Chinese Journal of Clinical Pharmacology and Therapeutics ›› 2013, Vol. 18 ›› Issue (7): 807-812.
Previous Articles Next Articles
WEI Na1, HE Hai-bo2, ZHANG Chang-cheng1, YUAN Ding1, WANG Ting1
Received:
2012-09-25
Revised:
2012-12-31
Online:
2013-07-26
Published:
2013-06-20
CLC Number:
WEI Na, HE Hai-bo, ZHANG Chang-cheng, YUAN Ding, WANG Ting. Research development between JNK pathway and apoptosis[J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2013, 18(7): 807-812.
[1] Dhanasekaran DN, Reddy EP. JNK signaling in apoptosis [J]. Oncogene, 2008, 27(48): 6245-6251. [2] Jones EV, Dickman MJ, Whitmarsh AJ. Regulation of p73-mediated apoptosis by c-Jun N-terminal kinase [J]. Biochem J, 2007, 405 (3): 617-623. [3] Aoki H, Kang PM, Hampe J, et al. Direct activation of mitochondrial apoptosis machinery by c-Jun N-terminal kinase in adult cardiacmyocytes [J]. J Biol Chem, 2002, 277 (12): 10244 -10250. [4] Gupta S, Barrett T, Whitmarsh AJ, et al. Selective interaction of JNK protein kinase isoforms with transcription factors [J]. EMBO J, 1996, 15(11): 2760-2770. [5] Weston CR, Davis RJ. The JNK signal transduction pathway [J]. Curr Opin Cell Biol, 2007, 19(2): 142-149. [6] Kyriakis JM, Avruch J. Mammalian mitogen-activated protein kinase signal transduction pathways activated by stress and inflammation [J]. Physiol Rev, 2001, 81(2): 807-886. [7] Raman M, Chen W, Cobb MH. Differential regulation and properties of MAPKs [J]. Oncogene, 2007, 26 (22): 3100-3112. [8] Cargnello M, Roux PP. Activation and function of the MAPKs and their substrates, the MAPK-activated protein kinases [J]. Microbiol Mol Biol Rev, 2011, 75 (1): 50-83. [9] Patterson KI, Brummer T, O'Brien PM, et al. Dual-specificity phosphatases: critical regulators with diverse cellular targets [J]. Biochem J, 2009, 418(3): 475-489. [10] Petrich BG, Molkentin JD, Wang Y. Temporal activation of c-Jun N-terminal kinase in adult transgenic heart via creloxP-mediated DNA recombination [J]. FASEB J, 2003, 17 (6): 749-751. [11] Goldsmith ZG, Dhanasekaran DN. G protein regulation of MAPK networks [J]. Oncogene, 2007, 26 (22): 3122-3142. [12] Plotnikov A, Zehorai E, Procaccia S, et al. The MAPK cascades: signaling components, nuclear roles and mechanisms of nuclear translocation [J]. Biochim Biophys Acta, 2011, 1813 (9): 1619-1633. [13] Jeffrey KL, Camps M, Rommel C, et al. Targeting dual-specificity phosphatases: manipulating MAP kinase signalling and immune responses [J]. Nat Rev Drug Discovery, 2007, 6 (5): 391-403. [14] Weiss C, Schneider S, Wagner EF, et al. JNK phosphorylation relieves HDAC3-dependent suppression of the transcriptional activity of c-Jun [J]. EMBO J, 2003, 22 (14): 3686-3695. [15] Schreck I, Al-Rawi M, Mingot JM, et al. c-Jun localizes to the nucleus independent of its phosphorylation by and interaction with JNK and vice versa promotes nuclear accumulation of JNK [J]. Biochem Biophys Res Commun, 2011, 407 (4): 735-740. [16] Lai B, Pu H, Cao Q, et al. Activation of caspase-3 and c-Jun NH2-terminal kinase signaling pathways involving heroin-induced neuronal apoptosis [J]. Neurosci Lett, 2011, 502 (3): 209 -213. [17] Anand SS, Babu PP. c-Jun N terminal kinases (JNK) are activated in the brain during the pathology of experimental cerebral malaria [J]. Neurosci Lett, 2011, 488 (2) 118-122. [18] Wang T, Gu J, Wu PF, et al. Protection by tetrahydroxystilbene glucoside against cerebral ischemia: involvement of JNK, SIRT1, and NF-κB pathways and inhibition of intracellular ROS/RNS generation [J]. Free Radic Biol Med, 2009, 47 (3): 229-240. [19] Fernandes KA, Harder JM, Fornarola LB, et al. JNK2 and JNK3 are major regulators of axonal injury-induced retinal ganglion cell death [J]. Neurobiol Dis, 2012, 46 (2): 393-401. [20] Ju JM, Qi ZC, Cai XT. et al. Toosendanin induces apoptosis through suppression of JNK signaling pathway in HL-60 cells[J]. Toxicol In Vitro, 2012, doi: 10.1016/j.tiv.2012.09.013. [Epub ahead of print] . [21] Tsay JG, Chung KT, Yeh CH, et al. Calvatia lilacina protein extract induces apoptosis through endoplasmic reticulum stress in human colon carcinoma cells [J]. J Agric Food Chem, 2009, 57 (4): 1579-1588. [22] Xie CM, Chan WY, Yu S, et al. Bufalin induces autophagy-mediated cell death in human colon cancer cells through reactive oxygen species generation and JNK activation [J]. Free Radic Biol Med,2011, 51 (7): 1365-1375. [23] 章圣辉, 韩义香, 吴建波, 等. 