Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
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Drug
Enzyme
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Query: UNIPROT:P10415 (
Bcl-2
)
33,771
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
In addition to powering energy needs of the cell, mitochondria function as pivotal integrators of cell survival/death signals. In recent years, numerous studies indicate that each of the major kinase signaling pathways can be stimulated to target the mitochondrion. These include protein kinase A, protein kinase B/Akt, protein kinase C, extracellular signal-regulated protein kinase, c-Jun N-terminal kinase, and p38 mitogen-activated protein kinase. Although most studies focus on phosphorylation of pro- and antiapoptotic proteins (BAD, Bax,
Bcl-2
, Bcl-xL), kinase-mediated regulation of complex I activity, anion and cation channels, metabolic enzymes, and Mn-SOD mRNA has also been reported. Recent identification of a number of scaffold proteins (AKAP, PICK,
Sab
) that bring specific kinases to the cytoplasmic surface of mitochondria further emphasizes the importance of mitochondrial kinase signaling. Immunogold electron microscopy, subcellular fractionation and immunofluorescence studies demonstrate the presence of kinases within subcompartments of the mitochondrion, following diverse stimuli and in neurodegenerative diseases. Given the sensitivity of these signaling pathways to reactive oxygen and nitrogen species, in situ activation of mitochondrial kinases may represent a potent reverse-signaling mechanism for communication of mitochondrial status to the rest of the cell.
...
PMID:Kinase signaling cascades in the mitochondrion: a matter of life or death. 1558 66
The c-jun N-terminal kinases (JNKs) are responsive to stress stimuli leading to activation of proapoptotic proteins and transcription. Additionally, JNK mitochondrial localization has been reported. To selectively target mitochondrial JNK signaling, we exploited JNK interaction with its mitochondrial scaffold,
Sab
, using small interfering RNAs (siRNAs) and a cell-permeable peptide corresponding to the KIM1 domain of
Sab
. Gene silencing and peptide interference of this interaction disrupted JNK translocation to the mitochondria and reduced phosphorylation of
Bcl-2
without significant impact on c-Jun phosphorylation or AP-1 transcription. In contrast, the JNK inhibitory peptide (TI-JIP1) prevented these three functions. Tat-
Sab
(KIM1) selectivity was also demonstrated in anisomycin-stressed HeLa cells where Tat-
Sab
(KIM1) prevented
Bcl-2
phosphorylation, cell death, loss of mitochondrial membrane potential, and superoxide generation but not c-Jun phosphorylation. Conversely, TI-JIP1 prevented all aforementioned stress-induced events. This probe introduces a means to evaluate JNK-mediated events on the mitochondria without intervening in nuclear functions of JNK.
...
PMID:Selective inhibition of mitochondrial JNK signaling achieved using peptide mimicry of the Sab kinase interacting motif-1 (KIM1). 2156 97
The occurrence of chemotherapy-resistant tumors makes ovarian cancer (OC) the most lethal gynecological malignancy. While many factors may contribute to chemoresistance, the mechanisms responsible for regulating tumor vulnerability are under investigation. Our analysis of gene expression data revealed that
Sab
, a mitochondrial outer membrane (MOM) scaffold protein, was down-regulated in OC patients.
Sab
-mediated signaling induces cell death, suggesting that this apoptotic pathway is diminished in OC. We examined
Sab
expression in a panel of OC cell lines and found that the magnitude of
Sab
expression correlated to chemo-responsiveness; wherein, OC cells with low
Sab
levels were chemoresistant. The
Sab
levels were reflected by a corresponding amount of stress-induced c-Jun N-terminal kinase (JNK) on the MOM. BH3 profiling and examination of
Bcl-2
and BH3-only protein concentrations revealed that cells with high
Sab
concentrations were primed for apoptosis, as determined by the decrease in pro-survival
Bcl-2
proteins and an increase in pro-apoptotic BH3-only proteins on mitochondria. Furthermore, overexpression of
Sab
in chemoresistant cells enhanced apoptotic priming and restored cellular vulnerability to a combination treatment of cisplatin and paclitaxel. Contrariwise, inhibiting
Sab
-mediated signaling or silencing
Sab
expression in a chemosensitive cell line resulted in decreased apoptotic priming and increased resistance. The effects of silencing on
Sab
on the resistance to chemotherapeutic agents were emulated by the silencing or inhibition of JNK, which could be attributed to changes in
Bcl-2
protein concentrations induced by sub-chronic JNK inhibition. We propose that
Sab
may be a prognostic biomarker to discern personalized treatments for OC patients.
...
PMID:Sab concentrations indicate chemotherapeutic susceptibility in ovarian cancer cell lines. 3032 86