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Biomedical subjects

P B Rowe

Publications and source records attributed to P B Rowe.

At least 19 recordsLinked to original sources

Human fibroblasts transduced with CD80 or CD86 efficiently trans-costimulate CD4+ and CD8+ T lymphocytes in HLA-restricted reactions: implications for immune augmentation cancer therapy and autoimmunity.

Augmenting immunogenicity by genetically modifying tumor cells to express costimulatory molecules has proven to be a promising therapeutic strategy in murine tumor models and is currently under investigation in human clinical trials for metastatic cancer. However, there are significant technical and logistic problems associated with implementing strategies requiring direct gene modification of primary tumor cells. In an effort to circumvent these problems, we are developing a strategy in which the costimulatory signal required for tumor-specific T lymphocyte activation is provided by a genetically modified human fibroblast (trans-costimulation). We have evaluated the efficiency of CD80- and CD86-mediated trans-costimulation in the activation of human CD8+ and CD4+ T lymphocytes in MHC class I- and class II-restricted lymphoproliferation reactions. Our studies demonstrate that the efficiency of CD80- or CD86-mediated trans-costimulation of purified human CD8+ and CD4+ T lymphocytes is comparable to cis-costimulation under defined conditions. Moreover, a dose-response relationship consistent with the predicted two-hit kinetics of the reaction was evident in trans-costimulation reactions in which the ratio of target cells expressing either signal 1 or signal 2 was varied incrementally from 1:10 to 10:1. Importantly, the level of cell-surface CD86 required for trans-costimulation is equivalent to that constitutively expressed by human peripheral blood monocytes. These results may have significant implications for the clinical implementation of this type of cancer immunotherapy and also raise questions about the possibility of trans-costimulating autoreactive T lymphocytes in vivo.

3T3 Cells

Inhibition of human immunodeficiency virus type 1 replication by the K10-K42 peptide of GAP31 is due to induction of rapid but nonspecific precipitation of viral and nonviral proteins.

The 33-amino acid peptide K10-K42 has previously been described as having potent anti-HIV-1 activity, and antiviral efficacy against hepatitis B and human cytomegalovirus in vitro. Although the exact mechanism of antiviral activity was unknown, it was hypothesised that the K10-K42 peptide inhibited HIV-1 by interfering with one or more of the intracellular processes of reverse transcription, integration, and/or viral gene expression. We performed a series of experiments to identify and characterize the inhibitory mechanism, and to determine whether intracellular expression of the K10-K42 peptide would potentiate its antiviral efficacy in vitro. Surprisingly, our results revealed that the antiviral activity of the K10-K42 peptide could be explained without implicating intracellular inhibition of HIV-1 replication. The activity appeared to be due to an extraordinary capacity of the K10-K42 peptide to precipitate viral and nonviral proteins in vitro. The protein-precipitating capacity of the K10-K42 peptide was sequence specific and a scrambled version of the 33-amino acid peptide did not retain the activity. Although the unusual biochemical properties of the K10-K42 peptide probably negate a number of potential therapeutic applications, they do merit further investigation. Moreover, these findings provide a plausible explanation of the mechanism by which the K10-K42 peptide can inhibit replication of viruses from families as genetically and functionally diverse as Retroviridae, Hepadnaviridae, and Herpesviridae.

Amino Acid Sequence

Human PBMC-derived dendritic cells transduced with an adenovirus vectorinduce cytotoxic T-lymphocyte responses against a vector-encoded antigen in vitro.

Dendritic cells (DC) are among the most potent antigen-presenting cells known and play an important role in the initiation of antigen-specific T-lymphocyte responses. Several recent studies have demonstrated that DC expressing vector-encoded tumor-associated antigens can induce protective and therapeutic immunity in murine cancer models. In the current study we set out to examine in vitro the utility of adenovirus vectors in the transduction of human DC for the induction of antigen-specific T-lymphocyte responses against a defined vector-encoded antigen. DC were derived from the adherent fraction of PBMC by culture in defined medium containing GM-CSF and IL-4. A replication-defective E1/E3-deleted type 5 adenovirus vector encoding bacterial beta-galactosidase (beta-gal) under the transcriptional control of a CMV promoter was used to transduce DC at multiplicities of infection (MOI) up to 1000. While high MOI were required to achieve efficient transduction there was no significant effect on DC morphology, immunophenotype or potency in allogeneic lymphocyte proliferation assays. Furthermore, transduced DC-induced antigen-specific CTL activity against adenoviral proteins and more significantly, the vector-encoded antigen beta-gal. These data clearly demonstrate the potential of adenovirus vectors in anticancer DC vaccine strategies and provide an important link between existing animal data and human clinical application.