三氧化二砷通过JNK 信号通路诱导K562细胞凋亡[J]. 中国临床药理学与治疗学, 2008, 13(10): 1099-1103. [24] Kwon TR, Jeong SJ, Lee HJ, et al. Reactive oxygen species-mediated activation of JNK and down-regulation of DAXX are critically involved in penta-O-galloyl-beta-D-glucose-induced apoptosis in chronic myeloid leukemia K562 cells [J]. Biochem Biophys Res Commun,2012, 424 (3): 530-537. [25] She QB, Chen N, Bode AM, et al. Deficiency of c-Jun-NH (2)-terminal kinase-1 in mice enhances skin tumor development by 12-O-tetradecanoylphorbol-13-acetate [J]. Cancer Res, 2002, 62 (5): 1343-1348. [26] Nateri AS, Spencer-Dene B, Behrens A. Interaction of phosphorylated c-Jun with TCF4 regulates intestinal cancer development [J]. Nature, 2005, 437 (7056): 281-285. [27] Xia HH, He H, De Wang J, et al. Induction of apoptosis and cell cycle arrest by a specific c-Jun NH2-terminal kinase (JNK) inhibitor, SP-600125, in gastrointestinal cancers [J]. Cancer Lett, 2006, 241 (2): 268-274. [28] Benoit M, Dormond-Meuwly A, Demartines N, et al. Targeting the JNK Signaling Pathway Potentiates the Antiproliferative Efficacy of Rapamycin in LS174T Colon Cancer Cells [J]. J Surg Res, 2011, 167(2): e193-e198. [29] Sakurai T, Maeda S, Chang L, et al. Loss of hepatic NF-kappa B activity enhances chemical hepatocarcinogenesis through sustained c-Jun N-terminal kinase 1 activation. Proc Natl Acad Sci USA, 2006, 103 (28): 10544-10551. [30] Aoki H, Kang PM, Hampe J. Direct activation of mitochondrial apoptosis machinery by c-Jun N-terminal kinase in adult cardiac myocytes [J]. J Biol Chem, 2002, 277(12): 10244 -10250. [31] Ferrandi C,Ballerio R,Gaillard P, et al. Inhibition of c-Jun N-terminal kinase decreases cardimoyocyte apoptosis and infarct size after myocardial ischemia and reperfusion in anaesthetized rats [J]. Br J Pharmacol, 2004, 142 (6): 953-960. [32] Tien YC, Lin JY, Lai CH, et al. Carthamus tinctorius L. prevents LPS-induced TNF signaling activation and cell apoptosis through JNK1/2-NF-κB pathway inhibition in H9c2 cardiomyoblast cells [J]. J Ethnopharmacol, 2010, 130 (3): 505-513. [33] Ghosh J, Das J, Manna P, et al. Taurine prevents arsenic-induced cardiac oxidative stress and apoptotic damage: Role of NF-κB, p38 and JNK MAPK pathway [J]. Toxicol Appl Pharmacol, 2009, 240 (1): 73-87. [34] Das J, Ghosh J, Manna P, et al. Taurine suppresses doxorubicin-triggered oxidative stress and cardiac apoptosis in rat via up-regulation of PI3-K/Akt and inhibition of p53, p38-JNK [J]. Biochem Pharmacol, 2011, 81(7): 891-909. [35] Ghosh J, Das J, Manna P, et al. The protective role of arjunolic acid against doxorubicin induced intracellular ROS dependent JNK-p38 and p53-mediated cardiac apoptosis [J]. Biomaterials, 2011, 32 (21): 4857-4866. [36] Bradham CA, Stachlewitz RF, Gao W, et al. Reperfusion after liver transplantation in rats differentially activates the mitogen-activated protein kinases [J]. Hepatology, 1997, 25(5): 1128-1135. [37] Uehara T, Bennett B, Sakata ST, et al. JNK mediates hepatic ischemia-reperfusion injury [J]. J Hepatol, 2005, 42(6): 850-859. [38] Wullaert A, Heyninck K, Beyaert R. Mechanisms of crosstalk between TNF-induced NF-kappaB and JNK activation in hepatocytes [J]. Biochem Pharmacol, 2006, 72(9): 1090-1101. [39] Kim HY, Lee SM. Ferulic acid attenuates ischemia/reperfusion-induced hepatocyte apoptosis via inhibition of JNK activation [J]. Eur J Pharm Sci, 2012, 45(5): 708-715. [40] Uehara T, Bennett B, Sakata ST, et al. JNK mediates hepatic ischemia reperfusion injury [J]. J Hepatol, 2005, 42 (6):850-859. [41] Ocuin LM, Zeng S, Cavnar MJ, et al. Nilotinib protects the murine liver from ischemia/reperfusion injury [J]. J Hepatol, 2012, http://dx.doi.org/10.1016/j.jhep.2012.05. 012. [42] 侯炳旭, 冯丽英. JNK信号通路介导的凋亡在疾病中的作用[J]. 世界华人消化杂志, 2011, 19 (17): 1819-1825. |
