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1 tion of ER function depended additionally on caspase 7.
2 h activation of procaspase 9, caspase 3, and caspase 7.
3 d in vitro by both recombinant caspase-3 and caspase-7.
4 its ability to interact with and neutralize caspase-7.
5 downstream effector caspases, caspase-3 and caspase-7.
6 talytic activity as a domain of fully active caspase-7.
7 inhibitor sensitivity compared to processed caspase-7.
8 is as evidenced by the activation of BAK and caspase-7.
9 le approximately 200-kDa complex with active caspase-7.
10 ated with reduced induction of caspase-3 and caspase-7.
11 ification of the activation of caspase-9 and caspase-7.
12 pases that include caspase-9, caspase-3, and caspase-7.
13 onformationally dynamic than closely related caspase-7.
14 rase (PARP) and activated both caspase-9 and caspase-7.
15 detectable by analyzing cleavage of PARP and caspase-7.
16 ios inactive caspase-9 became complexed with caspase-7.
17 e not inhibitors of downstream caspase-3 and caspase-7.
18 on indirectly by activating caspase-3 and/or caspase-7.
19 amily of cell death proteases: caspase-3 and caspase-7.
20 th an increase in cleaved PARP and activated caspase-7.
21 ed domain of ORF57 prevents its digestion by caspase-7.
22 acilitates cell proliferation is mediated by caspase 7, a protein that typically promotes cell death.
24 tage transgenic mSOD1 mice is the downstream caspase-7 activated and the inhibitor of apoptosis, XIAP
25 imentally, and we have now characterized the caspase-7 activating apoptosome complex in MCF-7 cell ly
28 , which promotes 5-FU mediated p53-dependent caspase-7 activation and hepatocyte growth inhibition.
29 ere that specific expression of GRP78 blocks caspase-7 activation by etoposide both in vivo and in vi
31 in MCF-7 cells because it directly inhibits caspase-7 activation by the apoptosome and also forms a
33 not play a detectable role in 5-FU-mediated caspase-7 activation in the absence of functional p53 in
35 not trigger endoplasmic reticulum stress or caspase-7 activation, and did not induce tumor cell deat
38 nhibits 1-LN cell proliferation and promotes caspase-7 activity by a mechanism that requires binding
42 ression of exogenous caspase-7 by adenovirus-caspase-7 (Ad-casp-7) in SKBr3 cells resulted in apoptos
45 d sequences to its substrate-binding pocket, caspase-7 also uses exosites to select specific substrat
48 ase 9, cooperated with RA in activating both caspase 7 and 9, and amplified the ability of RA to trig
51 , and two apoptotic marker proteins, cleaved caspase 7 and cleaved poly(ADP-ribose) polymerase, were
52 ption of the proapoptotic genes CD95/Fas and caspase 7 and de-repressing the expression of the antiap
53 mitochondria-targeted Bak leads to enhanced caspase 7 and PARP cleavage in comparison with the ER-ta
54 atches the activation sites of caspase 3 and caspase 7 and thus is consistent with the role of granzy
58 ted in cleavage and nuclear translocation of caspase-7 and caspase-3 in hypoglossal and facial motone
59 arcinoma cell lines and that, in addition to caspase-7 and caspase-3, there are other factors that co
63 ring RNA resulted in decreased expression of caspase-7 and cleaved poly(ADP-ribose) polymerase expres
64 oted DNA fragmentation more effectively than caspase-7 and endogenous levels of caspase-7 failed to i
66 addition, Smac forms a ternary complex with caspase-7 and linker_BIR2, suggesting that Smac/linker_B
67 F-7 cells after UV treatment, as measured by caspase-7 and PARP cleavage, and IGF-I co-treatment prot
69 erestingly, we found that PAK2 can bind with caspase-7 and phosphorylate caspase-7 at the Ser-30, Thr
71 on cDDP-induced activation of caspase-3 and caspase-7 and the cleavage of poly(ADP-ribose) polymeras
72 MAF)] stimulated the activation of caspase-3/caspase-7 and the death of EphA2-expressing cells with I
74 ystal structure of the complex between human caspase-7 and XIAP (BIR2 and the proceeding linker).
