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CTCF acetylation at lysine 20 is required for the early cardiac mesoderm differentiation of embryonic stem cells Journal article
Shixin Gong, Gongcheng Hu, Rong Guo, Jie Zhang, Yiqi Yang, Binrui Ji, Gang Li, Hongjie Yao. CTCF acetylation at lysine 20 is required for the early cardiac mesoderm differentiation of embryonic stem cells[J]. Cell Regeneration, 2022, 11(1), 34.
Authors:  Shixin Gong;  Gongcheng Hu;  Rong Guo;  Jie Zhang;  Yiqi Yang; et al.
Favorite | TC[WOS]:3 TC[Scopus]:3 | Submit date:2023/01/30
Cbp  Ctcf  Ctcf Acetylation  Early Cardiac Mesoderm Differentiation  Hdac6  
Celastrol inhibits lung cancer growth by triggering histone acetylation and acting synergically with HDAC inhibitors Journal article
Chen, Geer, Zhu, Xiaoyu, Li, Jiaqi, Zhang, Yao, Wang, Xiaoxuan, Zhang, Ren, Qin, Xinchen, Chen, Xi, Wang, Junyi, Liao, Weilin, Wu, Zongjin, Lu, Lu, Wu, Weiyu, Yu, Haijie, Ma, Lijuan. Celastrol inhibits lung cancer growth by triggering histone acetylation and acting synergically with HDAC inhibitors[J]. Pharmacological Research, 2022, 185.
Authors:  Chen, Geer;  Zhu, Xiaoyu;  Li, Jiaqi;  Zhang, Yao;  Wang, Xiaoxuan; et al.
Favorite | TC[WOS]:16 TC[Scopus]:17  IF:9.1/9.0 | Submit date:2023/01/31
Acetylation  Anacardic ACid (Pubchem Cid: 167551)  C646 (Pubchem Cid: 1285941)  Celastrol  Celastrol (Pubchem Cid: 122724)  Ci994 (Pubchem Cid: 2746)  Hdac  Histone Modification  Lung Cancer  Mc1568 (Pubchem Cid: 71311876)  Ms275 (Pubchem Cid: 4261)  Nu9056 (Pubchem Cid: 72201043)  Saha (Pubchem Cid: 5311)  
Mitochondrial Sirtuin-3 (SIRT3) Prevents Doxorubicin-Induced Dilated Cardiomyopathy by Modulating Protein Acetylation and Oxidative Stress Journal article
Tomczyk, Mateusz M., Cheung, Kyle G., Xiang, Bo, Tamanna, Nahid, Fonseca Teixeira, Ana L., Agarwal, Prasoon, Kereliuk, Stephanie M., Spicer, Victor, Lin, Ligen, Treberg, Jason, Tong, Qiang, Dolinsky, Vernon W.. Mitochondrial Sirtuin-3 (SIRT3) Prevents Doxorubicin-Induced Dilated Cardiomyopathy by Modulating Protein Acetylation and Oxidative Stress[J]. CIRCULATION-HEART FAILURE, 2022, 15(5), e008547.
Authors:  Tomczyk, Mateusz M.;  Cheung, Kyle G.;  Xiang, Bo;  Tamanna, Nahid;  Fonseca Teixeira, Ana L.; et al.
Favorite | TC[WOS]:32 TC[Scopus]:34  IF:7.8/9.7 | Submit date:2022/06/10
Acetylation  Dilated Cardiomyopathy  Doxorubicin  Mitochondria  Superoxide  
The acetylation of histone 3 is involved in the neuroprotective effects of artemisinin in PC12 cells Conference paper
Zheng, W.. The acetylation of histone 3 is involved in the neuroprotective effects of artemisinin in PC12 cells[C], 2021.
Authors:  Zheng, W.
Favorite |  | Submit date:2022/08/31
Artemisinin  Alzheimer's Disease  Acetylation  Histone 3  
The acetylation of histone 3 is involved in the neuroprotective effects of artemisinin in PC12 cells Conference paper
Chen, Y., Zheng, W.. The acetylation of histone 3 is involved in the neuroprotective effects of artemisinin in PC12 cells[C], 2021.
Authors:  Chen, Y.;  Zheng, W.
