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Caspase proteolysis of the cohesin component RAD21 promotes apoptosis
Feng Chen1, Merideth Kamradt, Mary Mulcahy
1Robert H. Lurie Comprehensive Cancer Center and the Department of Medicine, Northwestern University Medical School, Chicago, IL 60611, USA.
Abstract:
Caspases are a conserved family of proteases that play a critical role in the execution of apoptosis by cleaving key cellular proteins at Asp residues and modifying their function. Using an expression cloning strategy we recently developed, we isolated human RAD21/SCC1/MCD1 as a novel caspase substrate. RAD21 is a component of the cohesin complex that holds sister chromatids together during mitosis and repairs double-strand DNA breaks. Interestingly, RAD21 is cleaved by a caspase-like Esp1/separase at the onset of anaphase to trigger sister chromatid separation. Here, we demonstrate that human RAD21 is preferentially cleaved at Asp(279) by caspases-3 and -7 in vitro to generate two major proteolytic products of approximately 65 and 48 kDa. Moreover, we show that RAD21 is specifically proteolyzed by caspases into a similarly sized 65-kDa carboxyl-terminal product in cells undergoing apoptosis in response to diverse stimuli. We also demonstrate that caspase proteolysis of RAD21 precedes apoptotic chromatin condensation and has important functional consequences, viz. the partial removal of RAD21 from chromatin and the production of a proapoptotic carboxyl-terminal cleavage product that amplifies the cell death signal. Taken together, these findings point to an entirely novel function of RAD21 in the execution of apoptosis.
Insights
Caspase proteolysis of RAD21, a key cell division protein, occurs during apoptosis. This cleavage has functional consequences, contributing to cell death.
Area of Science:
- Molecular Biology
- Cell Biology
- Biochemistry
Background:
- Caspases are essential proteases executing apoptosis by cleaving cellular proteins.
- RAD21 is a component of the cohesin complex, crucial for sister chromatid cohesion and DNA repair.
- RAD21 is also cleaved by separase during anaphase for sister chromatid separation.
Purpose of the Study:
- To identify and characterize novel caspase substrates.
- To investigate the role of RAD21 in apoptosis execution.
Main Methods:
- Expression cloning strategy to identify caspase substrates.
- In vitro cleavage assays using caspases-3 and -7.
- Analysis of RAD21 cleavage in apoptotic cells.
Main Results:
- Human RAD21 was identified as a novel caspase substrate.
- RAD21 is preferentially cleaved by caspases-3 and -7 at Asp(279) in vitro.
- Caspase-mediated cleavage of RAD21 produces a 65-kDa carboxyl-terminal product in apoptotic cells.
- RAD21 proteolysis precedes chromatin condensation and leads to its removal from chromatin.
- The cleavage product amplifies the cell death signal.
Conclusions:
- RAD21 plays a novel role in the execution of apoptosis.
- Caspase-mediated cleavage of RAD21 contributes to the apoptotic process and cell death amplification.