The Nedd4-like family of E3 ubiquitin ligases and cancer

被引:0
作者
Ceshi Chen
Lydia E. Matesic
机构
[1] Albany Medical College,The Center for Cell Biology and Cancer Research
[2] University of South Carolina,Department of Biological Sciences
来源
Cancer and Metastasis Reviews | 2007年 / 26卷
关键词
Nedd4; WWP1; Smurf; AIP4/Itch; E3; Ubiquitination; Cancer;
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摘要
Accumulating evidence suggests that E3 ubiquitin ligases play important roles in cancer development. In this article, we provide a comprehensive summary of the roles of the Nedd4-like family of E3 ubiquitin ligases in human cancer. There are nine members of the Nedd4-like E3 family, all of which share a similar structure, including a C2 domain at the N-terminus, two to four WW domains in the middle of the protein, and a homologous to E6-AP COOH terminus domain at the C-terminus. The assertion that Nedd4-like E3s play a role in cancer is supported by the overexpression of Smurf2 in esophageal squamous cell carcinoma, WWP1 in prostate and breast cancer, Nedd4 in prostate and bladder cancer, and Smurf1 in pancreatic cancer. Because Nedd4-like E3s regulate ubiquitin-mediated trafficking, lysosomal or proteasomal degradation, and nuclear translocation of multiple proteins, they modulate important signaling pathways involved in tumorigenesis like TGFβ, EGF, IGF, VEGF, SDF-1, and TNFα. Additionally, several Nedd4-like E3s directly regulate various cancer-related transcription factors from the Smad, p53, KLF, RUNX, and Jun families. Interestingly, multiple Nedd4-like E3s show ligase independent function. Furthermore, Nedd4-like E3s themselves are frequently regulated by phosphorylation, ubiquitination, translocation, and transcription in cancer cells. Because the regulation and biological output of these E3s is such a complex process, study of the role of these E3s in cancer development poses some challenges. However, understanding the oncogenic potential of these E3s may facilitate the identification and development of biomarkers and drug targets in human cancer.
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页码:587 / 604
页数:17
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[1]  
Pickart C. M.(2004)Back to the future with ubiquitin Cell 116 181-190
[2]  
Pickart C. M.(2004)Polyubiquitin chains: Polymeric protein signals Current Opinion in Chemical Biology 8 610-616
[3]  
Fushman D.(2003)Regulation of membrane protein transport by ubiquitin and ubiquitin-binding proteins Annual Review of Cell and Developmental Biology 19 141-172
[4]  
Hicke L.(2006)Drug discovery in the ubiquitin-proteasome system Nature Reviews. Drug Discovery 5 596-613
[5]  
Dunn R.(2006)Genetic and expression aberrations of e3 ubiquitin ligases in human breast cancer Molecular Cancer Research 4 695-707
[6]  
Nalepa G.(1997)cDNA cloning, expression analysis, and mapping of the mouse Nedd4 gene Genomics 40 435-443
[7]  
Rolfe M.(1997)The C2 domain of the ubiquitin protein ligase Nedd4 mediates Ca2+-dependent plasma membrane localization Journal of Biological Chemistry 272 32329-32336
[8]  
Harper J. W.(2004)The novel E3 ubiquitin ligase Tiul1 associates with TGIF to target Smad2 for degradation EMBO Journal 23 3780-3792
[9]  
Chen C.(1999)Function of WW domains as phosphoserine- or phosphothreonine-binding modules Science 283 1325-1328
[10]  
Seth A. K.(2004)The Nedd4 family of E3 ubiquitin ligases: Functional diversity within a common modular architecture Oncogene 23 1972-1984