Adenoviridae

Identification of a dynamic intracellular reservoir of CD86 protein in peripheral blood monocytes that is not associated with the Golgi complex.

In the process of developing a cancer immunotherapy strategy, we have identified and characterized a novel intracellular reservoir of CD86 protein in peripheral blood monocytes. This observation emerged from studies aimed at using retrovirus vectors to genetically modify tumor cells to express the costimulatory proteins CD80 and CD86. Retrovirus-mediated expression of CD80 and CD86 in T lymphoblastoid CEM cells resulted in an unexpected intracellular focal concentration of both proteins in the genetically modified cells. By extending these studies to an analysis of CD80 and CD86 expression in PBMC, we observed that endogenous CD86 expression in peripheral blood monocytes also involved a similar intracellular focal concentration of the protein. The intracellular concentration of CD86 in monocytes was not due to storage within the Golgi apparatus, and required intact microtubules to retain structural integrity. Furthermore, as the intensity of CD86 fluorescence increased on monocytes as a function of time in vitro, the intracellular focal concentration correspondingly decreased. These results are consistent with antegrade CD86 transport from an intracellular reservoir to the cell surface membrane. In this report, we detail the intracellular and membrane localization studies with tumor cell lines and PBMC, and describe the temporal relationship between intracellular storage and trafficking of CD86 to the cell surface membrane in peripheral blood monocytes. We hypothesize that this intracellular reservoir allows rapid and sustained deployment of an important costimulatory molecule to the monocyte surface membrane during initiation and maturation of the cell-mediated immune response.

Antigens, CD

Isolation of a novel macrophage-specific gene by differential cDNA analysis.

To analyze myelomonocytic differentiation we have used the approach of differential cDNA analysis to isolate novel genes that are preferentially expressed in mature macrophages. Differential screening of a macrophage cDNA library led to the identification of a novel cDNA that showed macrophage lineage- and differentiation stage-specific expression. Transcripts from the gene, which we have termed Mpg-1, are found at a high level in mature human and murine macrophages and at a moderate level in certain myelomonocytic cell lines. The expression of Mpg-1 was found to increase when murine fetal liver hematopoietic progenitor cells were induced to differentiate into macrophages. An Mpg-1-specific transcript was not detected in a wide variety of other tissues and cell lines. The DNA sequence of Mpg-1 (4,214 bp) was obtained from a series of overlapping cDNA, 3' rapid amplification of cDNA ends (RACE), and genomic clones. Primer extension analysis predicted the existence of multiple transcription start sites, ranging from 26 to 117 bp upstream of the 5' proximal ATG of the open reading frame. The predicted 669-amino acid, Mpg-1-encoded protein has potential glycosylation and phosphorylation sites in addition to a signal sequence. The core protein is predicted to have a molecular weight of 71 to 74 kD. Computer-assisted local similarity searches indicate that Mpg-1 is a novel gene that may share a distant ancestry to perforin, a lytic protein found in cytotoxic T lymphocytes and natural killer cells.

Amino Acid Sequence

In vitro transformation of Li-Fraumeni syndrome fibroblasts by SV40 large T antigen mutants.

Transfection of SV40 early region DNA into normal human diploid fibroblasts (NHDFs) increases their proliferative potential to a limited extent. We have investigated the roles of the SV40 large T antigen (LTAg) regions responsible for binding to the protein products of the retinoblastoma (Rb) and p53 genes in this temporary escape from senescence. Patients encoding LTAg mutants were transfected into NHDFs and into Li-Fraumeni syndrome (LFS) fibroblasts which are heterozygous wild-type (wt)/null-mutant for p53. A LTAg mutated in the p53-binding region (T402DE) had greatly reduced efficiency of focus formation, and a p110Rb-binding mutant was unable to induce any foci. T402DE-induced NHDF foci senesced at the same time as untransfected cells, but the equivalent LFS foci all had increased proliferative potentials, with the greatest increase being seen in clones that lost the wt p53 allele. One LFS clone expressed the T402DE mutant during focus formation, but later lost both the T402DE DNA and the wt p53 allele. We conclude that SV40-induced focus formation in NHDFs requires the LTAg p110Rb-binding region, and is enhanced by loss of normal p53 function. In contrast, increased proliferative potential is primarily due to loss of p53 function.

