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Published on: March 5, 2018
Dual Site Phosphorylation of Caspase-7 by PAK2 Blocks Apoptotic Activity by Two Distinct Mechanisms
Scott J Eron1, Kishore Raghupathi1, Jeanne A Hardy1
1Department of Chemistry, University of Massachusetts Amherst, 104 LGRT, 710 North Pleasant Street, Amherst, MA 01003, USA.
Abstract:
Caspases, the cysteine proteases that execute apoptosis, are tightly regulated via phosphorylation by a series of kinases. Although all apoptotic caspases work in concert to promote apoptosis, different kinases regulate individual caspases. Several sites of caspase-7 phosphorylation have been reported, but without knowing the molecular details, it has been impossible to exploit or control these complex interactions, which normally prevent unwanted proliferation. During dysregulation, PAK2 kinase plays an alternative anti-apoptotic role, phosphorylating caspase-7 and promoting unfettered cell growth and chemotherapeutic resistance. PAK2 phosphorylates caspase-7 at two sites, inhibiting activity using two different molecular mechanisms, before and during apoptosis. Phosphorylation of caspase-7 S30 allosterically obstructs its interaction with caspase-9, preventing intersubunit linker processing, slowing or preventing caspase-7 activation. S239 phosphorylation renders active caspase-7 incapable of binding substrate, blocking later events in apoptosis. Each of these mechanisms is novel, representing new opportunities for synergistic control of caspases and their counterpart kinases.
Insights
PAK2 kinase phosphorylates caspase-7 at two sites, inhibiting apoptosis through distinct molecular mechanisms. This discovery offers new strategies for controlling cell growth and cancer therapy.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Oncology
Background:
- Caspases are key executioners of apoptosis, regulated by kinase phosphorylation.
- Dysregulated cell proliferation and chemoresistance are linked to altered caspase activity.
Purpose of the Study:
- To elucidate the molecular mechanisms by which PAK2 kinase phosphorylates caspase-7.
- To understand how these modifications impact caspase-7 activity and apoptosis.
Main Methods:
- Investigated the interaction between PAK2 kinase and caspase-7.
- Utilized biochemical assays to analyze phosphorylation sites and their functional consequences.
Main Results:
- PAK2 phosphorylates caspase-7 at serine 30 (S30) and serine 239 (S239).
- S30 phosphorylation allosterically inhibits caspase-7 activation by preventing caspase-9 interaction.
- S239 phosphorylation inactivates active caspase-7 by blocking substrate binding.
Conclusions:
- PAK2 employs dual phosphorylation mechanisms to inhibit caspase-7 activity, promoting cell survival.
- These novel mechanisms provide new therapeutic targets for controlling aberrant cell proliferation and enhancing chemotherapy efficacy.
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The Extrinsic Apoptotic Pathway
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