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1.
Cold Spring Harb Protoc ; 2015(12): pdb.prot087080, 2015 Dec 02.
Article in English | MEDLINE | ID: mdl-26631121

ABSTRACT

This protocol describes an in vitro model for studying the mechanisms of caspase activation and native apoptosome complex assembly in cell-free extracts. Active caspases in dATP-activated lysates are detected by fluorimetry using a tetrapeptide substrate (DEVD) tagged with a fluorophore (AFC), which, when released, produces a real-time readout for caspase-3 and -7 (DEVDase) activity. Gel filtration is used to isolate the apoptosome complex from the activated lysates, and assembly of Apaf-1 and caspase-9 from their monomeric forms into the multiprotein apoptosome can be confirmed via western blot. Apoptosome complex activity can be shown by incubation with exogenous procaspase-3 and -7 followed by fluorimetric bioassay (to confirm functionality of the processed effector caspases) and/or western blotting (for detection of cleaved caspase-3 and -7). A method for preparation of free procaspases for the bioassay is also described.


Subject(s)
Apoptosomes/chemistry , Apoptosomes/isolation & purification , Cell-Free System , Animals , Blotting, Western , Caspases/analysis , Cell Line , Chromatography, Gel , Fluorometry , Humans , Rats
2.
EMBO J ; 28(13): 1916-25, 2009 Jul 08.
Article in English | MEDLINE | ID: mdl-19494828

ABSTRACT

During stress-induced apoptosis, the initiator caspase-9 is activated by the Apaf-1 apoptosome and must remain bound to retain significant catalytic activity. Nevertheless, in apoptotic cells the vast majority of processed caspase-9 is paradoxically observed outside the complex. We show herein that apoptosome-mediated cleavage of procaspase-9 occurs exclusively through a CARD-displacement mechanism, so that unlike the effector procaspase-3, procaspase-9 cannot be processed by the apoptosome as a typical substrate. Indeed, procaspase-9 possessed higher affinity for the apoptosome and could displace the processed caspase-9 from the complex, thereby facilitating a continuous cycle of procaspase-9 recruitment/activation, processing, and release from the complex. Owing to its rapid autocatalytic cleavage, however, procaspase-9 per se contributed little to the activation of procaspase-3. Thus, the Apaf-1 apoptosome functions as a proteolytic-based 'molecular timer', wherein the intracellular concentration of procaspase-9 sets the overall duration of the timer, procaspase-9 autoprocessing activates the timer, and the rate at which the processed caspase-9 dissociates from the complex (and thus loses its capacity to activate procaspase-3) dictates how fast the timer 'ticks' over.


Subject(s)
Apoptosomes/metabolism , Apoptotic Protease-Activating Factor 1/metabolism , Caspase 9/metabolism , Animals , Apoptosis , Apoptosomes/genetics , Apoptosomes/isolation & purification , Apoptotic Protease-Activating Factor 1/genetics , Apoptotic Protease-Activating Factor 1/isolation & purification , Caspase 3/genetics , Caspase 3/isolation & purification , Caspase 3/metabolism , Caspase 9/genetics , Caspase 9/isolation & purification , Cell Line , Cloning, Molecular , Enzyme Activation , Humans , Mice , Mutation
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