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Biomedical subjects

P M Howley

Publications and source records attributed to P M Howley.

At least 145 records · Page 8Linked to original sources

Type 1 human T-cell leukemia virus small envelope protein expressed in mouse cells by using a bovine papilloma virus-derived shuttle vector.

In an attempt to express the small (transmembrane) envelope protein p21e of type 1 human T-cell leukemia (lymphotrophic) virus (HTLV-1) exclusive of other viral gene products, we have constructed a recombinant plasmid clone (pMBE-1) in a bovine papillomavirus-derived mammalian expression vector. Mouse C127 cells transfected with the pMBE-1 plasmid expressed the introduced HTLV-1 viral gene(s) as demonstrated by Northern blot and indirect immunofluorescence with natural human antisera. The transfected mouse cells were injected into BALB/c mice, and a monoclonal antibody was recovered which specifically recognizes a 21-kilodalton protein present in HTLV-1 virions, indicating that the pMBE-1 plasmid encodes the small envelope protein.

Animals↗

Enhancer-dependent expression of the rat preproinsulin gene in bovine papillomavirus type 1 vectors.

The effect of position in a bovine papillomavirus type 1 (BPV-1) vector on foreign gene expression was assessed with the rat preproinsulin (rI1) gene. The rI1 gene was inserted at each of the BPV-1/pML2d junctions in either transcriptional orientation in derivatives of the pdBPV-1(142-6) vector which consists of the BamHI linear genome of BPV-1 DNA cloned into pML2d. Transformed lines of C127 cells were established and assayed for rI1 gene expression. Cells containing the rI1 gene at the 3' end of the BPV-1 transforming region expressed rat proinsulin, whereas cells with the gene at the 5' end of the nontransforming region did not. Variability in the plasmid copy number or in the extent of DNA rearrangement could not account for this difference. We conclude that the expression of the rat preproinsulin gene (which is normally tissue specific for pancreatic islet cells) in C127 cells depends on the transcriptional activation afforded by viral enhancer sequences located at the 3' end of the transforming region. Intervening BPV-1 or pML2d sequences appear to block this enhancer-mediated gene activation. In agreement with enhancer-dependent activation, a rat preproinsulin gene located in a blocked position (i.e., not adjacent to the BPV-1 enhancer) could be activated by the insertion of a DNA fragment containing the simian virus 40, Moloney murine sarcoma virus, or BPV-1 enhancer element adjacent to the rI1 gene. Thus, a gene which is normally not expressed in a particular cell may be activated when placed adjacent to a viral enhancer in a BPV-1 vector.

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Novel method for identifying sequence-specific DNA-binding proteins.

We developed a general method for the enrichment and identification of sequence-specific DNA-binding proteins. A well-characterized protein-DNA interaction is used to isolate from crude cellular extracts or fractions thereof proteins which bind to specific DNA sequences; the method is based solely on this binding property of the proteins. The DNA sequence of interest, cloned adjacent to the lac operator DNA segment is incubated with a lac repressor-beta-galactosidase fusion protein which retains full operator and inducer binding properties. The DNA fragment bound to the lac repressor-beta-galactosidase fusion protein is precipitated by the addition of affinity-purified anti-beta-galactosidase immobilized on beads. This forms an affinity matrix for any proteins which might interact specifically with the DNA sequence cloned adjacent to the lac operator. When incubated with cellular extracts in the presence of excess competitor DNA, any protein(s) which specifically binds to the cloned DNA sequence of interest can be cleanly precipitated. When isopropyl-beta-D-thiogalactopyranoside is added, the lac repressor releases the bound DNA, and thus the protein-DNA complex consisting of the specific restriction fragment and any specific binding protein(s) is released, permitting the identification of the protein by standard biochemical techniques. We demonstrate the utility of this method with the lambda repressor, another well-characterized DNA-binding protein, as a model. In addition, with crude preparations of the yeast mitochondrial RNA polymerase, we identified a 70,000-molecular-weight peptide which binds specifically to the promoter region of the yeast mitochondrial 14S rRNA gene.

Base Sequence↗

Presence and expression of human papillomavirus sequences in human cervical carcinoma cell lines.

