Apoptosis provides a critical mechanism to destroy damaged cells. Failures in the apoptosis pathway (e.g. p53 mutations) commonly lead to the unregulated cell growth of cancer. Recent work has identified the well studied protein, cytochrome c, (Cc) as a critical intermediate in the apoptosis pathway. When released from mitochondria, Cc binds to an apoptotic regulator protein, Apaf-1. The Cc: Apaf-1 complex activates the protease caspase-9, which, in turn, activates additional proteases and nucleases. In this way the cytochrome c: Apaf-1 interaction plays a critical role in committing the cell to apoptosis. This complex thereby provides an attractive therapeutic target for cancer (and other diseases) where apoptosis plays a critical role. We propose to carry out detailed studies of the Apaf-1: Cc interaction. Studies include binding stoichiometry, binding free energies, environmental effects and regulator effects (pH, ionic strength, dATP). Effects of point mutations on recognition and binding will be assessed using a large library of Cc variants. Finally, mass spectrometric amide hydrogen exchange experiments are proposed to localize the binding interface by which Cc recognizes Apaf-1 within the Cc: Apaf-1 complex.

Agency
National Institute of Health (NIH)
Institute
National Institute of General Medical Sciences (NIGMS)
Type
Research Project (R01)
Project #
1R01GM059348-01A1
Application #
6043597
Study Section
Metallobiochemistry Study Section (BMT)
Program Officer
Ikeda, Richard A
Project Start
2000-02-01
Project End
2003-01-31
Budget Start
2000-02-01
Budget End
2001-01-31
Support Year
1
Fiscal Year
2000
Total Cost
$184,883
Indirect Cost
Name
Princeton University
Department
Chemistry
Type
Schools of Arts and Sciences
DUNS #
002484665
City
Princeton
State
NJ
Country
United States
Zip Code
08544
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