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Use of a Caspase Multiplexing Assay to Determine Apoptosis in a Hypothalamic Cell Model
Published on: April 16, 2014
Quantitative biochemical characterization and biotechnological production of caspase modulator, XIAP: Therapeutic
Si-Eun Yun1, Min-Kyung Nam1, Hyangshuk Rhim1
1Department of Medical Life Sciences, College of Medicine, the Catholic University of Korea, Seoul, Republic of Korea; Department of Biomedicine and Health Sciences, College of Medicine, the Catholic University of Korea, Seoul, Republic of Korea.
Background:
Regulating apoptosis is a common and essential therapeutic strategy for cancer and neurodegenerative disorders. Based on basic studies of apoptotic mechanisms, various researches have attempted to overcome the pathogenesis of such diseases by activating or inhibiting apoptosis. Generally, the biochemical characteristics of the target molecules should be evaluated along with understanding of their mechanisms of action during drug development. Among apoptotic regulators, XIAP serves as a potent negative regulator to block apoptosis through the inhibition of caspase (CASP)-9 and -3/7. Although XIAP is an attractive target with such apoptotic-modulating property, biochemical and biophysical studies of XIAP are still challenging.
Methods:
In this study, the CASP-9 and -3/7 inhibitors XIAP, 242Δ and Δ230 were prepared using the pGEX expression system and biochemically characterized.
Results:
These inhibitors were expressed in Escherichia coli at a concentration of ≥20 mg/L culture under a native condition with 0.01 mM IPTG induction. Notably, using a simple and rapid affinity purification technique, these CASP-9 and -3/7 inhibitors have been purified, yielding ≥5 mg/L culture at approximately 90% purity.
Conclusions:
We have determined that HtrA2 specifically binds to the BIR2 and BIR3 of XIAP at a 1:1 molecular ratio. Moreover, in vitro cell-free CASP-9 and -3/7 activation-apoptosis assays have demonstrated that these purified XIAP proteins dramatically inhibit CASP-9 and -3/7 action.
General Significance:
Our system is suitable for biochemical studies, such as quantitation of the number of molecules acting on the apoptosis regulation, and provides a basis and insights that can be applied to the development of therapeutic agents for neurodegenerative disorders and cancer.
Insights
Researchers developed a method to produce and purify XIAP proteins, which inhibit caspases involved in apoptosis. This system aids in developing therapies for cancer and neurodegenerative diseases.
Area of Science:
- Biochemistry
- Molecular Biology
- Drug Discovery
Background:
- Apoptosis regulation is crucial for treating cancer and neurodegenerative diseases.
- X-linked inhibitor of apoptosis protein (XIAP) inhibits caspases (CASP)-9 and -3/7, making it a therapeutic target.
- Biochemical and biophysical studies of XIAP are challenging.
Purpose of the Study:
- To prepare and biochemically characterize XIAP inhibitors (242Δ and Δ230) for apoptosis research.
- To establish a system for studying XIAP's role in apoptosis regulation.
- To provide insights for developing therapeutic agents targeting apoptosis.
Main Methods:
- Prepared XIAP inhibitors (242Δ and Δ230) using the pGEX expression system.
- Expressed inhibitors in Escherichia coli and purified them using affinity chromatography.
- Performed biochemical characterization and in vitro apoptosis assays.
Main Results:
- Achieved high yield (≥20 mg/L culture) and purity (approx. 90%) of XIAP inhibitors.
- Demonstrated specific binding of HtrA2 to XIAP's BIR2 and BIR3 domains at a 1:1 ratio.
- Showed that purified XIAP proteins effectively inhibit CASP-9 and -3/7 activity in cell-free assays.
Conclusions:
- The developed system facilitates biochemical studies of apoptosis regulators like XIAP.
- Purified XIAP proteins serve as potent inhibitors of CASP-9 and -3/7.
- This research provides a foundation for developing novel therapeutics for cancer and neurodegenerative disorders.
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