A series of human carcinoma cell lines was examined for human papillomavirus (HPV) DNA sequences with the use of HPV-6, HPV-11, HPV-16, and HPV-18 DNA probes. Six of eight cell lines derived from human cervical carcinomas were shown to contain integrated HPV DNA sequences. In five of these six lines, HPV-specific polyadenylated RNA species could also be identified. The expression of HPV sequences was detected in three lines with a HPV-18 DNA probe and in two lines with a HPV-16 DNA probe. Of the two lines which contained HPV-16 specific RNA, one contained HPV DNA sequences which hybridized only to an HPV-16 probe, and the other contained HPV DNA sequences which hybridized to both HPV-16 and HPV-18 DNA probes. Six cell lines established from human squamous-cell carcinomas of the bladder, pharynx, lung, esophagus, and vulva were negative for HPV-6, HPV-11, HPV-16, and HPV-18 DNA sequences under stringent hybridization conditions.

Base Sequence↗

The concurrence of Saethre-Chotzen syndrome and malignancy in a family with in vitro immune dysfunction.

The occurrence among 13 siblings of a malformation-mental retardation syndrome and diverse malignancies was investigated for etiologic relationship by clinical, genetic, immunologic, and virologic techniques. Three sisters and their father had Saethre-Chotzen syndrome, an autosomal dominant trait with craniosynostosis and asymmetric facies. One affected sister also had nasopharyngeal carcinoma; tow nondysmorphic brothers had Hodgkin's disease, and another had seminoma with teratocarcinoma of the testis. Decreased in vitro lymphocytic proliferation to various mitogens was observed in both available siblings with tumor, one sibling with Saethre-Chotzen syndrome, and two clinically normal siblings and their father. Both parents and all siblings had normal karyotypes and no increase of antibodies to Epstein-Barr virus. The malformation syndrome and the various neoplasias segregated independently of each other and of 47 genetic markers, including histocompatibility antigens (HLA). This study illustrates an approach to defining etiology when rare disorders cluster in a family and suggests that the occurrence of malignancies in this family may be related to subclinical immune dysfunction. Whether the Saethre-Chotzen syndrome predisposed to malignancy, perhaps through impaired immunity, awaits additional observations.

Acrocephalosyndactylia↗

Localization and analysis of bovine papillomavirus type 1 transforming functions.

Bovine papillomavirus type 1 (BPV-1) or cloned BPV-1 DNA can transform susceptible rodent cells, and the viral DNA remains as a stable extrachromosomal plasmid in the transformed cells. The transforming region of the BPV-1 genome has previously been localized to a specific fragment comprising 69% of the genome, which also contains the elements sufficient for extrachromosomal plasmid maintenance. To define more precisely the viral DNA sequences which are involved in cellular transformation, we have tested the ability of defined deletion mutants of BPV-1 DNA to morphologically transform mouse C127 cells. Cells containing the mutated DNAs have been examined for anchorage independence and tumorigenicity in nude mice. Several distinct regions of the BPV-1 genome were found to influence expression of the viral transformation functions. A transcriptional regulatory region located in the noncoding region 5' to the early open reading frames is essential for transcriptional activity and transformation. A transcriptional enhancer element, located 3' to the polyadenylation site for the viral RNAs expressed in transformed cells, has previously been shown to be essential for transformation (Lusky et al., Mol. Cell. Biol., 3:1108-1122, 1983). Deletion mutants affecting the E2 open reading frame, particularly the NH2 half, are significantly impaired in their ability to transform, suggesting that the E2 gene product is an important transforming protein of BPV-1. Mutants lacking the E6 and E7 open reading frames are still able to induce transformation but at a lowered efficiency, and the transformants have altered characteristics. Mutations localized within the E1 open reading frame do not significantly affect the transforming functions but result in the integration of the viral genome in the transformed cells, implicating the E1 gene product in stable plasmid replication and maintenance.

Animals↗

Acquired immunodeficiency syndrome with progressive multifocal leukoencephalopathy and monoclonal B-cell proliferation.

A 34-year-old man who used intravenous drugs developed the acquired immunodeficiency syndrome with lymphadenopathy, Mycobacterium tuberculosis pneumonia, and progressive multifocal leukoencephalopathy. Early biopsy specimens of the lymph node showed hyperplasia without evidence of lymphoma. Later, immunologic analysis of peripheral blood lymphocytes showed inversion of the helper/suppressor T-lymphocyte ratio and persistent monoclonal B-cell proliferation without clinically overt lymphoma. The clinical course of this patient suggests that abnormal immune responses seen in the setting of the acquired immunodeficiency syndrome may evolve into lymphoproliferative disorders detectable by peripheral blood lymphocyte analysis.

Acquired Immunodeficiency Syndrome↗

Differentiation of human epidermal cells transformed by SV40.

