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Biomedical subjects

Luis P Villarreal

Publications and source records attributed to Luis P Villarreal.

8 recordsLinked to original sources

Profiling the humoral immune response to infection by using proteome microarrays: high-throughput vaccine and diagnostic antigen discovery.

Despite the increasing availability of genome sequences from many human pathogens, the production of complete proteomes remains at a bottleneck. To address this need, a high-throughput PCR recombination cloning and expression platform has been developed that allows hundreds of genes to be batch-processed by using ordinary laboratory procedures without robotics. The method relies on high-throughput amplification of each predicted ORF by using gene specific primers, followed by in vivo homologous recombination into a T7 expression vector. The proteins are expressed in an Escherichia coli-based cell-free in vitro transcription/translation system, and the crude reactions containing expressed proteins are printed directly onto nitrocellulose microarrays without purification. The protein microarrays are useful for determining the complete antigen-specific humoral immune-response profile from vaccinated or infected humans and animals. The system was verified by cloning, expressing, and printing a vaccinia virus proteome consisting of 185 individual viral proteins. The chips were used to determine Ab profiles in serum from vaccinia virus-immunized humans, primates, and mice. Human serum has high titers of anti-E. coli Abs that require blocking to unmask vaccinia-specific responses. Naive humans exhibit reactivity against a subset of 13 antigens that were not associated with vaccinia immunization. Naive mice and primates lacked this background reactivity. The specific profiles between the three species differed, although a common subset of antigens was reactive after vaccinia immunization. These results verify this platform as a rapid way to comprehensively scan humoral immunity from vaccinated or infected humans and animals.

Animals↗

Structural proteomics of the poxvirus family.

Recent concerns over the potential use of variola virus-commonly known as smallpox-and other orthopox viruses as weapons of bioterrorism have increased research efforts towards creating new antiviral drugs and safer more effective vaccines. Here we introduce a new resource for structural information of poxvirus proteins: the poxvirus proteomics database (PPDB). In the PPDB, we leverage recently developed bioinformatics structure prediction tools on a genomic scale and provide results in a publicly accessible format. The current version of the system contains both experimentally determined and predicted information about protein structural features, such as secondary structure and relative solvent accessibility, as well as tertiary structure and homology information. The system is automated to read the primary sequences from the database, produce the new information for each sequence, and update the database monthly and as new tools are incorporated. The PPDB contains detailed information on the open reading frames (ORFs) in the Copenhagen strain of the vaccinia virus genome. The contents of the PPDB can be accessed through a simple web interface. Inclusion of additional poxvirus genomes in the PPDB is in progress. The PPDB has an upward scalable informatics infrastructure that can readily be applied to viral, bacterial, as well as eukaryotic genomes.

Antiviral Agents↗

Detection of human polyomaviruses and papillomaviruses in prostatic tissue reveals the prostate as a habitat for multiple viral infections.

BACKGROUND: To determine whether human polyomavirus (hPy) genomes are present in prostate tissues, we have carried out a polymerase chain reaction (PCR) screening in two sets of prostate samples, archival and fresh frozen, as well as performing in situ hybridization (ISH). The frozen prostate samples as well as the urine from the same patients were also screened for human papillomavirus (HPV) sequences. METHODS: Highly sensitive nested-PCR assays were used. The detection of subpopulations of JC virus (JCV) -transcriptional control regions (TCRs) was also evaluated by Southern analysis and by direct DNA sequencing. An in situ hybridization technique was also used to detect JCV DNA in prostatic tissue. RESULTS: The paraffin-embedded archival samples gave variable, unsatisfactory results. Results from the fresh frozen samples, however, were consistent and were frequently positive for JCV and less frequent for BK virus DNA. ISH confirmed the presence of JCV DNA in prostatic glandular epithelium. The TCR region of JCV from prostate tissue and urine from prostate cancer patients showed the presence of both archetypal and rearranged TCRs, including several new sequence variants. HPV DNA was also frequently detected and in some cases also mixed with hPy DNA from frozen tissue and urine. CONCLUSION: The use of fresh frozen samples proved to be essential for consistent and reproducible detection of HPV and hPy viral DNAs. The presence of JCV DNA by ISH and the occurrence of a subpopulation of JCV TCR regions suggests that the prostate is a site for virus replication. The prostate is a complex habitat where mixed infections with oncogenic DNA viruses frequently occur and opens the discussion to the potential role of these viruses in the cancer of the prostate.

Aged↗

A monoclonal antibody specific for BK virus large T-antigen (clone BK.T-1) also binds the human Ku autoantigen.

A monoclonal antibody directed against the BK virus large T-antigen (clone BK.T-1) has previously been used to evaluate BKV-T antigen (BKV-TAg) expression. However, our experience showed a consistent reactivity to uninfected human, but not rodent cells and tissues. Using immunoprecipitation, Western analysis, amino acid sequencing and end-point dilution analysis, we analysed the BK.T-1 antibody reactivity and identified the bound cellular protein. The results clearly show that the antibody recognizes the large subunit (Ku86) of the Ku autoantigen, the regulatory component of the DNA-PKcs. We also demonstrated that the antibody retained its original reactivity in BKV-TAg transformed hamster kidney cells. The cross-reaction of the BK.T-1 antibody suggests a possible similarity between BKV-TAg and Ku86, but makes the antibody unsuitable for studies of BKV large T-antigen in the human cells.

Animals↗

Evidence of diversifying selection in human papillomavirus type 16 E6 but not E7 oncogenes.

Human papillomavirus type 16 is a common sexually transmitted pathogen capable of giving rise to cervical intraepithelial neoplasia and invasive carcinoma through the expression and activity of two adjacent oncogenes: E6 and E7. Naturally occurring amino acid variation is commonly observed in the E6 protein but to a much lesser extent in E7. In order to investigate the evolutionary mechanisms involved in the generation and maintenance of this variation, we examine 42 distinct E6-E7 haplotypes using codon-based genealogical techniques. These techniques involve estimation of the ratio of nonsynonymous to synonymous substitutions (dn/ds) and allow testing for directional (positive) natural selection. Positive selection was detected for four codon sites within the E6 oncogene but not in any E7 codons. The amino acid compositions and locations of selected sites are described. Possible sources of natural selection including antiviral immune pressure and polymorphism of host cellular proteins are discussed.

Amino Acid Sequence↗

In situ adenoviral interleukin 12 gene transfer confers potent and long-lasting cytotoxic immunity in glioma.

Interleukin 12 (IL-12) isa cytokine that promotesan antitumor Th1-type pattern of differentiation in mature naïveT cells. Despite its therapeutic success in multiple animal models of cancer, the utility of systemically administered recombinant cytokine has been limited by its toxicity. This has encouraged the development of local IL-12 delivery systems through gene transfer. To determine the effect of local adenoviral delivery of IL- 12 on glioma immunogenicity, mice bearing GL-26 gliomas in the right corpus striatum were treated with direct intratumoral administration of AdmIL-12, AdLacZ, or normal saline. Survival was significantly prolonged in AdmIL-12-treated animals and immunohistochemistry demonstrated robust CD4+ and CD8+ T-cell infiltration in these mice compared to the two control groups. Glioma-infiltrating T lymphocytes from mice that received AdmIL-12 also demonstrated relatively increased, albeit statistically nonsignificant tumor killing. Based on IL-12's known ability to enhance Th1-type cytotoxic antitumor immune responses, we postulate our findings to be a result of localized induction of tumor immunity.

Adenoviruses, Human↗