Caspases play a central role in apoptosis that is essential for tissue development, homeostasis and tumor suppression. In the intrinsic pathway, caspase 9 activation is controlled positively by mitochondrial cytochrome c release and negatively by the inhibitor of apoptosis proteins (lAP's) that are subject to inhibition by SMAC/Diablo. Negative regulation of caspase activation in the extrinsic death receptor pathway is poorly understood. Using a yeast two-hybrid screen we have identified a novel Caspase 8 and 10-Associating and degrading Ring domain Protein, CARP. CARP specifically interacts with the death effector domains of caspase 8 and 10, but not caspase 9, FLIP, or FADD. Introduction of CARP into human cells leads to degradation of caspases 8 and 10, but not caspase 9. CARP does not contain a classical BIR domain found in the lAP's but possesses ubiquitin ligase activity mediated by its ring domain. Human cells exposed to the death ligands Fas or TRAIL rapidly cleave CARP protein, suggesting a model wherein elimination of CARP may be an early step during programmed cell death signaling by the extrinsic pathway. The current proposal has the following goals:
Specific Aim #1 : To map determinants of ubiquitin ligase activity and downstream function of CARP.
Specific Aim #2 : To understand regulation and cleavage of CARP.
Specific Aim 3 : To study the functional consequences of perturbing or blocking CARP expression. These studies should provide novel insights into the cellular control of the extrinsic pathway of apoptosis.

Agency
National Institute of Health (NIH)
Institute
National Cancer Institute (NCI)
Type
Research Project (R01)
Project #
5R01CA097100-04
Application #
6915550
Study Section
Special Emphasis Panel (ZRG1-CPA (05))
Program Officer
Spalholz, Barbara A
Project Start
2002-07-01
Project End
2007-06-30
Budget Start
2005-07-15
Budget End
2006-06-30
Support Year
4
Fiscal Year
2005
Total Cost
$339,325
Indirect Cost
Name
University of Pennsylvania
Department
Internal Medicine/Medicine
Type
Schools of Medicine
DUNS #
042250712
City
Philadelphia
State
PA
Country
United States
Zip Code
19104
Liao, Wentao; Xiao, Qi; Tchikov, Vladimir et al. (2008) CARP-2 is an endosome-associated ubiquitin ligase for RIP and regulates TNF-induced NF-kappaB activation. Curr Biol 18:641-9
Yang, Wensheng; Dicker, David T; Chen, Jiandong et al. (2008) CARPs enhance p53 turnover by degrading 14-3-3sigma and stabilizing MDM2. Cell Cycle 7:670-82
Yang, Wensheng; Rozan, Laura M; McDonald 3rd, E Robert et al. (2007) CARPs are ubiquitin ligases that promote MDM2-independent p53 and phospho-p53ser20 degradation. J Biol Chem 282:3273-81
Ricci, M Stacey; Kim, Seok-Hyun; Ogi, Kazuhiro et al. (2007) Reduction of TRAIL-induced Mcl-1 and cIAP2 by c-Myc or sorafenib sensitizes resistant human cancer cells to TRAIL-induced death. Cancer Cell 12:66-80
Rozan, Laura M; El-Deiry, Wafik S (2006) Identification and characterization of proteins interacting with Traf4, an enigmatic p53 target. Cancer Biol Ther 5:1228-35
Hecker, Timothy P; Ding, Qiang; Rege, Tanya A et al. (2004) Overexpression of FAK promotes Ras activity through the formation of a FAK/p120RasGAP complex in malignant astrocytoma cells. Oncogene 23:3962-71
McDonald 3rd, E Robert; El-Deiry, Wafik S (2004) Suppression of caspase-8- and -10-associated RING proteins results in sensitization to death ligands and inhibition of tumor cell growth. Proc Natl Acad Sci U S A 101:6170-5