Human epidermal cells were transformed with DNA from wild-type SV40 virus or with DNA from a temperature-sensitive A mutant (tsA209). The SV40-transformed cells differed from nontransformed cells in their morphologic appearance, growth properties, and expression of certain characteristics associated with differentiation. The transformed cells were more variable in size and shape than their nontransformed counterparts and were less stratified and less keratinized. While the growth properties of the cells were similar under optimal growth conditions, the transformed cells could be propagated under stringent growth conditions that did not support the growth of nontransformed human epidermal cells. The transformants still required a 3T3 feeder layer for growth, remained anchorage dependent as assayed in soft agar, and were not tumorigenic in athymic nude mice. The expression of certain differentiated functions of the human epidermal cell, the presence of keratins and cross-linked envelopes, was decreased in the transformed cells, and these functions could be restored at the nonpermissive temperature in the tsA209 transformed cells.

Cell Adhesion↗

Comparative analysis of the human type 1a and bovine type 1 papillomavirus genomes.

The DNA sequences of the genomes of the bovine type 1 and human type 1a papillomaviruses were compared. The overall organization of both genomes is very similar. Three areas of maximal homology were found in the L1 and E1/E2 genes, and at the beginning of L2. The conservation of homologous amino acid sequences encoded in the open reading frames argues that these segments represent real genes or exons. Within these segments, however, only certain domains of the putative proteins are preferentially conserved. Two polypeptide chains show homologous arrangement of the cysteine residue clusters Cys-X-X-Cys, despite a lack of conservation of the rest of the amino acid sequence. A significant sequence divergence in a region where the three reading frames are open suggests that papillomavirus genomes have evolved not solely by accumulation of point mutations. Conserved sequences were also found in the noncoding region, and their possible involvement in regulation of viral gene expression is discussed.

Amino Acid Sequence↗

Cycloheximide induces expression of the human interferon beta 1 gene in mouse cells transformed by bovine papillomavirus-interferon beta 1 recombinants.

Mouse cells transformed by a bovine papillomavirus recombinant vector containing the human interferon (IFN) beta 1 (IFN-beta 1) gene could be induced to produce human as well as mouse IFNs. The optimal conditions for induction of human IFN and of its mRNA in these transformants resembled those needed for mouse IFN: high concentrations of DEAE-dextran and low concentrations of polyriboinosinic acid-polyribocytidylic acid. Superinduction by inhibitors of protein synthesis which strongly stimulate IFN-beta 1 induction in human cells had only a small effect on human IFN induction in bovine papillomavirus IFN-beta 1-transformed mouse cells. In contrast, cycloheximide without double-stranded RNA could induce significant levels of human IFN in the bovine papillomavirus IFN-beta 1 mouse transformants. After cycloheximide treatment, these cells contained IFN-beta 1 mRNA whose 5' ends originated in the authentic start site of the human IFN-beta 1 gene, as shown by S1 nuclease mapping. The transferred human gene, propagated extrachromosomally in the mouse cells, was, therefore, inducible under conditions different from those in human cells. The results also confirmed that the inhibitor of protein synthesis, cycloheximide, can induce expression of a human IFN gene.

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Transcriptional organization of bovine papillomavirus type 1.

Multiple bovine papillomavirus type 1 (BPV-1)-specific polyadenylated RNA species in a BPV-1-infected bovine fibropapilloma were identified and mapped. All of the RNA species were transcribed from the same DNA strand of the BPV-1 genome. Five RNA species previously identified in BPV-1-transformed mouse cells were also present in the bovine fibropapilloma. These five species measured 1,050, 1,150, 1,700, 3,800, and 4,050 bases, mapped within the 69% transforming segment of the BPV-1 genome, and shared a 3' coterminus at 0.53 map units (m.u.). The 5' ends of the bodies of these distinct transcripts were located at ca. 0.03, 0.09, 0.34, 0.39, and 0.41 m.u. Additional polyadenylated RNA species not present in BPV-1-transformed mouse cells were specific for the BPV-1-infected bovine fibropapilloma and measured 1,700, 3,700, 3,800, 6,700, and 8,000 bases. These wart-specific species shared a 3' coterminus at 0.90 m.u. The 5' termini of the bodies of the 1,700- and 3,800-base species mapped at 0.71 and 0.42 m.u., respectively. Exonuclease VII analysis failed to reveal any internal splicing in these two species; however, the presence of small remote 5' leader sequences could not be ruled out. The 3,700-base species hybridized to DNA fragments from the 69% transforming segment as well as from the 31% nontransforming segment of the BPV-1 genome; however, this species was not precisely mapped. The 5' termini of the two largest RNA species (6,700 and 8,000 bases in size) were located at ca. 0.01 and 0.90 m.u., respectively. Since the 5' ends of these mapped adjacent to a TATAAA sequence which could possibly serve as an element of a transcriptional promoter, it is possible that one or both of these species represent nonspliced precursor RNA molecules.