Antigens, Polyomavirus Transforming

Flow cytometric DNA analyses of frozen samples from children's solid tumors.

Cell ploidy and proliferative activity may be useful to clinicians in treating children with solid tumors. Frozen specimens from children with malignant solid tumors were tested at the time of diagnosis for ploidy and proliferative activity. The flow cytometric DNA histograms were examined to assess the sensitivity of the tumor cell preparation and staining method. All the frozen tumors received (n = 58), from children aged 1 mth to 17 yrs, were analyzed and included in this study. The more common tumors were neuroblastomas (n = 21) and Wilms' tumors (n = 16). The majority of tumors (91%) exhibited a diploid peak from the significant proportion of stromal/epithelial cells in the tumor specimen. The tightness of the diploid G0G1 peaks as measured by their coefficient of variations (CV) produced a mean CV of 2.43% +/- SD 0.62, range 1.3% to 4.6%. The G0G1 CVs from the aneuploid peaks had a mean of 2.34% +/- SD 0.68 with the range 0.5% to 3.7%. There was, however, a proportion of tumors (9%) which showed no normal "diploid" peak on the histogram. These tumor cell suspensions had insignificant numbers of diploid cells. Unless the position of the diploid peak could be identified on the DNA histogram the ploidy result from such tumors would be incorrect. Reference diploid cells can be added to cell suspensions prepared from frozen tumors in order to identify the position of the G0G1 peak. Reference diploid cells cannot be added to single cell preparations from paraffin embedded specimens, therefore making it impossible to define the diploid peak position in these tumors.(ABSTRACT TRUNCATED AT 250 WORDS)

Child

Both myeloproliferative disease and leukemia are induced by transplantation of bone marrow cells expressing v-myc.

An in vivo system has been established to investigate v-myc-induced hematopoietic neoplasia in mice. A Moloney murine leukemia virus (Mo-MLV)-derived recombinant retrovirus containing v-myc was used to infect immature bone marrow cells, and these cells were then transplanted into lethally irradiated recipients. All provirus-positive reconstituted mice were found to develop hematopoietic proliferative disorders and, in certain cases, overt leukemia--myeloblastic, myelomonocytic and T lymphocytic. In all cases expression of v-myc was high and the disease type did not correlate with the level of expression. We have isolated immortalized monocytes, myeloid progenitors and T lymphocytes from several of these mice and shown tumorigenicity in secondary syngeneic recipients. This system provides a model for investigating the progression from a pre-leukemic disease to malignancy. In addition, we describe a recombinant v-myc-containing retrovirus that directs high-level v-myc expression from the Mo-MLV promoter in all the hematopoietic cell types examined.

Animals

Germ-line splicing mutation of the p53 gene in a cancer-prone family.

Li-Fraumeni syndrome is a rare autosomal dominant susceptibility to a variety of cancers including carcinomas of the breast and the adrenal cortex, tumors of brain and muscle tissue, and leukemias. Affected individuals develop cancer at a young age and often at multiple primary sites. A study has been conducted into the genetic basis of cancer in a particular Li-Fraumeni syndrome family. Examination of p53 as a candidate susceptibility gene revealed that, in two affected individuals, there was an aberrant larger transcript of 3.6 kilobases present in both tumor and constitutional material in addition to the normal-sized 2.8-kilobase transcript. The additional transcript was not found in three unaffected family members. S1 nuclease mapping localized the insertion toward the 5' end of the p53 transcript near exons 4 and 5, and sequencing revealed a point mutation in the splice donor site of intron 4 in the germ-line of the two affected individuals, which accounted for the presence of the larger transcript. The same splicing mutation was also detected in two obligate carriers and was not found in two unaffected individuals. As no mutations were detected in exons 5-8 in either tumor examined, the second p53 allele was most likely lost during tumorigenesis in both tumors. The demonstration of a germ-line splicing mutation in affected individuals from a Li-Fraumeni syndrome family provides for a novel mechanism of p53 inactivation not seen previously in other affected families, in whom the mutations have all been missense.(ABSTRACT TRUNCATED AT 250 WORDS)

Adrenal Cortex Neoplasms

Establishment in culture and characterization of a strain with mast cell and monocytic properties from the bone marrow of a child with diffuse cutaneous mastocytosis.

