Nonlinear regulation of commitment to apoptosis by simultaneous inhibition of Bcl-2 and XIAP in leukemia and lymphoma cells
Joanna Skommer, Somkanya C Das, Arjun Nair, Thomas Brittain, Subhadip, Raychaudhuri

TL;DR
This study demonstrates that combined inhibition of Bcl-2 and XIAP induces apoptosis in leukemia and lymphoma cells through a nonlinear regulatory mechanism, supported by computational modeling and experimental validation.
Contribution
It introduces a novel nonlinear model of apoptotic regulation showing how simultaneous Bcl-2 and XIAP inhibition enhances apoptosis in cancer cells.
Findings
Inhibition of XIAP has a nonlinear effect on apoptosis sensitization.
Combination therapy with BH3 mimetics and XIAP inhibitors is more effective.
Computational model aligns with experimental results.
Abstract
Apoptosis is a complex pathway regulated by the concerted action of multiple pro- and anti-apoptotic molecules. The intrinsic (mitochondrial) pathway of apoptosis is governed up-stream of mitochondria, by the family of Bcl-2 proteins, and down-stream of mitochondria, by low-probability events, such as apoptosome formation, and by feedback circuits involving caspases and inhibitor of apoptosis proteins (IAPs), such as XIAP. All these regulatory mechanisms ensure that cells only commit to death once a threshold of damage has been reached and the anti-apoptotic reserve of the cell is overcome. As cancer cells are invariably exposed to strong intracellular and extracellular stress stimuli, they are particularly reliant on the expression of anti-apoptotic proteins. Hence, many cancer cells undergo apoptosis when exposed to agents that inhibit anti-apoptotic Bcl-2 molecules, such as BH3…
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Taxonomy
TopicsCell death mechanisms and regulation · RNA Interference and Gene Delivery · Cancer therapeutics and mechanisms
