Design, synthesis and biological evaluation of novel TMPRSS2-PROTACs with florosubstituted 4-guanidino-N-phenylbenzamide derivative ligands

被引:1
作者
Yang, Hao [1 ,2 ]
Xu, Haoran [1 ,2 ]
Lin, Xinxin [1 ,2 ]
Cai, Zengxuan [3 ]
Xia, Yong [3 ]
Wang, Yu [1 ,2 ]
Chen, Zejie [1 ,2 ]
Zhang, Koutian [4 ]
Wu, Yanling [3 ]
Wang, Jianwei [1 ,2 ]
Awadasseid, Annoor [1 ,2 ,4 ]
Zhang, Wen [1 ,2 ,5 ]
机构
[1] Zhejiang Univ Technol, Coll Pharmaceut Sci, Lab Chem Biol & Mol Drug Design, Deqing 313299, Peoples R China
[2] Zhejiang Univ Technol, Inst Drug Dev & Chem Biol, Deqing 313299, Peoples R China
[3] Zhejiang Prov Ctr Dis Control & Prevent, Hangzhou 310051, Peoples R China
[4] Zhejiang Qingzhenghong Technol Co Ltd, Hangzhou 311121, Peoples R China
[5] Zhejiang Jieyuan Med Tech Co Ltd, Hangzhou, Peoples R China
关键词
TMPRSS2; PROTAC; Cancer therapy; Apoptosis; Colorectal cancer; SERINE-PROTEASE; EPITHELIAL-CELLS; TMPRSS2; PROSTATE; TRANSMEMBRANE; INHIBITORS; INFLUENZA; GENE;
D O I
10.1016/j.bmc.2024.117982
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Transmembrane Serine Protease 2 (TMPRSS2) plays a critical role in tumorigenesis and progression, making its degradation a promising therapeutic strategy. In this study, we designed and synthesized TMPRSS2-PROTACs, including VPOT64 and VPOT76, based on camostat. Both compounds exhibited superior inhibitory effects on HT-29 colorectal and Calu-3 lung cancer cells compared to paclitaxel. Notably, VPOT76 effectively degraded TMPRSS2, significantly inhibiting the proliferation of TMPRSS2-positive HT-29 cells and inducing apoptosis with an IC50 of 0.39 +/- 0.01 mu M. Flow cytometry analysis demonstrated that VPOT76 increased early apoptotic cells in a dose-dependent manner and caused G2 phase arrest at 0.8 mu M. Colony formation assays showed that VPOT76 inhibited HT-29 colony formation, even at low concentrations, further confirming its anti-proliferative effect. Additionally, wound healing assays indicated that VPOT76 reduced the migration of HT-29 cells after 48 h, suggesting its potential to impair tumor cell invasion and metastasis. These findings highlight the multifaceted anticancer activities of VPOT76, including apoptosis induction, cell cycle arrest, colony formation inhibition, and migration suppression. Overall, this study establishes VPOT76 as a potent TMPRSS2-degrading PROTAC with strong therapeutic potential, laying the groundwork for further development of TMPRSS2-targeting treatments for colorectal and other cancers.
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页数:19
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共 33 条
[1]  
Bondeson DP, 2015, NAT CHEM BIOL, V11, P611, DOI [10.1038/NCHEMBIO.1858, 10.1038/nchembio.1858]
[2]   TMPRSS2-ERG- specific transcriptional modulation is associated with prostate cancer biomarkers and TGF-β signaling [J].
Brase, Jan C. ;
Johannes, Marc ;
Mannsperger, Heiko ;
Faelth, Maria ;
Metzger, Jennifer ;
Kacprzyk, Lukasz A. ;
Andrasiuk, Tatjana ;
Gade, Stephan ;
Meister, Michael ;
Sirma, Hueseyin ;
Sauter, Guido ;
Simon, Ronald ;
Schlomm, Thorsten ;
Beissbarth, Tim ;
Korf, Ulrike ;
Kuner, Ruprecht ;
Sueltmann, Holger .
BMC CANCER, 2011, 11
[3]   Chemistries of bifunctional PROTAC degraders [J].
Cao, Chaoguo ;
He, Ming ;
Wang, Liguo ;
He, Yuna ;
Rao, Yu .
