Time to fight: targeting the circadian clock molecular machinery in cancer therapy.

作者: Matteo Astone , Massimo M. Santoro

DOI: 10.1016/J.DRUDIS.2021.01.023

关键词: Cancer therapyCircadian rhythmTumor growthCLOCKNeuroscienceBiologyCancerTumor initiationCircadian clock

摘要: The circadian clock regulates a wide range of molecular pathways and biological processes. expression genes is often altered in cancer, fostering tumor initiation progression. Inhibition activation core genes, as well treatments that restore rhythmicity, have been successful counteracting growth different experimental models. Here, we provide an up-to-date overview studies show the therapeutic effects targeting machinery both genetically pharmacologically. We also highlight future areas for progress offer promising path towards innovative anticancer strategies. Substantial limitations current understanding complex interplay between cancer vivo need to be addressed order allow clock-targeting therapies cancer.

参考文章(201)
Yongjun Wang, Douglas Kojetin, Thomas P. Burris, Anti-proliferative actions of a synthetic REV-ERBα/β agonist in breast cancer cells. Biochemical Pharmacology. ,vol. 96, pp. 315- 322 ,(2015) , 10.1016/J.BCP.2015.06.010
Y. Zhang, B. Fang, M. J. Emmett, M. Damle, Z. Sun, D. Feng, S. M. Armour, J. R. Remsberg, J. Jager, R. E. Soccio, D. J. Steger, M. A. Lazar, Discrete functions of nuclear receptor Rev-erbα couple metabolism to the clock Science. ,vol. 348, pp. 1488- 1492 ,(2015) , 10.1126/SCIENCE.AAB3021
Sung Kook Chun, Sooyoung Chung, Hee-Dae Kim, Ju Hyung Lee, Jaebong Jang, Jeongah Kim, Doyeon Kim, Gi Hoon Son, Young J Oh, Young-Ger Suh, Cheol Soon Lee, Kyungjin Kim, None, A synthetic cryptochrome inhibitor induces anti-proliferative effects and increases chemosensitivity in human breast cancer cells Biochemical and Biophysical Research Communications. ,vol. 467, pp. 441- 446 ,(2015) , 10.1016/J.BBRC.2015.09.103
Brittney Jung-Hynes, Wei Huang, Russel J. Reiter, Nihal Ahmad, Melatonin resynchronizes dysregulated circadian rhythm circuitry in human prostate cancer cells Journal of Pineal Research. ,vol. 49, pp. 60- 68 ,(2010) , 10.1111/J.1600-079X.2010.00767.X
WATARU SAKAMOTO, SEIICHI TAKENOSHITA, Overexpression of both CLOCK and BMAL1 inhibits entry to S phase in human colon cancer cells Fukushima journal of medical science. ,vol. 61, pp. 111- 124 ,(2015) , 10.5387/FMS.2015-11
Brian J. Altman, Annie L. Hsieh, Arjun Sengupta, Saikumari Y. Krishnanaiah, Zachary E. Stine, Zandra E. Walton, Arvin M. Gouw, Anand Venkataraman, Bo Li, Pankuri Goraksha-Hicks, Sharon J. Diskin, David I. Bellovin, M. Celeste Simon, Jeffrey C. Rathmell, Mitchell A. Lazar, John M. Maris, Dean W. Felsher, John B. Hogenesch, Aalim M. Weljie, Chi V. Dang, MYC Disrupts the Circadian Clock and Metabolism in Cancer Cells Cell Metabolism. ,vol. 22, pp. 1009- 1019 ,(2015) , 10.1016/J.CMET.2015.09.003
RI-XIONG WANG, HUI LIU, LI XU, HUI ZHANG, RUI-XIANG ZHOU, Involvement of nuclear receptor RZR/RORγ in melatonin-induced HIF-1α inactivation in SGC-7901 human gastric cancer cells. Oncology Reports. ,vol. 34, pp. 2541- 2546 ,(2015) , 10.3892/OR.2015.4238
J Liu, X Bi, T Chen, Q Zhang, S-X Wang, J-J Chiu, G-S Liu, Y Zhang, P Bu, F Jiang, Shear stress regulates endothelial cell autophagy via redox regulation and Sirt1 expression Cell Death and Disease. ,vol. 6, pp. 1- 11 ,(2015) , 10.1038/CDDIS.2015.193
Hui Hua, Yueqi Wang, Chaomin Wan, Yanyou Liu, Bin Zhu, Chunlei Yang, Xiaojia Wang, Zhengrong Wang, Germaine Cornelissen-Guillaume, Franz Halberg, Circadian gene mPer2 overexpression induces cancer cell apoptosis Cancer Science. ,vol. 97, pp. 589- 596 ,(2006) , 10.1111/J.1349-7006.2006.00225.X
Marina P. Antoch, Victoria Y. Gorbacheva, Olena Vykhovanets, Illia A. Toshkov, Roman V. Kondratov, Anna A. Kondratova, Choogon Lee, Alexander Yu Nikitin, Disruption of the circadian clock due to theClockmutation has discrete effects on aging and carcinogenesis Cell Cycle. ,vol. 7, pp. 1197- 1204 ,(2008) , 10.4161/CC.7.9.5886