ACS Medicinal Chemistry Letters
Letter
S.; Tei, C. Antiproliferative effects of gefitinib are associated with
suppression of E2F-1 expression and telomerase activity. Anticancer
Res. 2006, 26, 3387−3391.
(17) Newman, D. J.; Cragg, G. M. Natural products as sources of new
drugs over the last 25 years. J. Nat. Prod. 2007, 70, 461−477.
(18) Taori, K.; Paul, V. J.; Luesch, H. Structure and activity of
largazole, a potent antiproliferative agent from the Floridian marine
cyanobacterium Symploca sp. J. Am. Chem. Soc. 2008, 130, 1806−
1807.
(19) Zeng, X.; Yin, B.; Hu, Z.; Liao, C.; Liu, J.; Li, S.; Li, Z.; Nicklaus,
M. C.; Zhou, G.; Jiang, S. Total synthesis and biological evaluation of
largazole and derivatives with promising selectivity for cancers cells.
Org. Lett. 2010, 12, 1368−1371.
(20) Ying, Y.; Taori, K.; Kim, H.; Hong, J.; Luesch, H. Total synthesis
and molecular target of largazole, a histone deacetylase inhibitor. J. Am.
Chem. Soc. 2008, 130, 8455−8459.
(21) Ungermannova, D.; Parker, S. J.; Nasveschuk, C. G.; Wang, W.;
Quade, B.; Zhang, G.; Kuchta, R. D.; Phillips, A. J.; Liu, X. Largazole
and its derivatives selectively inhibit ubiquitin activating enzyme (E1).
PLoS One 2012, 7, e29208.
(22) Law, M. E.; Corsino, P. E.; Jahn, S. C.; Davis, B. J.; Chen, S.;
Patel, B.; Pham, K.; Lu, J.; Sheppard, B.; Norgaard, P.; Hong, J.;
Higgins, P.; Kim, J. S.; Luesch, H.; Law, B. K. Glucocorticoids and
histone deacetylase inhibitors cooperate to block the invasiveness of
basal-like breast cancer cells through novel mechanisms. Oncogene
2013, 32, 1316−1329.
(23) Liu, Y.; Salvador, L. A.; Byeon, S.; Ying, Y.; Kwan, J. C.; Law, B.
K.; Hong, J.; Luesch, H. Anticolon Cancer Activity of Largazole, a
Marine-Derived Tunable Histone Deacetylase Inhibitor. J. Pharmacol.
Exp. Ther. 2010, 335, 351−361.
(24) Jascur, T.; Brickner, H.; Salles-Passador, I.; Barbier, V.; El, K. A.;
Smith, B.; Fotedar, R.; Fotedar, A. Regulation of p21(WAF1/CIP1)
stability by WISp39, a Hsp90 binding TPR protein. Mol. Cell 2005, 17,
237−249.
(25) Martinez-Balbas, M. A.; Bauer, U. M.; Nielsen, S. J.; Brehm, A.;
Kouzarides, T. Regulation of E2F1 activity by acetylation. EMBO J.
2000, 19, 662−671.
(26) Engelmann, D.; Putzer, B. M. Translating DNA damage into
cancer cell death-A roadmap for E2F1 apoptotic signalling and
opportunities for new drug combinations to overcome chemo-
resistance. Drug Resist. Updates 2010, 13, 119−131.
(27) Muller, H.; Bracken, A. P.; Vernell, R.; Moroni, M. C.;
Christians, F.; Grassilli, E.; Prosperini, E.; Vigo, E.; Oliner, J. D.; Helin,
K. E2Fs regulate the expression of genes involved in differentiation,
development, proliferation, and apoptosis. Genes Dev. 2001, 15, 267−
285.
ASSOCIATED CONTENT
* Supporting Information
Supporting Information includes experimental procedures, one
Table, and one Figure. This material is available free of charge
■
S
AUTHOR INFORMATION
Corresponding Author
cn. Telephone: (86) 20-32015318. Fax: (86) 20-32015318.
■
Funding
This work was supported by the National Key Program for
Basic Research (2010CB529201, 2012CB910800, and
2009CB940900), the National Natural Science Foundation
(81071930, 81171925, and 21172220), the Special Foundation
of President, and the Strategic Leading Science & Technology
Programme of the Chinese Academy of Sciences.
Notes
The authors declare no competing financial interest.
REFERENCES
■
(1) Jemal, A.; Bray, F.; Center, M. M.; Ferlay, J.; Ward, E.; Forman,
D. Global cancer statistics. Cancer J. Clin. 2011, 61, 69−90.
(2) Herbst, R. S.; Heymach, J. V.; Lippman, S. M. Lung cancer. N.
Engl. J. Med. 2008, 359, 1367−1380.
(3) Pao, W.; Miller, V. A.; Politi, K. A.; Riely, G. J.; Somwar, R.;
Zakowski, M. F.; Kris, M. G.; Varmus, H. Acquired resistance of lung
adenocarcinomas to gefitinib or erlotinib is associated with a second
mutation in the EGFR kinase domain. PLoS Med. 2005, 2, e73.