75 rientation, a subset of interactions between caspase-7 and XIAP closely resemble those between caspas
76 but it did partially regulate activation of caspase-7 and, more importantly, was necessary for late
79 drial release of cytochrome c, activation of caspases 7 and 9, and apoptosis did not occur unless TRA
80 eported that ectopically expressed GRP78 and caspases-7 and -12 form a complex, thus coupling ER stre
81 that processing of caspases, in particular, caspases-7 and -3, occurs during Fas-induced apoptosis o
85 the Fas ligand, Fas-associated death domain, caspase 7, and caspase 6, suggesting that apoptotic mole
86 NEDD8 to ubiquitin substrates, such as p53, Caspase 7, and Hif1alpha, demonstrating that overexpress
88 opidium iodide/annexin assays and caspase 3, caspase 7, and PARP-1 analyses show that these compounds
89 he proapoptotic molecules pro-caspase-3, pro-caspase-7, and Bax to induce therapeutic apoptosis of pr
90 the apoptotic molecules such as caspase-12, caspase-7, and CAAT/enhancer binding protein homologous
93 a reduction in protein levels of caspase-3, caspase-7, and caspase-9 in human colon cancer specimens
94 -PERK, phospho-eIF2alpha, GRP94, caspase-12, caspase-7, and CHOP/GADD153 was significantly muted.
96 protein levels of cleaved caspase-3, cleaved caspase-7, and cleaved poly(ADP-ribose) polymerase (PARP
98 ting the executioner caspases, caspase-3 and caspase-7, and have a low potency for inhibiting caspase
99 ith IFNgamma-induced expression of STAT2 and caspase-7, and HDAC inhibitors did not preclude IFNgamma
100 rane permeabilization, via the activation of caspase-7, and identify the salvage pathway as the criti
101 ptosis in MM cells via caspase-8, caspase-3, caspase-7, and poly (ADP-ribose) polymerase cleavage.
102 n, decreased full-length Bid, caspase-9, and caspase-7, and significantly increased DNA fragmentation
104 Here we report that ataxin-7 is cleaved by caspase-7, and we map two putative caspase-7 cleavage si
105 A majority of the cells expressing active caspase-7 appeared to have no detectable ORF57 and vice
108 s (K(38)KKK) within the N-terminal domain of caspase-7 as critical elements for the efficient proteol
109 embrane protein, as well as co-localize with caspase-7, as confirmed by fluorescence microscopy.
111 -8 and cleavage of ORF57 in the cytoplasm by caspase-7 at the aspartate residue at position 33 from t
112 K2 can bind with caspase-7 and phosphorylate caspase-7 at the Ser-30, Thr-173, and Ser-239 sites.
113 sults suggest that cleavage of PKCepsilon by caspase-7 at the SSPD downward arrow G site results in t
114 CD80), regulators of apoptosis (granzyme B, caspase 7, Bak1, Bax, and BclII), interferon-inducible g
118 teraction assays revealed that caspase-3 and caspase-7 (but not caspase-8) blocked the binding of the
119 hy and gel shift assays, we demonstrate that caspase-7, but not caspase-3 or a caspase-7 with a mutat
123 Further, cleavage at amino acid 45/47 of caspase-7 by calpain results in a reduction in nuclear l
125 hanges include activation of caspase 3 (C3), caspase 7 (C7), and nuclear factor kappaB (NFkappaB).