[1] | FAN Jie, JIN Yongming, JIANG Xiaolong, JIANG Guohua. Molecular mechanism of lncRNA HOTAIR regulating miR-206 on the proliferation and apoptosis of rheumatoid arthritis synovial cells [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(7): 736-742. |
[2] | YANG Xiaojia, JIANG Meng, WU Min, ZHANG Yili, LV Lan, WU Yuanfen, WANG Xinyu, LIU Liquan. Improvement effect of crocin on cognitive impairment of Alzheimer's disease rats through DKK3 regulation of GSK-3 β/β-Catenin pathway [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(5): 489-497. |
[3] | ZHANG Xuejiao, LIU Jieting, LI Luxin, CHEN Peijian, DING Minglu, SUN Mengwei, CHU Yanhui, ZHANG Zhen . Effects and mechanism of dapagliflozin on myocardial injury in type 1 diabetes mice [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(3): 257-265. |
[4] | HOU Xiaoyu, LENG Yufang, CAO Xuefen, LV Xingjiao, HAN Xiaoxia, Janvier NIBARUTA, LIU Yongqiang. Network analysis and experimental verification of Schisandrin B reduces intestinal ischemia reperfusion injury [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(2): 147-154. |
[5] | WANG Jian, SUN Yongdong, ZHOU Xingwei, LIU Lei, CHEN Long, TONG Xingke, ZHU Jiali. Baicalein promotes laryngeal cancer cell death and inhibits invasion via miR-125b-5p/IRF4 axis [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(11): 1209-1218. |
[6] | ZHU Ruifang, GUO Dongkai, ZHI Hui, JIANG Yiguo, ZHANG Yueling, QIAN Xiaoping, JI Shiliang. Exploring the mechanism of elemene synergistic bortezomib against multiple myeloma by ROS-NF-κB-p38MAPK pathway [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2023, 28(11): 1219-1226. |
[7] | ZHOU Huan, XU Ming, LI Bo, LIU Chunying, WANG Chun. PI3K/Akt/FOXO3a signaling pathway inducing protective autophagy promotes acquired lung adenocarcinoma resistance remodeling to DDP [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(9): 961-970. |
[8] | HUA Haiyan, YAN Jie, QIN Yufen. Experimental study of schisandrin B attenuates acute myocardial ischemia injury in rats by inhibiting cardiomyocyte apoptosis [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(8): 848-856. |
[9] | LI Xueheng, LI Long. Research progress on the relationship between melatonin and idiopathic pulmonary fibrosis [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(6): 715-720. |
[10] | YANG Liu, LUO Ailin, LI Shiyong. Advance of general anesthetics-induced developing brain injury [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(12): 1381-1390. |
[11] | TAN Fenglang, REN Hongli, WANG Hongfei. Effect of Phellodendri amurense extract on hippocampal nerve cells induced by Aβ1-42 [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(11): 1213-1220. |
[12] | PAN Rongrong, ZHI Yinghao, JIN Yongxi, ZHOU Xiahui. Influences of theaflavins on neuronal apoptosis and blood-brain barrier in rats with cerebral hemorrhage by regulating CaMKK2/AMPK signaling pathway [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(11): 1240-1246. |
[13] | LI Ying, YAO Wei, WANG Meng, YU Zhihong, GONG Yuanqi, LAN Haibing, QI Xiefei. Experimental study of irisin alleviates house dust mite-induced airway epithelial cells inflammation and apoptosis via the NF-κB and JNK signaling pathways [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2022, 27(10): 1106-1112. |
[14] | LIU Yunfan, DU Yuemei, LIU Xiaoyi, GAO Liping. Effects of lycium barbarum polysaccharides on cis-dichlorodiamineplatinum (II)-induced apoptosis in mouse testis sertoli cells TM4#br# [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2021, 26(6): 624-630. |
[15] | WEI Songchang, YANG Hongqi, ZHANG Hongjuan, SHI Xiaoli, REN Kaiwen. Correlation between the expression of RON protein and CXC chemokine receptor 4 protein and abiraterone resistance in patients with castration-resistant prostate cancer [J]. Chinese Journal of Clinical Pharmacology and Therapeutics, 2021, 26(4): 414-422. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||