Literature DB >> 8643480

p53 as a target for cancer vaccines: recombinant canarypox virus vectors expressing p53 protect mice against lethal tumor cell challenge.

J Roth1, D Dittmer, D Rea, J Tartaglia, E Paoletti, A J Levine.   

Abstract

The p53 protein is an attractive target for immunotherapy, because mutations in the p53 gene are the most common genetic alterations found in human tumors. These mutations result in high levels of p53 protein in the tumor cell, whereas the expression level of wild-type p53 in nonmalignant tissue is usually much lower. Several canarypox virus recombinants expressing human or murine p53 in wild-type or mutant form were constructed. Immunization with these viruses protected BALB/c mice from a challenge with an isogenic and highly tumorigenic mouse fibroblast tumor cell line expressing high levels of mutant p53. The tumor protection was equally effective regardless of whether wild-type or mutant p53 was used for the immunization, indicating that the immunologic response was not dependent on any particular p53 mutation and that immunization with this live virus vaccine works effectively against mutant p53 protein expressed in a tumor cell. In tumors escaping immunologic rejection, the expression of the p53 protein was commonly down-regulated.

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Year:  1996        PMID: 8643480      PMCID: PMC39356          DOI: 10.1073/pnas.93.10.4781

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  32 in total

1.  The p53 proto-oncogene can act as a suppressor of transformation.

Authors:  C A Finlay; P W Hinds; A J Levine
Journal:  Cell       Date:  1989-06-30       Impact factor: 41.582

2.  Allele-specific motifs revealed by sequencing of self-peptides eluted from MHC molecules.

Authors:  K Falk; O Rötzschke; S Stevanović; G Jung; H G Rammensee
Journal:  Nature       Date:  1991-05-23       Impact factor: 49.962

3.  Cloning and expression of foreign genes in vaccinia virus, using a host range selection system.

Authors:  M E Perkus; K Limbach; E Paoletti
Journal:  J Virol       Date:  1989-09       Impact factor: 5.103

4.  Activating mutations for transformation by p53 produce a gene product that forms an hsc70-p53 complex with an altered half-life.

Authors:  C A Finlay; P W Hinds; T H Tan; D Eliyahu; M Oren; A J Levine
Journal:  Mol Cell Biol       Date:  1988-02       Impact factor: 4.272

Review 5.  The p53 tumour suppressor gene.

Authors:  A J Levine; J Momand; C A Finlay
Journal:  Nature       Date:  1991-06-06       Impact factor: 49.962

6.  Complex of simian virus 40 large-T antigen and host 53,000-molecular-weight protein in monkey cells.

Authors:  E Harlow; D C Pim; L V Crawford
Journal:  J Virol       Date:  1981-02       Impact factor: 5.103

Review 7.  p53 mutations in human cancers.

Authors:  M Hollstein; D Sidransky; B Vogelstein; C C Harris
Journal:  Science       Date:  1991-07-05       Impact factor: 47.728

8.  Mutant p53 DNA clones from human colon carcinomas cooperate with ras in transforming primary rat cells: a comparison of the "hot spot" mutant phenotypes.

Authors:  P W Hinds; C A Finlay; R S Quartin; S J Baker; E R Fearon; B Vogelstein; A J Levine
Journal:  Cell Growth Differ       Date:  1990-12

9.  Targeting p53 as a general tumor antigen.

Authors:  M Theobald; J Biggs; D Dittmer; A J Levine; L A Sherman
Journal:  Proc Natl Acad Sci U S A       Date:  1995-12-19       Impact factor: 11.205

10.  Increased expression of mutant forms of p53 oncogene in primary lung cancer.

Authors:  R Iggo; K Gatter; J Bartek; D Lane; A L Harris
Journal:  Lancet       Date:  1990-03-24       Impact factor: 79.321

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  25 in total

1.  Autoantibodies as reporters identifying aberrant cellular mechanisms in tumorigenesis.

Authors:  E M Tan
Journal:  J Clin Invest       Date:  2001-11       Impact factor: 14.808

2.  E1B 55-kilodalton oncoproteins of adenovirus types 5 and 12 inactivate and relocalize p53, but not p51 or p73, and cooperate with E4orf6 proteins to destabilize p53.

Authors:  S Wienzek; J Roth; M Dobbelstein
Journal:  J Virol       Date:  2000-01       Impact factor: 5.103

3.  Humoral immune response to p53 in malignant glioma.

Authors:  M Weller; A Bornemann; M Ständer; M Schabet; J Dichgans; R Meyermann
Journal:  J Neurol       Date:  1998-03       Impact factor: 4.849

Review 4.  Genetically engineered poxviruses for recombinant gene expression, vaccination, and safety.

Authors:  B Moss
Journal:  Proc Natl Acad Sci U S A       Date:  1996-10-15       Impact factor: 11.205

Review 5.  Applications of pox virus vectors to vaccination: an update.

Authors:  E Paoletti
Journal:  Proc Natl Acad Sci U S A       Date:  1996-10-15       Impact factor: 11.205

6.  Highly attenuated modified vaccinia virus Ankara (MVA) as an effective recombinant vector: a murine tumor model.

Authors:  M W Carroll; W W Overwijk; R S Chamberlain; S A Rosenberg; B Moss; N P Restifo
Journal:  Vaccine       Date:  1997-03       Impact factor: 3.641

Review 7.  The p53 Saga: Early Steps in the Development of Tumor Immunotherapy.

Authors:  Albert B DeLeo; Ettore Appella
Journal:  J Immunol       Date:  2020-05-01       Impact factor: 5.422

8.  Immunogenicity and safety of defective vaccinia virus lister: comparison with modified vaccinia virus Ankara.

Authors:  B T Ober; P Brühl; M Schmidt; V Wieser; W Gritschenberger; S Coulibaly; H Savidis-Dacho; M Gerencer; F G Falkner
Journal:  J Virol       Date:  2002-08       Impact factor: 5.103

9.  Inactivation of p53 but not p73 by adenovirus type 5 E1B 55-kilodalton and E4 34-kilodalton oncoproteins.

Authors:  J Roth; C König; S Wienzek; S Weigel; S Ristea; M Dobbelstein
Journal:  J Virol       Date:  1998-11       Impact factor: 5.103

10.  p53 and HLA class-I expression are not down-regulated in colorectal cancer liver metastases.

Authors:  Anand G Menon; Rob A E M Tollenaar; Cornelis J H van de Velde; Hein Putter; Connie M Janssen-van Rhijn; Rob Keijzer; Gert Jan Fleuren; Peter J K Kuppen
Journal:  Clin Exp Metastasis       Date:  2004       Impact factor: 5.150

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