Bone marrow was isolated from a child with congenital mastocytosis. Upon prolonged in vitro culture, initially in the presence of interleukin-3 (IL-3), a population of relatively large fusiform, strongly adherent cells grew out plus a subpopulation of smaller nonadherent cells. The morphology of the adherent cells was not typical of fibroblasts, epithelial cells, nor of standard hematopoietic cell types, whereas the morphology of the nonadherent cells resembled mast cells. Neither cell type required the presence of IL-3 nor a feeder layer of fibroblasts for continued growth. Attempts to isolate the two populations were unsuccessful. This cell strain comprised of both cell populations has been termed human bone marrow-derived mastocytosis cells (HBM-M). These cells were found to possess some of the cytochemical, ultrastructural, and surface phenotypic features of degranulated mast cells. They reacted with the mast cell marker, monoclonal antibody YB5.B8, but not with the basophil specific monoclonal antibody Bsp-1 and released the inflammatory mediators histamine, leukotriene C4, prostaglandin D2, and platelet-activating factor constitutively. This release was not potentiated by immunologic- or nonimmunologic-activating stimuli. In addition, they exhibited cytochemical and surface phenotypic features of monocytes. Our results indicate that a population of abnormal proliferative cells exist in the marrow of this patient; that these cells may be responsible for the patient's pronounced systemic proliferation of mast cells and the associated symptoms; and that the cell's mast cell, monocyte properties may be indicative of a common bone marrow-derived mast cell/monocyte precursor.

Antibodies, Monoclonal

Stage-specific expression of intracisternal A-particle sequences in murine myelomonocytic leukemia cell lines and normal myelomonocytic differentiation.

The levels of intracisternal A-particle (IAP) mRNA were analyzed in a variety of myelomonocytic leukemia cell lines, peritoneally derived macrophages, and normal hemopoietic progenitors induced to differentiate. In both normal and leukemic cells, the highest level of IAP message was found in cells at an intermediate stage of myelomonocytic differentiation, namely, the promyelomonocyte. These results indicate that IAP sequence transcription is regulated differentially during myelomonocytic cell development and that in general, the expression pattern is preserved in leukemic cell lines in vitro. In addition, Northern (RNA) analysis detected only type I IAP transcripts as the major IAP message and the expressed IAP subtypes varied in certain cell lines. This is the first comprehensive study of IAP expression in the myelomonocytic lineage and provides a useful system to study the biology of IAPs.

Animals

Tumor progression following transformation of murine monocytes by v-myc: acquisition of immortalization and tumorigenicity.

Monocyte transformation by the v-myc oncogene has been used to study myelomonocytic tumor progression in vitro. Murine monocytes transformed by a recombinant retrovirus containing MC29 v-myc were found to exhibit a proliferative burst to day 28-40 post-infection. There-after growth slowed and cell number remained relatively static to day 80-90 post-infection. During both the proliferative and quiescent periods, the cells were dependent on the myelomonocytic growth factor CSF-1 for growth and viability. Analysis of this transformation revealed that the initial transformants were polyclonal, non-immortal, and non-tumorigenic in syngeneic mice. At day 80-90 post infection, a fresh round of cellular proliferation occurred and, in contrast to the initial burst, growth was sustained allowing the establishment of cell lines. These lines were found to be monoclonal, immortal, growth factor independent and, in certain cases, tumorigenic in syngeneic mice. Associated with the establishment of growth factor independent cell lines was the constitutive synthesis of the myelomonocytic growth factor, CSF-1. Proto-oncogene screening of the initial transformants and the cell lines also revealed the expression of c-raf and the CSF-1 receptor, c-fms. Our results indicate that, following transformation by v-myc, monocytes can progress in vitro to become growth factor independent and immortal and that both monocyte transformation and immortalization can be dissociated from tumorigenicity.

