or treatment of hearing disorders.

Animals↗

Expression of vhs and VP16 during HSV-1 helper virus-free amplicon packaging enhances titers.

Recently developed helper virus-free methods of herpes simplex virus (HSV) amplicon vector packaging provide stocks that are virtually devoid of the cytotoxic component normally associated with traditional helper virus-based packaging methods. These approaches involve cotransfection of amplicon plasmid DNA with either a five-cosmid set or a bacterial artificial chromosome (BAC) that contains the HSV genome without its cognate pac signals. Helper virus-free amplicon packaging produces low-titer stocks (<10(5) expressing particles/ml) that exhibit a high frequency of pseudotransduction. In an effort to enhance amplicon titers, we introduced in trans a genomic copy of the virion host shutoff (vhs) protein-encoding gene UL41 into both cosmid- and BAC-based packaging strategies. Cotransfection of this plasmid with the amplicon and packaging reagents results in a 10-fold higher amplicon titer, and stocks that do not exhibit the pseudotransduction phenomenon. To further enhance packaging efficiency, the HSV transcriptional activator VP16 was introduced into packaging cells 1 day before the packaging components. Pre-loading of packaging cells with VP16 led to an additional enhancement of amplicon titers, an effect that did not occur in the absence of vhs. Increased helper virus-free amplicon titers resulting from these modifications will make in vivo transduction experiments more feasible.

Animals↗

HSV vector-mediated gene delivery to the central nervous system.

The efficient and targeted transfer of genes is the goal of gene therapy. In the central nervous system (CNS), this is challenging due in part to the exquisite anatomy of the brain. Herpes simplex virus (HSV) vectors are particularly amenable to CNS therapies as they are capable of transducing a variety of cells, have a large transgene capacity and can exist as either oncolytic or non-immunogenic vectors. The versatility of this vector platform and its potential molecular therapeutic use in two CNS disorders, Alzheimer's disease and malignant brain tumors, will be discussed.

Alzheimer Disease↗

Enhanced learning in mice parallels vector-mediated nerve growth factor expression in hippocampus.

Spatial learning requires the integrity of the nerve growth factor (NGF)-responsive septohippocampal pathway. Loss of a single NGF allele at the mouse NGF locus (heterozygous null, ngf(+/-)) reduces septohippocampal NGF levels and NGF-regulated cholinergic neurotransmitter enzymes and results in spatial learning deficits in adult animals. A herpes simplex virus (HSV) amplicon vector was utilized to locally deliver NGF to the hippocampus of mice heterozygous and wild type (ngf(+/+)) at the NGF gene locus. NGF gene transfer produced transient increases in NGF protein levels and choline acetyltransferase activity in both ngf(+/-) and ngf(+/+) mice. However, spatial learning capability was improved only in ngf(+/-) mice. In aggregate, these findings suggest that amplicon-directed expression of NGF in subjects with baseline septohippocampal dysfunction can correct spatial learning deficits.

Animals↗

Discordance between expression and genome transfer titering of HSV amplicon vectors: recommendation for standardized enumeration.

Herpes simplex virus-derived amplicon vectors are well suited to the development of gene-based therapy for neurodegenerative diseases. The plasmid-based amplicon vector system allows for facile introduction of transcription units, possesses the potential for carrying gene inserts up to approximately 130 kb in length, and can be packaged into infectious virus devoid of contaminating cytotoxic helper virus. For accurate assessments to be made regarding vector comparison and improvements in vector design, a standard for titering prepared virus stocks must be established. At present, packaged amplicon vectors are routinely titered using reporter gene expression units to quantitate numbers of infectious amplicon virions. The strength of the promoter, sensitivity of detection of the gene product, and choice of titering cell type can greatly influence the apparent numbers of infectious virus particles. This is especially evident when comparisons are made between two amplicon vectors that possess different promoters. To this end, we have developed a new titering method based on a real-time quantitative PCR technique that allows for enumeration of transducing particles. This new approach ensures that amplicon comparison experiments are initiated with equivalent transduction units, thus allowing for a fair assessment of expression and therapeutic efficacy differences.

3T3 Cells↗

Stress enhances the response to reward reduction but not food-motivated responding.

The effect of a single exposure to foot shock stress on runway responding for food reinforcement was assessed in animals trained and tested with the same or changed reinforcement magnitude. Foot shock (30 1-s shocks, 1.0 mA) exerted no impact on runway responding in animals trained and tested with the same level of reinforcement magnitude regardless of the absolute level of reinforcement magnitude (i.e., either 15 pellets or 1 pellet). Similarly, foot shock exerted no impact on runway responding in animals trained with a small magnitude of reinforcement but tested with an increased magnitude of reinforcement. In contrast, foot shock enhanced the increase in runway latencies produced by a reduction in reinforcement magnitude. Because reductions in reinforcement magnitude are known to be aversive for animals, these data indicate that foot shock stress can alter the behavioral response to an aversive stimulus without disrupting behavioral responding for an appetitive reinforcer. They also suggest that stressor-induced alterations in appetitively motivated behaviors may be secondary to alterations in sensitivity to subtle aversive stimuli rather than by directly altering appetitive motivation.

