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PMID: 15037656 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

The interaction of specific peptide aptamers with the DNA binding domain and the dimerization domain of the transcription factor Stat3 inhibits transactivation and induces apoptosis in tumor cells.

Molecular cancer research : MCR ·Vol. 2 ·No. 3 ·2004-03-00 ·Pages 170-82

Nagel-Wolfrum K, Buerger C, Wittig I, Butz K, Hoppe-Seyler F, Groner B

Abstract

The transcription factor signal transducer and activator of transcription (Stat) 3 is activated through the interleukin-6 family of cytokines and by binding of growth factors to the epidermal growth factor (EGF) receptor. It plays an essential role in embryonic development and assumes specialized tasks in many differentiated tissues. Constitutively activated Stat3 has been found in tumor cell lines and primary tumors and plays a crucial role in tumor cell survival and proliferation. To inhibit the oncogenic action of Stat3 in tumor cells, we have selected short peptides, so-called peptide aptamers, which specifically interact with defined functional domains of this transcription factor. The peptide aptamers were selected from a peptide library of high complexity by an adaptation of the yeast two-hybrid procedure. Peptide aptamers specifically interacting with the Stat3 dimerization domain caused inhibition of DNA binding activity and suppression of transactivation by Stat3 in EGF-responsive cells. Similarly, a peptide aptamer selected for its ability to recognize the Stat3 DNA binding domain inhibited DNA binding and transactivation by Stat3 following EGF stimulation of cells. Peptide aptamers were expressed in bacteria as fusion proteins with a protein transduction domain and introduced into human myeloma cells. This resulted in dose-dependent growth inhibition, down-regulation of Bcl-x(L) expression, and induction of apoptosis. The inhibition of Stat3 functions through the interaction with peptide aptamers counteracts the transformed phenotype and could become useful in targeted tumor therapy.

MeSH Terms
Animals Apoptosis/drug effects Caspase 3 Caspases/metabolism Cell Division/drug effects Cell Line, Tumor DNA-Binding Proteins/chemistry,metabolism Dimerization Gene Expression Regulation, Neoplastic/drug effects Humans Mice Neoplasms/drug therapy,genetics,metabolism,pathology Peptide Library Peptides/chemistry,metabolism,pharmacology Poly (ADP-Ribose) Polymerase-1 Poly(ADP-ribose) Polymerases Protein Binding Protein Structure, Tertiary Proteins/metabolism Proto-Oncogene Proteins c-bcl-2/metabolism STAT3 Transcription Factor Signal Transduction/drug effects Trans-Activators/chemistry,metabolism Transcriptional Activation/drug effects bcl-X Protein
Chemicals
BCL2L1 protein, human Bcl2l1 protein, mouse DNA-Binding Proteins Peptide Library Peptides Proteins Proto-Oncogene Proteins c-bcl-2 STAT3 Transcription Factor STAT3 protein, human Stat3 protein, mouse Trans-Activators bcl-X Protein Parp1 protein, mouse Poly (ADP-Ribose) Polymerase-1 Poly(ADP-ribose) Polymerases CASP3 protein, human Casp3 protein, mouse Caspase 3 Caspases
Authors & Affiliations
6 authors, click to expand affiliations / ORCID
Nagel-Wolfrum Kerstin
Georg-Speyer-Haus, Institute for Biomedical Research, Frankfurt am Main, Germany.
Buerger Claudia
Wittig Ilka
Butz Karin
Hoppe-Seyler Felix
Groner Bernd
Article Info
Journal
Molecular cancer research : MCR
Abbr.
Mol Cancer Res
ISSN
1541-7786
Published
2004-03-00
Pages
170-82
Language
English
Region
United States
NLM ID
101150042
Subset
IM
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