Animals

Overexpression of the retinoblastoma gene in a familial adrenocortical carcinoma.

Tumors derived from a Li-Fraumeni syndrome cancer-susceptible family were examined for expression of the retinoblastoma susceptibility gene (RB). Whereas RB expression was normal in a primary breast carcinoma and its metastases from one member of this family, overexpression of RB was found in an adrenocortical carcinoma from another family member. This was in contrast to normal RB expression in normal tissue of this patient, the adrenocortical adenocarcinoma cell line SW-13, and the fibroblast cell line MRC-5, and low level RB expression in normal adrenal tissue. The overexpression in the adrenocortical carcinoma resulted in increased synthesis of the RB-encoded protein and did not appear to be associated with RB amplification or rearrangement. This result is novel as it is usually the loss of expression or production of an altered RB transcript exhibiting deletions that is associated with carcinogenesis. In light of the recent discovery of p53 point mutations in the affected Li-Fraumeni syndrome family members tested, RB overexpression may constitute a secondary event in Li-Fraumeni syndrome tumorigenesis.

Adrenal Cortex Neoplasms

Nucleotide sequence and genomic organization of a human T lymphocyte serine protease gene.

We have determined the nucleotide sequence of 4508 base pairs of human genomic DNA which contain the human serine esterase gene from cytotoxic T lymphocytes (SECT) (equivalent to the 1-3E cDNA clone) and include 879 bp of 5' flanking DNA and 393 bp of 3' flanking DNA. The gene consists of five exons of 88, 148, 136, 261, and 257 nucleotides separated by four introns of 1043, 455, 205, and 643 nucleotides. The location of introns with respect to protein coding sequences in the SECT gene is identical to that of the human cathepsin G and murine granzyme B genes. Comparison of SECT gene exonic sequences to murine granzyme B-F cDNA sequences indicates similarities of 75 and 72% for granzymes B and C and 61, 59, and 61% for granzymes D, E, and F, respectively. The 5' flanking sequence of the SECT gene showed similarity only to the 5' flanking sequence of the murine granzyme B gene, indicating that these genes are homologous. Comparison of the SECT gene sequence to the human cathepsin G sequence indicated no similarity in the 5' flanking DNA although the exonic sequences show 64% sequence similarity overall and 45% sequence similarity in the respective 3' untranslated regions. These similarities suggest that the SECT and cathepsin G genes are members of the same family of serine protease genes. Evidence from high and low stringency Southern transfer analysis of human genomic DNA indicates the presence of another gene of at least 85% sequence similarity to the SECT gene.

Base Sequence

Structure and differential mechanisms of regulation of expression of a serine esterase gene in activated human T lymphocytes.

A cDNA clone encoding a polypeptide resembling proteolytic serine esterases (from cytotoxic T-cells; SECT) was isolated from human peripheral blood lymphocytes which had been cultured in the presence of the T-cell mitogen phytohemagglutinin for 72 h. The cDNA encodes a polypeptide of 247 amino acids which show homology of 99% with the protein sequence encoded by a cDNA clone (1-3E) isolated from staphylococcal enterotoxin A-stimulated human peripheral blood lymphocytes and 68% with the protein sequence (cytotoxic cell protease type I) derived from a cDNA clone (C11) encoding a serine esterase isolated from a murine cytotoxic T-cell line. The overall nucleotide sequence homology between the SECT cDNA and 1-3E was 99% and 73% between SECT and C11. Comparing the coding regions of SECT and C11 showed 75% homology, whereas the 5'- and 3'-untranslated regions showed 67% homology. Phytohemagglutinin stimulation results in 30-, 60-, and 370-fold increases in cytoplasmic SECT mRNA with respect to unstimulated cells after 6-, 24-, and 72-h cultures, respectively. At 6 h, the increase in SECT mRNA occurs in the absence of increases in SECT gene transcription and cytoplasmic mRNA stabilization. A 5-fold increase in SECT nuclear RNA seen at this time suggests that stabilization of SECT nuclear RNA transcript is responsible for early increases in SECT mRNA levels. At 24 and 72 h, the increased cytoplasmic SECT mRNA levels can be accounted for by increased transcriptional activity of the SECT gene.

Amino Acid Sequence