ISI Web of Knowledge Take the next step  
Web of Science®
 
Previous Record (inactive) Record 1  of  1 Next Record (inactive)
Record from Web of Science®
ACTIVATION OF THE CRYPTIC DNA-BINDING FUNCTION OF MUTANT FORMS OF P53
Author(s): HUPP TR, MEEK DW, MIDGLEY CA, LANE DP
Source: NUCLEIC ACIDS RESEARCH    Volume: 21    Issue: 14    Pages: 3167-3174    Published: JUL 11 1993  
Times Cited: 204     References: 56     
Abstract: Wild type p53 assembles into a latent multiprotein complex which can be activated for sequence-specific DNA binding in vitro by proteins targeting the carboxy-terminal domain. Using an optimized system coupling the post-translational modification of wild type p53 to activation of sequence specific DNA binding, we examined the affects of common mutations on the cryptic DNA binding function of p53. Two mutant forms of p53 were shown to be efficiently converted from the latent state by PAb421 and DnaK, but were defective in activation by casein kinase II, indicating that mutant p53 may not be receptive to allosteric regulation by casein kinase II phosphorylation. A reactive sulfhydryl group is absolutely required for DNA binding by wild type and mutant forms of p53 once converted to the activated state. Together, these data show that some mutant forms of p53 harbour the wild-type machinery required to engage in sequence-specific DNA binding and define a signalling pathway whose inactivation may directly result in a loss of p53 function.
Document Type: Article
Language: English
Addresses:
1. UNIV DUNDEE, DEPT BIOCHEM, CANC RES CAMPAIGN LABS, DUNDEE DD1 4HN, SCOTLAND
2. UNIV DUNDEE, DEPT BIOCHEM, MRC, PROT PHOSPHORYLAT UNIT, DUNDEE DD1 4HN, SCOTLAND
Publisher: OXFORD UNIV PRESS UNITED KINGDOM, WALTON ST JOURNALS DEPT, OXFORD, ENGLAND OX2 6DP
Subject Category: Biochemistry & Molecular Biology
IDS Number: LN960
ISSN: 0305-1048
Previous Record (inactive) Record 1  of  1 Next Record (inactive)
Record from Web of Science®
  
Thomson Reuters Logo