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KMID : 0624620170500060335
BMB Reports
2017 Volume.50 No. 6 p.335 ~ p.340
Chronophin activation is necessary in Doxorubicin-induced actin cytoskeleton alteration
Lee Su-Jin

Park Jeen-Woo
Kang Beom-Sik
Lee Dong-Seok
Lee Hyun-Shik
Choi Soo-Young
Kwon Oh-Shin
Abstract
Although doxorubicin (Dox)-induced oxidative stress is known to be associated with cytotoxicity, the precise mechanism remains unclear. Genotoxic stress not only generates free radicals, but also affects actin cytoskeleton stability. We showed that Dox-induced RhoA signaling stimulated actin cytoskeleton alterations, resulting in central stress fiber disruption at early time points and cell periphery cortical actin formation at a later stage, in HeLa cells. Interestingly, activation of a cofilin phosphatase, chronophin (CIN), was initially evoked by Dox-induced RhoA signaling, resulting in a rapid phosphorylated cofilin turnover leading to actin cytoskeleton remodeling. In addition, a novel interaction between CIN and 14-3-3¥æ was detected in the absence of Dox treatment. We demonstrated that CIN activity is quite contrary to 14-3-3¥æ binding, and the interaction leads to enhanced phosphorylated cofilin levels. Therefore, initial CIN activation regulation could be critical in Dox-induced actin cytoskeleton remodeling through RhoA/cofilin signaling.
KEYWORD
Actin cytoskeleton, Chronophin, Cofilin, Doxorubicin, RhoA signaling, 14-3-3¥æ
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