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Calcium overload is essential for the acceleration of staurosporine-induced cell death following neuronal differentiation in PC12 cells.

Authors
 Su Ryeon Seo  ;  Jeong Taeg Seo 
Citation
 EXPERIMENTAL AND MOLECULAR MEDICINE, Vol.41(4) : 269-276, 2009 
Journal Title
EXPERIMENTAL AND MOLECULAR MEDICINE
ISSN
 1226-3613 
Issue Date
2009
MeSH
Animals ; Calcium/metabolism* ; Caspase 3/metabolism ; Cell Differentiation/physiology* ; DNA Fragmentation ; Mitochondria/metabolism ; Neurons*/cytology ; Neurons*/drug effects ; Neurons*/physiology ; PC12 Cells*/cytology ; PC12 Cells*/drug effects ; PC12 Cells*/physiology ; Rats ; Staurosporine/pharmacology* ; bcl-X Protein/metabolism
Keywords
bcl-X protein ; calcium ; cell death ; cell differentiation ; PC12 cells ; staurosporine
Abstract
Differentiation of neuronal cells has been shown to accelerate stress-induced cell death, but the underlying mechanisms are not completely understood. Here, we find that early and sustained increase in cytosolic ([Ca2(+)]c) and mitochondrial Ca2(+) levels ([Ca2(+)]m) is essential for the increased sensitivity to staurosporine- induced cell death following neuronal differentiation in PC12 cells. Consistently, pretreatment of differentiated PC12 cells with the intracellular Ca2(+)-chelator EGTA-AM diminished staurosporine-induced PARP cleavage and cell death. Furthermore, Ca2(+) overload and enhanced vulnerability to staurosporine in differentiated cells were prevented by Bcl-XL overexpression. Our data reveal a new regulatory role for differentiation-dependent alteration of Ca2(+) signaling in cell death in response to staurosporine.
Files in This Item:
T200900913.pdf Download
DOI
10.3858/emm.2009.41.4.030
Appears in Collections:
2. College of Dentistry (치과대학) > Dept. of Oral Biology (구강생물학교실) > 1. Journal Papers
Yonsei Authors
Seo, Jeong Taeg(서정택) ORCID logo https://orcid.org/0000-0003-2697-0251
URI
https://ir.ymlib.yonsei.ac.kr/handle/22282913/103663
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