(4) Hanahan, D.; Weinberg, R. A. Hallmarks of Cancer: The Next
Generation. Cell 2011, 144, 646−674.
(5) Massague, J. G1 cell-cycle control and cancer. Nature 2004, 432,
298−306.
(6) Shah, M. A.; Schwartz, G. K. Cell cycle-mediated drug resistance:
an emerging concept in cancer therapy. Clin. Cancer Res. 2001, 7,
2168−2181.
(7) Sherr, C. J.; Roberts, J. M. Inhibitors of mammalian G1 cyclin-
dependent kinases. Genes Dev. 1995, 9, 1149−1163.
(8) Weinberg, R. A. The retinoblastoma protein and cell cycle
control. Cell 1995, 81, 323−330.
(9) Engelmann, D.; Putzer, B. M. The dark side of E2F1: In transit
beyond apoptosis. Cancer Res. 2012, 72, 571−575.
(28) Chen, D.; Pacal, M.; Wenzel, P.; Knoepfler, P. S.; Leone, G.;
Bremner, R. Division and apoptosis of E2f-deficient retinal
progenitors. Nature 2009, 462, 925−929.
(10) Chen, H. Z.; Tsai, S. Y.; Leone, G. Emerging roles of E2Fs in
cancer: an exit from cell cycle control. Nat. Rev. Cancer 2009, 9, 785−
797.
(29) Chong, J. L.; Wenzel, P. L.; Saenz-Robles, M. T.; Nair, V.;
Ferrey, A.; Hagan, J. P.; Gomez, Y. M.; Sharma, N.; Chen, H. Z.;
Ouseph, M.; Wang, S. H.; Trikha, P.; Culp, B.; Mezache, L.; Winton,
D. J.; Sansom, O. J.; Chen, D.; Bremner, R.; Cantalupo, P. G.;
Robinson, M. L.; Pipas, J. M.; Leone, G. E2f1-3 switch from activators
in progenitor cells to repressors in differentiating cells. Nature 2009,
462, 930−934.
(30) Suzuki, T.; Yasui, W.; Yokozaki, H.; Naka, K.; Ishikawa, T.;
Tahara, E. Expression of the E2F family in human gastrointestinal
carcinomas. Int. J. Cancer 1999, 81, 535−538.
(31) Korz, C.; Pscherer, A.; Benner, A.; Mertens, D.; Schaffner, C.;
Leupolt, E.; Dohner, H.; Stilgenbauer, S.; Lichter, P. Evidence for
distinct pathomechanisms in B-cell chronic lymphocytic leukemia and
mantle cell lymphoma by quantitative expression analysis of cell cycle
and apoptosis-associated genes. Blood 2002, 99, 4554−4561.
(32) Iwamoto, M.; Banerjee, D.; Menon, L. G.; Jurkiewicz, A.; Rao, P.
H.; Kemeny, N. E.; Fong, Y.; Jhanwar, S. C.; Gorlick, R.; Bertino, J. R.
Overexpression of E2F-1 in lung and liver metastases of human colon
cancer is associated with gene amplification. Cancer Biol. Ther. 2004, 3,
395−399.
(11) Komiya, T.; Hosono, Y.; Hirashima, T.; Masuda, N.; Yasumitsu,
T.; Nakagawa, K.; Kikui, M.; Ohno, A.; Fukuoka, M.; Kawase, I. p21
expression as a predictor for favorable prognosis in squamous cell
carcinoma of the lung. Clin. Cancer Res. 1997, 3, 1831−1835.
(12) Shoji, T.; Tanaka, F.; Takata, T.; Yanagihara, K.; Otake, Y.;
Hanaoka, N.; Miyahara, R.; Nakagawa, T.; Kawano, Y.; Ishikawa, S.;
Katakura, H.; Wada, H. Clinical significance of p21 expression in non-
small-cell lung cancer. J. Clin. Oncol. 2002, 20, 3865−3871.
(13) Zhao, Y. F.; Wang, C. R.; Wu, Y. M.; Ma, S. L.; Ji, Y.; Lu, Y. J.
P21 (waf1/cip1) is required for non-small cell lung cancer sensitive to
Gefitinib treatment. Biomed. Pharmacother. 2011, 65, 151−156.
(14) Huang, C. L.; Liu, D.; Nakano, J.; Yokomise, H.; Ueno, M.;
Kadota, K.; Wada, H. E2F1 overexpression correlates with thymidylate
synthase and survivin gene expressions and tumor proliferation in non
small-cell lung cancer. Clin. Cancer Res. 2007, 13, 6938−6946.
(15) Eymin, B.; Gazzeri, S.; Brambilla, C.; Brambilla, E. Distinct
pattern of E2F1 expression in human lung tumours: E2F1 is up-
regulated in small cell lung carcinoma. Oncogene 2001, 20, 1678−1687.
(16) Suenaga, M.; Yamaguchi, A.; Soda, H.; Orihara, K.; Tokito, Y.;
Sakaki, Y.; Umehara, M.; Terashi, K.; Kawamata, N.; Oka, M.; Kohno,
925
dx.doi.org/10.1021/ml400093y | ACS Med. Chem. Lett. 2013, 4, 921−926