126 olytic maturation to form caspase-3 (C3) and caspase-7 (C7), respectively, which serve overlapping bu
127 sient intermediate of singly cleaved dimeric caspase-7 can be found in a cell-free model of apoptosis
128 nal activation of the ERSR-induced CASP3 and caspase 7 (CASP7) maintains uterine quiescence through p
130 cancer cells rely heavily on the activity of caspase-7 (CASP7) to initiate apoptosis, inhibition of a
132 ombination enhanced activation of caspase-3, caspase-7, caspase-8, and caspase-9 and the subsequent c
134 s as characterized by cleavage of caspase-3, caspase-7, caspase-8, caspase-9, caspase-10, BID, and po
142 neurotoxicity, suggesting that inhibition of caspase-7 cleavage of polyQ-ataxin-7 may be a promising
145 ndings indicate that proteolysis at the D266 caspase-7 cleavage site is an important mediator of atax
146 ne 257 (K257), an amino acid adjacent to the caspase-7 cleavage site of ataxin-7 regulates turnover o
147 at S95 and S97 residues in proximity of the caspase-7 cleavage site, 30-DETD-33, inhibits caspase-7
149 leaved by caspase-7, and we map two putative caspase-7 cleavage sites to Asp residues at positions 26
151 p to 2.8 angstrom, including an apo state, a caspase-7-cleaved state and a carbenoxolone-bound state.
152 nd forms a stable approximately 200-kDa XIAP-caspase-7 complex, which apparently does not contain cIA
153 osarcoma cells involves enhanced activity of caspase-7, consistent with the disruption of glucose-reg
159 No apoptosis was observed in the cells where caspase-7 did not undergo autocatalytic activation.
162 Two closely related caspases, caspase-3 and caspase-7, exhibit largely overlapping substrate specifi
164 also increased HSP expression and decreased caspase-7 expression, with changes in protein levels com
166 combination of high miR-106b and low CASP7 (caspase-7) expressions in primary tumors was an independ
167 vely than caspase-7 and endogenous levels of caspase-7 failed to inactivate DFF45/ICAD in caspase-3 n
169 (38)KKK) located in the N-terminal domain of caspase-7 form such an exosite and promote the rapid pro
171 of the substrate sequence in the nanopore by caspase-7 generated a characteristic signal in the curre
177 tudies suggest the calpain-activated form of caspase-7 has unique enzymatic activity, localization, a
180 at the Apaf-1-caspase-9 apoptosome processes caspase-7 in an analogous manner to that described for c
181 Here we present the crystal structure of caspase-7 in complex with a potent inhibitory fragment f
182 n and subsequent activation of caspase-3 and caspase-7 in each cell line, decreased Bcl-2 and Bcl-X(L
183 ion of caspase-9 and its downstream effector caspase-7 in endothelial cells promotes capillary ischem
186 yrin and ASC were required for activation of caspase-7 in macrophages stimulated with zymosan or mann
190 l for the first time a nonredundant role for caspase-7 in vivo and identify caspase-7 inhibition as a
192 effector caspases (caspase-3, caspase-6, and caspase-7) in becoming active, ultimately leading to dea
193 ly the DEVD cleaving caspases, caspase-3 and caspase-7, inactivated DFF45/ICAD and promoted DNA fragm
194 ion but inhibited CD79a, Requiem, c-Fos, and caspase 7 induction when the cells underwent apoptosis.
195 dant role for caspase-7 in vivo and identify caspase-7 inhibition as a component of the mechanism by
196 ficantly rescued TNF effects on SK1, yet the caspase 7 inhibitor DEVD failed to have any effect, sugg
197 y pan-caspase inhibitor z-VAD, caspase-3 and caspase-7 inhibitor z-DEVD, and caspase-7 small interfer
198 d affinity but also sterically excludes XIAP/caspase-7 interaction, demonstrating the requirement of
201 SCA7 transgenic mouse model, recruitment of caspase-7 into the nucleus by polyQ-expanded ataxin-7 co
209 ysates containing Smac and Omi/HtrA2, active caspase-7 is released from the apoptosome and forms a st
211 n following cell cycle dependent cleavage by caspase 7; knock-down of caspase 7 phenocopies PKCepsilo
212 ), tumor necrosis factor [TNF]-alpha(KO), or caspase 7(KO) mice) using quantitative real-time PCR, en
214 tified the calpain cleavage sites within the caspase-7 large subunit at amino acid 36 and 45/47.
215 e XIAP peptide binds the catalytic groove of caspase-7, making extensive contacts to the residues tha
216 Whereas Bcl2L12-mediated neutralization of caspase-7 maturation involves physical interaction, the
218 t that proteolytic processing of ataxin-7 by caspase-7 may contribute to SCA7 disease pathogenesis.
