Design and properties of a myc derivative that efficiently homodimerizes

被引:163
作者
Soucek, L
Helmer-Citterich, M
Sacco, A
Jucker, R
Cesareni, G
Nasi, S [1 ]
机构
[1] Univ La Sapienza, CNR, Ctr Acidi Nucl, I-00185 Rome, Italy
[2] Univ Roma Tor Vergata, Dipartimento Biol, I-00173 Rome, Italy
关键词
myc; bHLHZip domain; molecular modelling; protein dimerization; cell proliferation;
D O I
10.1038/sj.onc.1202199
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
bHLH and bHLHZip are highly conserved structural domains mediating DNA binding and specific protein-protein interactions. They are present in a family of transcription factors, acting as dimers, and their selective dimerization is utilized to switch on and off cell proliferation, differentiation or apoptosis, Myc is a bHLHZip protein involved in growth control and cancer, which operates in a network with the structurally related proteins Max, Mad and Mnt, It does not form homodimers, working as a heterodimer with Max; Mas, instead, forms homodimers and heterodimers with Mad and Mnt. Myc/Max dimers activate gene transcription, while Mad/Max and Mnt/Max complexes are Myc/Mas antagonists and act as repressors. Modifying the molecular recognition of dimers may provide a tool for interfering with MSc function and, in general, for directing the molecular switches operated via bHLH(Zip) proteins. By molecular modelling mutagenesis, we analysed the contribution of amino acids to the molecular recognition of Myc, creating bHLHZip domains with altered dimerization specificity. We report that Myc recognition specificity is encoded in a short region within the leucine zipper; mutation of four amino acids generates a protein, Omomyc, that homodimerizes efficiently and can still heterodimerize with wild type Myc and Max, Omomyc sequestered Myc in complexes with low DNA binding efficiency, preventing binding to Max and inhibiting Myc transcriptional activator function. Consistently with these results, Omomyc produced a proliferation arrest in NIH3T3 cells, These data demonstrate the feasibility of interfering with fundamental biological processes, such as proliferation, by modifying the dimerization selectivity of a bHLHZip protein; this may facilitate the design of peptides of potential pharmacological interest.
引用
收藏
页码:2463 / 2472
页数:10
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