Tumorigenicity of cells transformed by adenovirus type 12 by evasion of T-cell immunity (original) (raw)

Tumorigenicity of adenovirus-transformed rodent cells is influenced by at least two regions of adenovirus type 12 early region 1A

frank graham

Journal of Virology, 1994

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Tumorigenicity of hamster and mouse cells transformed by adenovirus types 2 and 5 is not influenced by the level of class I major histocompatibility antigens expressed on the cells

Arthur Levine

Proceedings of the National Academy of Sciences, 1986

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In vitro traits of adenovirus-transformed cell lines and their relevance to tumorigenicity in nude mice

Lan Bo Chen

Cell, 1977

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Expression of class I major histocompatibility antigens switched off by highly oncogenic adenovirus 12 in transformed rat cells

Gustavo Simoes

Nature, 1983

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Adenovirus type 12 E1B 19-kilodalton protein is not required for oncogenic transformation in rats

Carmela Lamberti

Journal of Virology, 1988

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Different activities of the adenovirus types 5 and 12 E1A regions in transformation with the EJ Ha-ras oncogene

henk van kranen

Journal of Virology, 1986

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Adenovirus Type 12-Rat Embryo Transformation System

Massimiliano Benelli

Journal of Virology, 1967

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Pre-existing immunity to adenovirus does not prevent tumor regression following intratumoral administration of a vector expressing IL-12 but inhibits virus dissemination

frank graham

Gene Therapy, 1997

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Expression of the adenovirus E1A oncogene during cell transformation is sufficient to induce susceptibility to lysis by host inflammatory cells

Stephen H Pilder

Proceedings of the National Academy of Sciences, 1986

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Properties of rat cells transformed by DNA plasmids containing adenovirus type 12 E1 DNA or specific fragments of the E1 region: comparison of transforming frequencies

Roger Grand

Cancer research, 1985

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Immunocompetent Syngeneic Cotton Rat Tumor Models for the Assessment of Replication-Competent Oncolytic Adenovirus

Brian Morrison

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The Level of Expression of Adenovirus Type 2 Transforming Genes Governs Sensitivity to Nonspecific Immune Cytolysis and Other Phenotypic Properties of Adenovirus 2-Simian Virus 40-Transformed Cell Hybrids

Arthur Levine

Molecular and Cellular Biology, 1985

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Expression of histocompatibility antigens H-2K, -D, and -L is reduced in adenovirus-12-transformed mouse cells and is restored by interferon gamma

Barbara B. Knowles

Proceedings of the National Academy of Sciences, 1985

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The efficacy of oncolytic adenovirus is mediated by T cell responses against virus and tumor in Syrian hamster model

Yaohe Wang

Clinical cancer research : an official journal of the American Association for Cancer Research, 2016

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Identification of genes differentially expressed as result of adenovirus type 5- and adenovirus type 12-transformation

Paul Kellam

Bmc Genomics, 2009

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Mitogenic and antimitogenic transforming growth factors secreted by adenovirus 2- and simian virus 40-transformed hamster cells: possible roles in promoting tumorigenesis

Arthur Levine

Cancer research, 1987

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Adenovirus type 12 early region 1A proteins repress class I HLA expression in transformed human cells

K. Eager

Proceedings of the National Academy of Sciences, 1986

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Integrated viral genomes can be lost from adenovirus type 12-induced hamster tumor cells in a clone-specific, multistep process with retention of the oncogenic phenotype

rainer schubbert

Virus Research, 1999

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Adenovirus 2 early gene expression promotes susceptibility to effector cell lysis of hybrids formed between hamster cells transformed by adenovirus 2 and simian virus 40

Arthur Levine

Proceedings of the National Academy of Sciences, 1983

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Integration sites of adenovirus type 12 DNA in transformed hamster cells and hamster tumor cells

S. Stabel

Journal of virology, 1980

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Pre-existing immunity and passive immunity to adenovirus 5 prevents toxicity caused by an oncolytic adenovirus vector in the Syrian hamster model

Debanjan Patra

Molecular Therapy, 2009

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Human Adenoviruses: Evading Detection by Cytotoxic T Lymphocytes

Kersten Hall

Seminars in Virology, 1998

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Studies of the resistance and susceptibility to viral superinfection of adenovirus 12 hamster tumor cells

Samuel Katz

Archiv f�r die gesamte Virusforschung, 1967

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Isolation and characterization of four adenovirus type 12-transformed human embryo kidney cell lines

Roger Grand

Molecular and Cellular Biology, 1984

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Retinoblastoma-like neoplasm induced in C3H/BifB/Ki strain mice by human adenovirus serotype 12

Mary Hunzicker-Dunn

Acta Neuropathologica, 1977

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Identification of genes associated with adenovirus 12 tumorigenesis by microarray

Robert Ricciardi

Virology, 2003

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Posttranslational modification at the N terminus of the human adenovirus type 12 E1A 235R tumor antigen

Janice Marcon

Journal of Virology, 1986

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Revertants of adenovirus type-12-transformed hamster cells have lost part of the viral genomes

S. Stabel

International Journal of Cancer, 1979

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Implication of Interfering Antibody Formation and Apoptosis as Two Different Mechanisms Leading to Variable Duration of Adenovirus-Mediated Transgene Expression in Immune-Competent Mice

Mark Kay

Journal of Virology

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Impact of preimmunization on adenoviral vector expression and toxicity in a subcutaneous mouse cancer model

Hugo Barrera-saldaña

Molecular therapy : the journal of the American Society of Gene Therapy, 2002

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Establishment and characterization of hamster cell lines transformed by restriction endonuclease fragments of adenovirus 5

frank graham

Journal of Virology, 1984

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Adenovirus 12S E1A Gene Represses Differentiation of F9 Teratocarcinoma Cells

Stephen Devoto

Proceedings of The National Academy of Sciences, 1990

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In vitro synthesis of adenovirus type 5 T antigens. II. Translation of virus-specific RNA from cells transformed by fragments of adenovirus type 5 DNA

Henk Jochemsen

Journal of Virology, 1981

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Adenovirus vaccination againstneu oncogene exerts long-term protection from tumorigenesis in BALB/neuT transgenic mice

Sridhar Dharmapuri

International Journal of Cancer, 2007

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Viral DNA sequences and gene products in hamster cells transformed by adenovirus type 2

Clark Tibbetts

Journal of virology, 1978

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