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A stable bovine papillomavirus hybrid plasmid that expresses a dominant selective trait.

We describe a bovine papillomavirus hybrid plasmid containing the neomycin resistance gene from Tn5 inserted into a mammalian cell transcriptional unit. This plasmid is maintained as a stable extrachromosomal element (20 to 100 copies per diploid genome) in mouse cells selected either for the transformed phenotype or for resistance to the aminoglycoside G418. Cells selected for G418 resistance initially display a flat, nontransformed phenotype before exhibiting the gross morphological characteristics of transformation. The delay in the appearance of the transformed phenotype indicated that some intracellular event or series of events subsequent to the establishment of transcriptionally active bovine papillomavirus 1 hybrid plasmid is required for the manifestation of the transformed phenotype.

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Inducible expression of the human interferon beta 1 gene linked to a bovine papilloma virus DNA vector and maintained extrachromosomally in mouse cells.

A 1.6-kilobase DNA segment of the genomic human interferon beta 1 (IF-beta 1) gene was inserted into each of two possible orientations at the single HindIII site of a recombinant plasmid pBPV69T, consisting of the 69% transforming region of the bovine papilloma virus type 1 (BPV-1) and a modified SalI-SalI fragment of plasmid pBR322. After cleavage of the pBR322 sequences from this recombinant, BPV69T-IF-beta 1 hybrid DNAs were transfected onto C127 mouse cells by the standard calcium precipitation technique. Mouse cells transformed by this hybrid DNA produced low levels of human IF-beta 1 constitutively and responded to induction with either inactivated Newcastle disease virus or polyriboinosinic acid-polyribocytidylic acid. The BPV69T-IF-beta 1 hybrid DNA was nonintegrated in the transformed mouse cells but had acquired DNA sequences as a result of the transfection. Accurate transcripts of the IF-beta 1 mRNA were detected in cells only after induction. When the IF-beta 1 gene was oriented in the plasmid in the same direction of transcription as the BPV-1 genome, transcription was promoted from within the BPV-1 sequences. These results indicate that the regulatory sequences responsible for the inducible expression of the human IF-beta 1 gene are present in the 1.6-kilobase genomic segment and that these sequences can function in a free extrachromosomal state linked to BPV-1 sequences.

Animals↗

The primary structure and genetic organization of the bovine papillomavirus type 1 genome.

The complete nucleotide sequence of the doubt-stranded circular DNA of bovine papillomavirus type 1 (BPV-1) was determined. Analysis of this sequence in conjunction with known transcriptional data for the virus provides a basis of determining the organization of the papillomavirus genome. All the major open reading frames are located on the same DNA strand. The region transcribed in BPV-transformed cells contains open frames in all three translational frames whereas the region transcribed in productively infected bovine fibropapillomas is characterized by two large open reading frames partitioned by a single translational stop codon. The localization of sequences diagnostic of promoters and polyadenylation sites suggests that splicing is involved in the biosynthesis of the viral mRNAs. A sequence comparison indicates the genome organization of the bovine papillomavirus and that of the members of the simian virus 40-polyomavirus subgroup to be distinct, suggesting that these two groups of viruses are evolutionarily unrelated.

Base Sequence↗

Transformation and replication in mouse cells of a bovine papillomavirus--pML2 plasmid vector that can be rescued in bacteria.

The unique ability of bovine papillomavirus (BPV-1) DNA to replicate as a stable, multicopy plasmid in transformed mouse cells has led to its utilization as a eukaryotic cloning vector. One limitation of the system has been the marked reduction in transformation efficiency when BPV-1 DNA or the subgenomic transforming segment of BPV-1 DNA (BPV69T) is covalently linked to pBR322 sequences. A dual host replicon consisting of BPV-1 DNA and pML2d, a deletion variant of pBR322, was constructed and shown to be highly efficient for transformation of mouse cells in vitro. The hybrid molecule replicates as a stable, unintegrated, multicopy plasmid in transformed mouse cells. The resident BPV-1-pML2d plasmid DNA was rescued in bacteria and the recovered plasmids were shown to be identical in structure and to have the same transformation efficiency as the original transforming DNA. In contrast, the transforming efficiency of BPV69T DNA is less than 1/100th that of BPV-1 DNA when the DNA is left covalently linked to pML2d. These observations indicate that, although the nontransforming region of BPV-1 (BPV31NT) DNA is not essential for transformation, it has a facilitative role in the transformation process.

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