Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Pivot Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Target Concepts:
Gene/Protein
Disease
Symptom
Drug
Enzyme
Compound
Query: UNIPROT:P42574 (
caspase-3
)
45,978
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
PANDER
(
PANcreatic DERived factor
, FAM3B), a newly discovered secreted cytokine, is specifically expressed at high levels in the islets of Langerhans of the endocrine pancreas. To evaluate the role of
PANDER
in beta-cell function, we investigated the effects of
PANDER
on rat, mouse, and human pancreatic islets; the beta-TC3 cell line; and the alpha-TC cell line.
PANDER
protein was present in alpha- and beta-cells of pancreatic islets, insulin-secreting beta-TC3 cells, and glucagon-secreting alpha-TC cells.
PANDER
induced islet cell death in rat and human islets. Culture of beta-TC3 cells with recombinant
PANDER
had a dose-dependent inhibitory effect on cell viability. This effect was also time-dependent.
PANDER
caused apoptosis of beta-cells as assessed by electron microscopy, annexin V fluorescent staining, and flow-cytometric terminal deoxynucleotidyl transferase-mediated dUTP nick-end labeling assay.
PANDER
did not affect cytosolic Ca(2+) levels or nitric oxide levels. However,
PANDER
activated
caspase-3
. Hence,
PANDER
may have a role in the process of pancreatic beta-cell apoptosis.
...
PMID:Pancreatic-derived factor (FAM3B), a novel islet cytokine, induces apoptosis of insulin-secreting beta-cells. 1294 69
PANcreatic DERived factor
(
PANDER
, FAM3B) is a recently discovered islet-specific cytokine. We have previously shown that, in vitro, truncated recombinant
PANDER
isoforms (20 and 21 kDa) are cytotoxic to beta-cell lines but the effects of full-length
PANDER
on islet biology remain unclear. In this study, we used adenovirus (Ad-
PANDER
) to overexpress full-length cDNA of
PANDER
in islets and betaTC3 cells. BetaTC3 cells were infected with Ad-
PANDER
or control vector. After 48 h, cell viability was significantly decreased as evaluated by MTT assay. The number of dead cells was significantly increased as indicated by the fluorescent intensity of the propidium iodide-stained cells (160 +/- 13 vs. control 100 +/- 7%, P = 0.001). Flow cytometric Tunel assay showed that overexpressing
PANDER
induced a significant fourfold increase in beta-cell apoptosis (19.4 +/- 6.3 vs. control 4.1 +/- 0.8%, P < 0.05). There was a significant increase in the number of annexin V-positive (apoptotic) cells and propidium iodide-positive (dead) cells in mouse islets infected with Ad-
PANDER
compared with control cells infected with Ad-LacZ. Addition of 4 nM recombinant
PANDER
protein to betaTC3 cells or infection of Ad-
PANDER
did not affect Akt and STAT1 phosphorylation, Bcl-2, Fas, and NF-kappaB protein levels. However, activation of
caspase-3
was observed in betaTC3 and islets infected with Ad-
PANDER
. Overexpression of
PANDER
in mouse islets or addition of recombinant
PANDER
decreased insulin secretion induced by carbachol plus glucose or high potassium but not that by glucose alone. Culture with recombinant
PANDER
did not affect glucose-induced NAD(P)H elevation in mouse islets. In conclusion, Ad-
PANDER
infection is as effective as truncated recombinant
PANDER
to induce betaTC3 cell and mouse islet apoptosis.
...
PMID:Effects of overexpression of pancreatic derived factor (FAM3B) in isolated mouse islets and insulin-secreting betaTC3 cells. 1592 25
PANcreatic DERived factor
is an islet-specific cytokine that promotes apoptosis in primary islets and islet cell lines. To elucidate the genetic mechanisms of
PANDER
-induced cell death we performed expression profiling using the mouse PancChip version 5.0 in conjunction with Ingenuity Pathway Analysis. Murine islets were treated with
PANDER
and differentially expressed genes were identified at 48 and 72 h post-treatment. 64 genes were differentially expressed in response to
PANDER
treatment. 22 genes are associated with cell death. In addition, the genes with the highest fold change were linked with cell death or apoptosis. The most significantly affected gene at 48 h was the downregulated cyclin-dependent kinase inhibitor 1A (CDKN1A or p21). Approximately half of the genes impacted at 72 h were linked to cell death. Cell death differentially expressed genes were confirmed by quantitative RT-PCR. Further analysis identified cell death genetic networks at both time points with 21 of the 22 cell death genes related in various biological pathways.
Caspase-3
(
CASP3
) was biologically linked to CDKN1A in several genetic networks and these two genes were further examined. Elevated cleaved
CASP3
levels in
PANDER
-treated beta-TC3 insulinoma cells were found to abrogate CDKN1A expression. Levels of CDKN1A were not affected in the absence of cleaved
CASP3
.
PANDER
-induced downregulation of CDKN1A expression coupled with induced
CASP3
-activation may serve a central role in islet cell death and offers further insight into the mechanisms of cytokine-induced beta-cell apoptosis.
...
PMID:PANDER-induced cell-death genetic networks in islets reveal central role for caspase-3 and cyclin-dependent kinase inhibitor 1A (p21). 1641 88