220 e induced activations of caspase-3/CPP32 and caspase-7/Mch3 followed by PARP cleavage, effects that c
221 phism significantly increases caspase 3- and caspase 7-mediated cleavage of Atg16L1, resulting in low
223 rodomain caspases (caspase-3, caspase-6, and caspase-7), MICE preferentially associates with large pr
227 that Smac is ineffective in relieving either caspase-7 or caspase-9 inhibition by XIAP domain fragmen
229 , which subsequently activates caspase-3 and caspase-7, or bigger inactive aggregates, depending on t
231 in vivo as indicated by the accumulation of caspase-7 p18 and p17 subunits in cortical neurons under
235 ro-apoptotic target genes such as caspase 3, caspase 7, PARP1, and Apaf-1 and activates their express
236 pendent cleavage by caspase 7; knock-down of caspase 7 phenocopies PKCepsilon loss, in a manner rescu
242 n with caspase-3 restores the removal of the caspase-7 propeptide and the capacity of GrB to subseque
244 processing the accessible caspase-3, and the caspase-7 propeptide regulates trans-activation of the z
245 tion-defective adenovirus, overexpression of caspase-7 protein in both LNCaP and LNCaP-Bcl-2 cells wa
248 -based drug discovery campaign against human caspase-7 resulted in the discovery of a novel series of
249 tal structure of one of these compounds with caspase-7 reveals that it binds to the dimerization inte
253 in KSHV(+) BCBL-1 cells by z-VAD, z-DEVD, or caspase-7 small interfering RNA led to increased express
256 mentation, and cleavage of the caspase 3 and caspase 7 substrate poly(ADP-ribose) polymerase (PARP) i
257 amma-induced expression of STAT1, STAT2, and caspase-7, suggesting that HDAC inhibitors impede the ex
259 e and allosteric transition in the apoptotic caspase-7 that shares only a 23% sequence identity with
261 the caspase cascade (including caspase-9 and caspase-7), thereby initiating the apoptotic process.
262 on of caspase-1 and subsequent activation of caspase-7; this results in the resolution of type 2 immu
263 y binding to and inhibition of caspase-3 and caspase-7 through its BIR2 domain and caspase-9 through
266 ved by calpain-1 within the large subunit of caspase-7 to produce two novel products, large subunit p
270 fingers of c-Cbl and Apc11 failed to promote caspase-7 ubiquitination, suggesting that the Ring finge
272 directly inhibits effector caspases such as caspase-7 via a linker_BIR2 fragment and initiator caspa
273 e report here that the apoptotic executioner caspase-7 was activated in the splenocytes of LPS-inject
275 exclusively required in human cells, whereas caspase-7 was involved only in murine cells to inactivat
280 ates, and an antibody specific for activated caspase 7, we have determined that apoptosis in MCF-7 ce
282 Bax increased, and caspase-9, caspase-6, and caspase-7 were activated but not caspase-3 and caspase-8
283 ease calpains and cleavage of caspase-12 and caspase-7 were found in the channel-deficient retinas, s
284 evels of cleaved ATF6, pEIF2alpha, CHOP, and caspase-7 were much higher than those of wild-type rats.
287 and wild type STAT1 also induced cleavage of caspase 7 when expressed in STAT1-negative U3A cells, in
288 erminus of the large subunit of fully mature caspase-7, whereas cIAP1 bound to partially processed ca
289 293 extracts abolished cleavage of Bcl-2 and caspase-7, whereas immunodepletion of caspase-7 had no e
292 eficient in the two effectors, caspase 3 and caspase 7, which died immediately after birth with defec
296 trate that caspase-7, but not caspase-3 or a caspase-7 with a mutated exosite, binds nucleic acids.
297 s endoplasmic reticulum stress and activates caspase-7 with no effect on mitochondria or caspases-3 a
299 three protein-protein pairs (caspase-9-XIAP, caspase-7-XIAP, FKBP12-FRB) and their small molecule mod
300 e that it serves to physically sequester the caspase-7 zymogen in a cytosolic location that prevents