Favorite |  | Submit date:2022/08/31
Artemisinin  Alzheimer's disease  acetylation  histone 3  
Nimbolide inhibits 2D and 3D prostate cancer cells migration, affects microtubules and angiogenesis and suppresses B-RAF/p.ERK-mediated in vivo tumor growth Journal article
Mahmoud, Nuha, Dawood, Mona, Huang, Qi, Ng, Jerome P.L., Ren, Fang, Wong, Vincent K.W., Efferth, Thomas. Nimbolide inhibits 2D and 3D prostate cancer cells migration, affects microtubules and angiogenesis and suppresses B-RAF/p.ERK-mediated in vivo tumor growth[J]. Phytomedicine, 2021, 94.
Authors:  Mahmoud, Nuha;  Dawood, Mona;  Huang, Qi;  Ng, Jerome P.L.;  Ren, Fang; et al.
Favorite | TC[WOS]:11 TC[Scopus]:10  IF:6.7/6.2 | Submit date:2023/01/30
Animal Study  E-cadherin  Meliaceae  Three-dimensional Spheroid  Tube-formation Assay  Tubulin Acetylation  
A 7-methoxybicoumarin derivative selectively inhibits BRD4 BD2 for anti-melanoma therapy Journal article
Yang,Guan Jun, Wang,Wanhe, Lei,Pui Man, Leung,Chung Hang, Ma,Dik Lung. A 7-methoxybicoumarin derivative selectively inhibits BRD4 BD2 for anti-melanoma therapy[J]. International Journal of Biological Macromolecules, 2020, 164, 3204-3220.
Authors:  Yang,Guan Jun;  Wang,Wanhe;  Lei,Pui Man;  Leung,Chung Hang;  Ma,Dik Lung
Favorite | TC[WOS]:26 TC[Scopus]:26  IF:7.7/7.7 | Submit date:2021/03/01
Brd4  BromoDomain Domain  Cell Metastasis And Invasion  Histone Acetylation  Melanoma  Protein–protein Interaction  Virtual Screening  
Nanoparticle-based drug delivery systems for targeted epigenetics cancer therapy Review article
2020
Authors:  Chen, Fengqian;  Shi, Yunzhen;  Zhang, Jinming;  Liu, Qi
Favorite | TC[WOS]:8 TC[Scopus]:11  IF:3.0/3.3 | Submit date:2023/04/19
Bromodomain  Dna Methylation  Epigenetic Regulation/pathway/change  Gene Expression  Histone Modifications/methylation/ Acetylation  Nanoparticle/nanomedicine/nanotechnology  Non-coding Rna  
Post-translational modification of KRAS: potential targets for cancer therapy Journal article
Wang,Wei hua, Yuan,Tao, Qian,Mei jia, Yan,Fang jie, Yang,Liu, He,Qiao jun, Yang,Bo, Lu,Jin jian, Zhu,Hong. Post-translational modification of KRAS: potential targets for cancer therapy[J]. Acta Pharmacologica Sinica, 2020, 42(8), 1201-1211.
Authors:  Wang,Wei hua;  Yuan,Tao;  Qian,Mei jia;  Yan,Fang jie;  Yang,Liu; et al.
Favorite | TC[WOS]:29 TC[Scopus]:26  IF:6.9/7.6 | Submit date:2021/03/02
Acetylation  Cancer Therapy  Kras  Nitrosylation  Oncogene  Palmitoylation  Phosphorylation  Post-translational Modification  Postprenylation  Prenylation  Sumoylation  Ubiquitination  
Acetylation of AGO2 promotes cancer progression by increasing oncogenic miR-19b biogenesis Journal article
Hailong Zhang, Yanli Wang, Jinzhuo Dou, Yanmin Guo, Jianfeng He, Lian Li, Xiaojia Liu, Ran Chen, Rong Deng, Jian Huang, Ruiyu Xie, Xian Zhao, Jianxiu Y. Acetylation of AGO2 promotes cancer progression by increasing oncogenic miR-19b biogenesis[J]. Oncogene, 2019, 38(9), 1410-1431.
Authors:  Hailong Zhang;  Yanli Wang;  Jinzhuo Dou;  Yanmin Guo;  Jianfeng He; et al.
Favorite | TC[WOS]:51 TC[Scopus]:55  IF:6.9/7.5 | Submit date:2019/01/17
Acetylation  Non-coding Rnas