A class of allosteric caspase inhibitors identified by high-throughput screening. 2012

Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
Cell Biology Program, Memorial Sloan-Kettering Cancer Center, New York, NY 10065, USA.

Caspase inhibition is a promising approach for treating multiple diseases. Using a reconstituted assay and high-throughput screening, we identified a group of nonpeptide caspase inhibitors. These inhibitors share common chemical scaffolds, suggesting the same mechanism of action. They can inhibit apoptosis in various cell types induced by multiple stimuli; they can also inhibit caspase-1-mediated interleukin generation in macrophages, indicating potential anti-inflammatory application. While these compounds inhibit all the tested caspases, kinetic analysis indicates they do not compete for the catalytic sites of the enzymes. The cocrystal structure of one of these compounds with caspase-7 reveals that it binds to the dimerization interface of the caspase, another common structural element shared by all active caspases. Consistently, biochemical analysis demonstrates that the compound abates caspase-8 dimerization. Based on these kinetic, biochemical, and structural analyses, we suggest that these compounds are allosteric caspase inhibitors that function through binding to the dimerization interface of caspases.

UI MeSH Term Description Entries
D007378 Interleukins Soluble factors which stimulate growth-related activities of leukocytes as well as other cell types. They enhance cell proliferation and differentiation, DNA synthesis, secretion of other biologically active molecules and responses to immune and inflammatory stimuli. Interleukin
D007700 Kinetics The rate dynamics in chemical or physical systems.
D008969 Molecular Sequence Data Descriptions of specific amino acid, carbohydrate, or nucleotide sequences which have appeared in the published literature and/or are deposited in and maintained by databanks such as GENBANK, European Molecular Biology Laboratory (EMBL), National Biomedical Research Foundation (NBRF), or other sequence repositories. Sequence Data, Molecular,Molecular Sequencing Data,Data, Molecular Sequence,Data, Molecular Sequencing,Sequencing Data, Molecular
D002460 Cell Line Established cell cultures that have the potential to propagate indefinitely. Cell Lines,Line, Cell,Lines, Cell
D004789 Enzyme Activation Conversion of an inactive form of an enzyme to one possessing metabolic activity. It includes 1, activation by ions (activators); 2, activation by cofactors (coenzymes); and 3, conversion of an enzyme precursor (proenzyme or zymogen) to an active enzyme. Activation, Enzyme,Activations, Enzyme,Enzyme Activations
D006801 Humans Members of the species Homo sapiens. Homo sapiens,Man (Taxonomy),Human,Man, Modern,Modern Man
D000595 Amino Acid Sequence The order of amino acids as they occur in a polypeptide chain. This is referred to as the primary structure of proteins. It is of fundamental importance in determining PROTEIN CONFORMATION. Protein Structure, Primary,Amino Acid Sequences,Sequence, Amino Acid,Sequences, Amino Acid,Primary Protein Structure,Primary Protein Structures,Protein Structures, Primary,Structure, Primary Protein,Structures, Primary Protein
D000893 Anti-Inflammatory Agents Substances that reduce or suppress INFLAMMATION. Anti-Inflammatory Agent,Antiinflammatory Agent,Agents, Anti-Inflammatory,Agents, Antiinflammatory,Anti-Inflammatories,Antiinflammatories,Antiinflammatory Agents,Agent, Anti-Inflammatory,Agent, Antiinflammatory,Agents, Anti Inflammatory,Anti Inflammatories,Anti Inflammatory Agent,Anti Inflammatory Agents
D016296 Mutagenesis Process of generating a genetic MUTATION. It may occur spontaneously or be induced by MUTAGENS. Mutageneses
D017209 Apoptosis A regulated cell death mechanism characterized by distinctive morphologic changes in the nucleus and cytoplasm, including the endonucleolytic cleavage of genomic DNA, at regularly spaced, internucleosomal sites, i.e., DNA FRAGMENTATION. It is genetically programmed and serves as a balance to mitosis in regulating the size of animal tissues and in mediating pathologic processes associated with tumor growth. Apoptosis, Extrinsic Pathway,Apoptosis, Intrinsic Pathway,Caspase-Dependent Apoptosis,Classic Apoptosis,Classical Apoptosis,Programmed Cell Death,Programmed Cell Death, Type I,Apoptoses, Extrinsic Pathway,Apoptoses, Intrinsic Pathway,Apoptosis, Caspase-Dependent,Apoptosis, Classic,Apoptosis, Classical,Caspase Dependent Apoptosis,Cell Death, Programmed,Classic Apoptoses,Extrinsic Pathway Apoptoses,Extrinsic Pathway Apoptosis,Intrinsic Pathway Apoptoses,Intrinsic Pathway Apoptosis

Related Publications

Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
December 2007, Molecular cancer therapeutics,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
January 2019, PloS one,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
June 2016, EBioMedicine,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
June 2000, Archives of pharmacal research,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
January 2023, Methods in molecular biology (Clifton, N.J.),
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
August 2006, Journal of medicinal chemistry,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
December 2008, Analytical biochemistry,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
October 2015, Journal of biomolecular screening,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
January 2012, PloS one,
Taya Feldman, and Venkataraman Kabaleeswaran, and Se Bok Jang, and Christophe Antczak, and Hakim Djaballah, and Hao Wu, and Xuejun Jiang
September 2013, ACS chemical biology,
Copied contents to your clipboard!