CHEMICAL SOCIETY REVIEWS, 2022, 51 (16) :7066-7114
[4]   TMPRSS2, a Serine Protease Expressed in the Prostate on the Apical Surface of Luminal Epithelial Cells and Released into Semen in Prostasomes, Is Misregulated in Prostate Cancer Cells [J].
Chen, Ya-Wen ;
Lee, Ming-Shyue ;
Lucht, Amanda ;
Chou, Feng-Pai ;
Huang, Wei ;
Havighurst, Thomas C. ;
Kim, KyungMann ;
Wang, Jehng-Kang ;
Antalis, Toni M. ;
Johnson, Michael D. ;
Lin, Chen-Yong .
AMERICAN JOURNAL OF PATHOLOGY, 2010, 176 (06) :2986-2996
[5]   A high-throughput screen for TMPRSS2 expression identifies FDA-approved compounds that can limit SARS-CoV-2 entry [J].
Chen, Yanwen ;
Lear, Travis B. ;
Evankovich, John W. ;
Larsen, Mads B. ;
Lin, Bo ;
Alfaras, Irene ;
Kennerdell, Jason R. ;
Salminen, Laura ;
Camarco, Daniel P. ;
Lockwood, Karina C. ;
Tuncer, Ferhan ;
Liu, Jie ;
Myerburg, Michael M. ;
McDyer, John F. ;
Liu, Yuan ;
Finkel, Toren ;
Chen, Bill B. .
NATURE COMMUNICATIONS, 2021, 12 (01)
[6]   Identification of TMPRSS2 as a Susceptibility Gene for Severe 2009 Pandemic A(H1N1) Influenza and A(H7N9) Influenza [J].
Cheng, Zhongshan ;
Zhou, Jie ;
To, Kelvin Kai-Wang ;
Chu, Hin ;
Li, Cun ;
Wang, Dong ;
Yang, Dong ;
Zheng, Shufa ;
Hao, Ke ;
Bosse, Yohan ;
Obeidat, Ma'en ;
Brandsma, Corry-Anke ;
Song, You-Qiang ;
Chen, Yu ;
Zheng, Bo-Jian ;
Li, Lanjuan ;
Yuen, Kwok-Yung .
JOURNAL OF INFECTIOUS DISEASES, 2015, 212 (08) :1214-1221
[7]   Structure and activity of human TMPRSS2 protease implicated in SARS-CoV-2 activation [J].
Fraser, Bryan J. ;
Beldar, Serap ;
Seitova, Almagul ;
Hutchinson, Ashley ;
Mannar, Dhiraj ;
Li, Yanjun ;
Kwon, Daniel ;
Tan, Ruiyan ;
Wilson, Ryan P. ;
Leopold, Karoline ;
Subramaniam, Sriram ;
Halabelian, Levon ;
Arrowsmith, Cheryl H. ;
Benard, Francois .
NATURE CHEMICAL BIOLOGY, 2022, 18 (09) :963-+
[8]   Mapping of TMPRSS2-ERG fusions in the context of multi-focal prostate cancer [J].
Furusato, Bungo ;
Gao, Chun-Ling ;
Ravindranath, Lakshmi ;
Chen, Yongmei ;
Cullen, Jennifer ;
McLeod, David G. ;
Dobi, Albert ;
Srivastava, Shiv ;
Petrovics, Gyorgy ;
Sesterhenn, Isabell A. .
MODERN PATHOLOGY, 2008, 21 (02) :67-75
[9]  
Giunchi F, 2020, Diagnostics (Basel)
[10]   Strategies toward Discovery of Potent and Orally Bioavailable Proteolysis Targeting Chimera Degraders of Androgen Receptor for the Treatment of Prostate Cancer [J].
Han, Xin ;
Zhao, Lijie ;
Xiang, Weiguo ;
Qin, Chong ;
Miao, Bukeyan ;
McEachern, Donna ;
Wang, Yu ;
Metwally, Hoda ;
Wang, Lu ;
Matvekas, Aleksas ;
Wen, Bo ;
Sun, Duxin ;
Wang, Shaomeng .
JOURNAL OF MEDICINAL CHEMISTRY, 2021, 64 (17) :12831-12854