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Mechanisms of Cisplatin-Induced Apoptosis and of Cisplatin Sensitivity: Potential of BIN1 to Act as a Potent Predictor of Cisplatin Sensitivity in Gastric Cancer Treatment
Author(s) -
Satoshi Tanida,
Tsutomu Mizoshita,
Keiji Ozeki,
Hironobu Tsukamoto,
Toshio Kamiya,
Hiromi Kataoka,
Daitoku Sakamuro,
Takashi Joh
Publication year - 2012
Publication title -
international journal of surgical oncology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.432
H-Index - 22
eISSN - 2090-1410
pISSN - 2090-1402
DOI - 10.1155/2012/862879
Subject(s) - cisplatin , apoptosis , dna damage , dna repair , cancer research , chemistry , kinase , cancer cell , dna , cancer , pharmacology , biology , biochemistry , chemotherapy , genetics
Cisplatin is the most important and efficacious chemotherapeutic agent for the treatment of advanced gastric cancer. Cisplatin forms inter- and intrastrand crosslinked DNA adducts and its cytotoxicity is mediated by propagation of DNA damage recognition signals to downstream pathways involving ATR, p53, p73, and mitogen-activated protein kinases, ultimately resulting in apoptosis. Cisplatin resistance arises through a multifactorial mechanism involving reduced drug uptake, increased drug inactivation, increased DNA damage repair, and inhibition of transmission of DNA damage recognition signals to the apoptotic pathway. In addition, a new mechanism has recently been revealed, in which the oncoprotein c-Myc suppresses bridging integrator 1 (BIN1), thereby releasing poly(ADP-ribose)polymerase 1, which results in increased DNA repair activity and allows cancer cells to acquire cisplatin resistance. The present paper focuses on the molecular mechanisms of cisplatin-induced apoptosis and of cisplatin resistance, in particular on the involvement of BIN1 in the maintenance of cisplatin sensitivity.

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