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PMID: 9748148 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

Combination E2F-1 and p53 gene transfer does not enhance growth inhibition in human squamous cell carcinoma of the head and neck.

Frank DK, Liu TJ, Frederick MJ, Clayman GL

Abstract

Ample data exist contending that wild-type p53 and E2F-1 cooperate to mediate apoptosis, that E2F-1-mediated apoptosis is p53 dependent in some situations, and that E2F-1 can induce accumulation of p53 in mammalian cells. These data support the investigation of the biological consequences of combined wild-typep53 and E2F-1 overexpression in human squamous cell carcinoma of the head and neck (SCCHN) for the purpose of developing apoptosis-inducing molecular intervention strategies for the management of this devastating disease. The recombinant adenovirus (Ad) vectors Ad-p53 and Ad-E2F-1 were used for wild-type p53 and E2F-1 gene transfers, respectively, into SCCHN cell lines TU138 and TU167. SCCHN cells transduced with either p53, E2F-1, or both underwent in vitro growth analysis, which revealed that simultaneous p53 and E2F-1 gene transfer did not result in enhanced growth inhibition. To explain our growth assay findings on the basis of potential negative molecular interactions between E2F-1 and p53, Western and Northern blotting analyses were performed to investigate the differential expression of the downstream p53-transactivated genes, p21Waf1 and BAX, under various p53 and E2F-1 gene transfer conditions. Whereas Western immunoblotting demonstrated that E2F-1 antagonized p53 induction of p21Waf1 and BAX, Northern blotting revealed that this interference was pretranslationally regulated and p53 dependent. Coimmunoprecipitation assay confirmed that the wild-type p53 and E2F-1 gene products formed protein-protein complexes in our cell lines. Our in vitro data demonstrated that in SCCHN, E2F-1 interferes with induction of p53-transactivated genes, probably through the formation of protein-protein complexes. Simultaneous p53 and E2F-1 gene transfer is not therapeutically advantageous in this in vitro model of SCCHN.

MeSH Terms
Apoptosis/physiology Carcinoma, Squamous Cell/genetics,metabolism,pathology Carrier Proteins Cell Cycle Proteins Cell Division/physiology Cyclin-Dependent Kinase Inhibitor p21 Cyclins/genetics DNA-Binding Proteins E2F Transcription Factors E2F1 Transcription Factor Gene Expression Gene Transfer Techniques Genes, p53 Head and Neck Neoplasms/genetics,metabolism,pathology Humans Proto-Oncogene Proteins/genetics Proto-Oncogene Proteins c-bcl-2 Retinoblastoma-Binding Protein 1 Transcription Factor DP1 Transcription Factors/genetics,metabolism Tumor Suppressor Protein p53/biosynthesis,genetics,metabolism bcl-2-Associated X Protein
Chemicals
BAX protein, human CDKN1A protein, human Carrier Proteins Cell Cycle Proteins Cyclin-Dependent Kinase Inhibitor p21 Cyclins DNA-Binding Proteins E2F Transcription Factors E2F1 Transcription Factor E2F1 protein, human Proto-Oncogene Proteins Proto-Oncogene Proteins c-bcl-2 Retinoblastoma-Binding Protein 1 Transcription Factor DP1 Transcription Factors Tumor Suppressor Protein p53 bcl-2-Associated X Protein
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Frank D K
Department of Head and Neck Surgery, The University of Texas M.D. Anderson Cancer Center, Houston 77030, USA.
Liu T J
Frederick M J
Clayman G L
Article Info
Journal
Clinical cancer research : an official journal of the American Association for Cancer Research
Abbr.
Clin Cancer Res
ISSN
1078-0432
Published
1998-09-00
Pages
2265-72
Language
English
Region
United States
NLM ID
9502500
Subset
IM
Grants
NIDCR NIH HHS · 1-P50-DE11906 · United States
ADAMHA HHS · R29 AD-DE11689-01A1 · United States
NCI NIH HHS · T32 CA60374-03 · United States
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