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Disease
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Enzyme
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Query: EC:3.4.22.36 (
caspase-1
)
6,285
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
The two genes
CED-4
and CED-3 (the nematode homologue of
interleukin-1beta converting enzyme
,
ICE
) of Caenorhabditis elegans are implicated in the control of cell death, but the mechanism by which this occurs is unknown. Here we provide evidence that CED-3 and
CED-4
both contain sequences with homology to a domain present in RAIDD and the prodomain of certain
ICE
-like proteases (caspases). This domain is known to establish an interaction between RAIDD and these caspases. Similarly,
CED-4
was found to interact with CED-3. Thus, the activity of the death protease CED-3 appears to be controlled by
CED-4
through a direct physical interaction.
...
PMID:Direct physical interaction between the Caenorhabditis elegans 'death proteins' CED-3 and CED-4. 910 15
Genetic studies of the nematode Caenorhabditis elegans (C. elegans) have identified several important components of the cell death pathway, most notably CED-3,
CED-4
, and CED-9.
CED-4
directly interacts with the Bcl-2 homologue CED-9 (or the mammalian Bcl-2 family member Bcl-xL) and the caspase CED-3 (or the mammalian caspases
ICE
and FLICE). This trimolecular complex of
CED-4
, CED-3, and CED-9 is functional in that CED-9 inhibits
CED-4
from activating CED-3 and thereby inhibits apoptosis in heterologous systems. The E1B 19,000-molecular weight protein (E1B 19K) is a potent apoptosis inhibitor and the adenovirus homologue of Bcl-2-related apoptosis inhibitors. Since E1B 19K and Bcl-xL have functional similarity, we determined if E1B 19K interacts with
CED-4
and regulates
CED-4
-dependent caspase activation. Binding analysis indicated that E1B 19K interacts with
CED-4
in a Saccharomyces cerevisiae two-hybrid assay, in vitro, and in mammalian cell lysates. The subcellular localization pattern of
CED-4
was dramatically changed by E1B 19K, supporting the theory of a functional interaction between
CED-4
and E1B 19K. Whereas expression of
CED-4
alone could not induce cell death, coexpression of
CED-4
and FLICE augmented cell death induction by FLICE, which was blocked by expression of E1B 19K. Even though E1B 19K did not prevent FLICE-induced apoptosis, it did inhibit
CED-4
-dependent, FLICE-mediated apoptosis, which suggested that
CED-4
was required for E1B 19K to block FLICE activation. Thus, E1B 19K functions through interacting with
CED-4
, and presumably a mammalian homologue of
CED-4
, to inhibit caspase activation and apoptosis.
...
PMID:E1B 19,000-molecular-weight protein interacts with and inhibits CED-4-dependent, FLICE-mediated apoptosis. 974 22
Proteins governing cell death form the basis of many normal processes and contribute to the pathogenesis of many diseases when dysregulated. Here we report the cloning of a novel human
CED-4
-like gene, CLAN, and several of its alternatively spliced isoforms. These caspase-associated recruitment domain (CARD)-containing proteins are expressed at varying degrees in normal human tissues and may contribute to a number of intracellular processes including apoptosis, cytokine processing, and NF-kappa B activation. The CARD of the CLAN proteins binds a number of other CARD-containing proteins including
caspase-1
, BCL10, NOD2, and NAC. Once their physiologic functions are uncovered, CLAN proteins may prove to be valuable therapeutic targets.
...
PMID:CLAN, a novel human CED-4-like gene. 1147 70
The tumor suppressor protein p53 regulates transcription of many genes that mediate cell cycle arrest, apoptosis, DNA repair and other cellular responses. Here we show that Ipaf, a human
CED-4
homologue and an activator of
caspase-1
, is induced by p53. Overexpression of p53 by transfection in U2OS and A549 cells increased Ipaf mRNA levels. Treatment of p53-positive cell lines U2OS and MCF-7 with the DNA damaging drug, doxorubicin, which increases p53 protein level, induced expression of Ipaf mRNA but similar treatment of MCF-7-mp53 (a clone of MCF-7 cells expressing mutant p53) and p53-negative K562 cells showed much less induction of Ipaf gene expression. Expression analysis for Ipaf mRNA in doxorubicin-treated human tumor cell lines suggests that p53-dependent as well as p53-independent mechanisms are involved in the regulation of Ipaf gene expression in a cell-type-specific manner. The Ipaf promoter was activated by normal p53 but not by His(273) mutant of p53. A functional p53-binding site was identified in the Ipaf promoter. A dominant-negative mutant of Ipaf inhibited p53-induced and doxorubicin-induced apoptosis by about 50%. Ipaf-directed small hairpin RNA downregulated p53-induced Ipaf gene expression and also reduced p53-induced apoptosis. Doxorubicin-induced apoptosis was also inhibited by Ipaf-directed small hairpin RNA. Our results show that p53 can directly induce Ipaf gene transcription, which contributes to p53-dependent apoptosis in at least some human cells.
...
PMID:Caspase-1 activator Ipaf is a p53-inducible gene involved in apoptosis. 1558 Mar 2
Caspases are intracellular proteases that cleave substrates involved in apoptosis or inflammation. In C. elegans, a paradigm for caspase regulation exists in which caspase CED-3 is activated by nucleotide-binding protein
CED-4
, which is suppressed by Bcl-2-family protein CED-9. We have identified a mammalian analog of this caspase-regulatory system in the NLR-family protein NALP1, a nucleotide-dependent activator of cytokine-processing protease
caspase-1
, which responds to bacterial ligand muramyl-dipeptide (MDP). Antiapoptotic proteins Bcl-2 and Bcl-X(L) bind and suppress NALP1, reducing
caspase-1
activation and interleukin-1beta (IL-1beta) production. When exposed to MDP, Bcl-2-deficient macrophages exhibit more
caspase-1
processing and IL-1beta production, whereas Bcl-2-overexpressing macrophages demonstrate less
caspase-1
processing and IL-1beta production. The findings reveal an interaction of host defense and apoptosis machinery.
...
PMID:Bcl-2 and Bcl-XL regulate proinflammatory caspase-1 activation by interaction with NALP1. 1741 85