The apoptosome: heart and soul of the cell death machine

AM Chinnaiyan - Neoplasia, 1999 - Elsevier
Neoplasia, 1999Elsevier
Apoptosis is a fundamental biologic process by which metazoan cells orchestrate their own
self-demise. Genetic analyses of the nematode C elegans identified three core components
of the suicide apparatus which include CED-3, CED-4, and CED-9. An analogous set of core
constituents exists in mammalian cells and includes caspase-9, Apaf-1, and bcl-2/x L,
respectively. CED-3 and CED-4, along with their mammalian counterparts, function to kill
cells, whereas CED-9 and its mammalian equivalents protect cells from death. These central …
Abstract
Apoptosis is a fundamental biologic process by which metazoan cells orchestrate their own self-demise. Genetic analyses of the nematode C elegans identified three core components of the suicide apparatus which include CED-3, CED-4, and CED-9. An analogous set of core constituents exists in mammalian cells and includes caspase-9, Apaf-1, and bcl-2/xL, respectively. CED-3 and CED-4, along with their mammalian counterparts, function to kill cells, whereas CED-9 and its mammalian equivalents protect cells from death. These central components biochemically intermingle in a ternary complex recently dubbed the “apoptosome.” The C elegans protein EGL-1 and its mammalian counterparts, pro-apoptotic members of the bcl-2 family, induce cell death by disrupting apoptosome interactions. Thus, EGL-1 may represent a primordial signal integrator for the apoptosome. Various biochemical processes including oligomerization, adenosine triphosphate ATP/dATP binding, and cytochrome c interaction play a role in regulating the ternary death complex. Recent studies suggest that cell death receptors, such as CD95, may amplify their suicide signal by activating the apoptosome. These mutual associations by core components of the suicide apparatus provide a molecular framework in which diverse death signals likely interface. Understanding the apoptosome and its cellular connections will facilitate the design of novel therapeutic strategies for cancer and other disease states in which apoptosis plays a pivotal role.
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