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Adenosine dialdehyde suppresses MMP-9-mediated invasion of cancer cells by blocking the Ras/Raf-1/ERK/AP-1 signaling pathway

Authors
Kim, JH[Kim, Ji Hye]Kim, JH[Kim, Jong Heon]Kim, SC[Kim, Seung Cheol]Yi, YS[Yi, Young-Su]Yang, WS[Yang, Woo Seok]Yang, Y[Yang, Yanyan]Kim, HG[Kim, Han Gyung]Lee, JY[Lee, Jae Yong]Kim, KH[Kim, Kyung-Hee]Yoo, BC[Yoo, Byong Chul]Hong, S[Hong, Sungyoul]Cho, JY[Cho, Jae You]
Issue Date
1-Nov-2013
Publisher
PERGAMON-ELSEVIER SCIENCE LTD
Keywords
Transmethylation; Adenosine dialdehyde; AP-1; Ras
Citation
BIOCHEMICAL PHARMACOLOGY, v.86, no.9, pp.1285 - 1300
Indexed
SCIE
SCOPUS
Journal Title
BIOCHEMICAL PHARMACOLOGY
Volume
86
Number
9
Start Page
1285
End Page
1300
URI
https://scholarworks.bwise.kr/skku/handle/2021.sw.skku/58590
DOI
10.1016/j.bcp.2013.08.022
ISSN
0006-2952
Abstract
Adenosine dialdehyde (AdOx) inhibits transmethylation by the accumulation of S-adenosylhomocysteine (SAH), a negative feedback inhibitor of methylation, through the suppression of SAH hydrolase (SAHH). In this study, we aimed to determine the regulatory effect of AdOx on cancer invasion by using three different cell lines: MDA-MB-231, MCF-7, and U87. The invasive capacity of these cells in the presence (MCF-7) or absence (MDA-MB-231 and U87) of phorbal 12-myristate 13-acetate (PMA) was strongly decreased by AdOx treatment. Furthermore, the expression, secretion, and activation of matrix metalloproteinase (MMP)-9, a critical enzyme regulating cell invasion, in these cells were diminished by AdOx treatment. AdOx strongly suppressed AP-1-mediated luciferase activity and, in parallel, reduced the translocation of c-Fos and c-Jun into the nucleus. AdOx was shown to block a series of upstream AP-1 activation signaling complexes composed of extracellular signal-related kinase (ERK), mitogen-activated protein ERK kinase (MEK)1/2, Raf-1, and Ras, as assessed by measuring the levels of the phosphorylated and membrane-translocated forms. Furthermore, we found that suppression of SAHH by siRNA and 3-deazaadenosine, knock down of isoprenylcysteine carboxyl methyltransferase (ICMT), and treatment with SAH showed inhibitory patterns similar to those of AdOx. Therefore, our data suggest that AdOx is capable of targeting the methylation reaction regulated by SAHH and ICMT and subsequently downregulating MMP-9 expression and decreasing invasion of cancer cells through inhibition of the Ras/Raf-1/ERK/AP-1 pathway. (C) 2013 Elsevier Inc. All rights reserved.
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