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Publication : The apoptosome activates caspase-9 by dimerization.

First Author  Pop C Year  2006
Journal  Mol Cell Volume  22
Issue  2 Pages  269-75
PubMed ID  16630894 Mgi Jnum  J:320293
Mgi Id  MGI:6870994 Doi  10.1016/j.molcel.2006.03.009
Citation  Pop C, et al. (2006) The apoptosome activates caspase-9 by dimerization. Mol Cell 22(2):269-75
abstractText  The apical protease of the human intrinsic apoptotic pathway, caspase-9, is activated in a polymeric activation platform known as the apoptosome. The mechanism has been debated, and two contrasting hypotheses have been suggested. One of these postulates an allosteric activation of monomeric caspase-9; the other postulates a dimer-driven assembly at the surface of the apoptosome--the "induced proximity" model. We show that both Hofmeister salts and a reconstituted mini-apoptosome activate caspase-9 by a second-order process, compatible with a conserved dimer-driven process. Significantly, replacement of the recruitment domain of the apical caspase of the extrinsic apoptotic pathway, caspase-8, by that of caspase-9 allows activation of this hybrid caspase by the apoptosome. Consequently, apical caspases can be activated simply by directing their zymogens to the apoptosome, ruling out the requirement for allosteric activation and supporting an induced proximity dimerization model for apical caspase activation in vivo.
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