Animals↗

The avian C/EBPgamma gene encodes a highly conserved leucine zipper transcription factor.

The C/EBP family of transcription factors regulates viral and cellular CCAAT/enhancer element-mediated transcription. We report the isolation and characterization of genomic and cDNA clones encoding avian CCAAT/enhancer-binding protein-gamma (C/EBP gamma). A partial cDNA clone for a C/EBP-related gene was previously identified by expression library screening for proteins binding the A1 CCAAT/enhancer motif from the avian leukosis virus long terminal repeat [W. Bowers and A. Ruddell (1992) J. Virol. 66, 6578-6586]. Additional cDNA and genomic clones were generated and sequenced to identify the complete protein coding sequence of this gene. Sequence analysis indicates that this gene encodes the avian homolog of C/EBP gamma. As with the murine C/EBP gamma homolog, the avian C/EBP gamma gene is comprised of two exons, with the open reading frame encoded in exon 2. The 150-aa C/EBP gamma protein is highly conserved, as the avian protein shows more than 80% identity with the murine and human homologs. The sequence of the initiation methionine (-3 caaAUGa +4) from the 150-aa open reading frame has a non-optimal Kozak initiation sequence. In vitro transcription and translation assay of this avian cDNA followed by radioimmunoprecipitation assay using a murine C/EBP gamma antiserum indicates that this non-optimal initiation codon is used to express a 22-kDa DNA-binding protein.

Amino Acid Sequence↗

Gene therapeutic strategies for neuroprotection: implications for Parkinson's disease.

Gene transfer methodologies are being explored as strategies to restore and preserve neuronal function in Parkinson's Disease. This technology represents a new therapeutic modality, holding promise for continuous and localized delivery, of neuroprotective molecules. Two primary approaches for gene transfer have emerged: in vivo and ex vivo. Recent advances in the construction and characterization of gene transfer vectors have generated more efficient vehicles to deliver and express candidate therapeutic genes. Direct gene transfer into the CNS can be achieved with replication-deficient viral vectors of several types: adenovirus, adeno-associated virus, and herpes simplex virus. These vector systems are being evaluated in models of Parkinson's disease. Strategies to deliver genes include those that either augment dopamine biosynthesis or attenuate loss of dopaminergic neurons. A discussion of the various approaches is detailed.

Adenoviridae↗

Time-dependent exacerbation of amphetamine-induced taste aversions following exposure to footshock.

Previous studies have shown that stressors attenuate LiCI-induced conditioned taste aversions (CTA) but not morphine-induced CTA. The current studies examined the effects of footshock on the acquisition and extinction of amphetamine-induced CTA. Experiment 1 demonstrated that exposure to 30 footshocks between saccharin consumption and amphetamine injections did not alter either the acquisition or the extinction of amphetamine-CTA. Experiment 2 demonstrated that exposure to the same shock parameters 2 and 4 days before saccharin-amphetamine pairing increased the magnitude of amphetamine-CTA after one saccharin-amphetamine pairing and delayed the recovery from the CTA. Experiment 2 also demonstrated that footshock increased the initial neophobic response to novel saccharin but did not alter subsequent saccharin consumption among saline-injected animals. These results indicate that stress-induced facilitation of amphetamine CTA are time-dependent and contrast with reports that stressors attenuate LiCI CTA. They also add support to the contention that CTAs induced by self-administered drugs like amphetamine are qualitatively different from CTAs induced by toxic substances like LiCL.

Amphetamine↗

Regulation of avian leukosis virus long terminal repeat-enhanced transcription by C/EBP-Rel interactions.

The avian leukosis and sarcoma virus long terminal repeat (LTR) enhancers feature directly repeated CCAAT/enhancer element sequences which are also found in many viral and cellular gene enhancers. While most members of the CCAAT/enhancer element-binding protein (C/EBP) transcription factor family exhibit tissue-restricted expression, there may be ubiquitously expressed C/EBP-like factors that regulate widespread CCAAT/enhancer element-driven transcription. An avian C/EBP-related factor designated Al/EBP was previ- ously shown to bind CCAAT/enhancer elements within the avian leukosis virus (ALV) and Rous sarcoma virus (RSV) LTR enhancers in a pattern identical to that of a B-cell LTR-binding factor (W. J. Bowers and A. Ruddell, J. Virol. 66:6578-6586, 1992). An Al/EBP-specific antiserum recognizes a 40-kDa LTR CCAAT/enhancer element-binding protein purified from avian B lymphoma cells. A1/EBP is widely expressed at the mRNA and protein levels, suggesting that this protein could be important not only in regulating widespread expression of the AIN and RSV retroviruses but also in controlling the expression of other viral and cellular gene enhancers that possess CCAAT/enhancer motifs. We also found that an NF-KB/Rel-related protein is a component of the LTR CCAAT/enhancer element binding complex through its interaction with A1/EBP. At least one of the NF-kappaB family members, p65 (RelA), is capable of activating LTR CCAAT/enhancer element-driven transcription. These findings suggest a role for Rel-related factors in the regulation of AIN or RSV LTR-driven transcription via an interaction with Al/EBP.

Alpharetrovirus↗