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Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells

Тип публикацииJournal Article
Дата публикации2022-09-28
SCImago Q1
WOS Q2
БС1
SJR1.41
CiteScore8.8
Impact factor4.4
ISSN20726694
Cancer Research
Oncology
Краткое описание

Anthraquinone-based intercalating compounds, namely doxorubicin and mitoxantrone, have been used clinically based on their capacity to bind DNA and induce DNA damage. However, their applications have been limited by side effects and drug resistance. New-generation anthraquinone derivatives fused with different heterocycles have been chemically synthesized and screened for higher anticancer potency. Among the compounds reported in our previous study, 4,11-bis(2-(2-chloroacetamidine)ethylamino)anthra[2,3-b]thiophene-5,10-dione dihydrochloride (designated 2c) was found to be apoptotic, but the direct cellular target responsible for the cytotoxicity remained unknown. Here, we report the synthesis and anticancer properties of two other derivatives, 4,11-bis(2-(2-chloroacetamidine)ethylamino)naphtho[2,3-f]indole-5,10-dione dihydrochloride (2a) and 4,11-bis(2-(2-chloroacetamidine)ethylamino)-2-methylanthra[2,3-b]furan-5,10-dione dihydrochloride (2b). We sought to identify and validate the protein target(s) of these derivatives in oral cancer cells, using molecular docking simulations and cellular thermal shift assays (CETSA). Our CETSA results illustrate that these derivatives targeted the tumor-associated NADH oxidase (tNOX, ENOX2), and their direct binding downregulated tNOX in p53-functional SAS and p53-mutated HSC-3 cells. Interestingly, the compounds targeted and downregulated tNOX to reduce SIRT1 deacetylase activity and increase Ku70 acetylation, which triggers c-Flip ubiquitination and induces apoptosis in oral cancer cells. Together, our data highlight the potential value of these heteroarene-fused anthraquinones in managing cancer by targeting tNOX and augmenting apoptosis.

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Russian Chemical Reviews
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ГОСТ |
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Chang J. S. et al. Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells // Cancers. 2022. Vol. 14. No. 19. p. 4719.
ГОСТ со всеми авторами (до 50) Скопировать
Chang J. S., Chen C. Yu., Tikhomirov A. S., Islam A., Liang R. H., Liang R., Weng C. W., Wu W. H., Wu W., Shchekotikhin A., Chueh P. Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells // Cancers. 2022. Vol. 14. No. 19. p. 4719.
RIS |
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TY - JOUR
DO - 10.3390/cancers14194719
UR - https://www.mdpi.com/2072-6694/14/19/4719
TI - Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells
T2 - Cancers
AU - Chang, Jeng Shiun
AU - Chen, Chien Yu
AU - Tikhomirov, Alexander S
AU - Islam, Atikul
AU - Liang, Ru Hao
AU - Liang, Ru-Hao
AU - Weng, Chia Wei
AU - Wu, Wei Hou
AU - Wu, Wei-Hou
AU - Shchekotikhin, Andrey
AU - Chueh, Pin-Ju
PY - 2022
DA - 2022/09/28
PB - MDPI
SP - 4719
IS - 19
VL - 14
PMID - 36230644
SN - 2072-6694
ER -
BibTex |
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@article{2022_Chang,
author = {Jeng Shiun Chang and Chien Yu Chen and Alexander S Tikhomirov and Atikul Islam and Ru Hao Liang and Ru-Hao Liang and Chia Wei Weng and Wei Hou Wu and Wei-Hou Wu and Andrey Shchekotikhin and Pin-Ju Chueh},
title = {Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells},
journal = {Cancers},
year = {2022},
volume = {14},
publisher = {MDPI},
month = {sep},
url = {https://www.mdpi.com/2072-6694/14/19/4719},
number = {19},
pages = {4719},
doi = {10.3390/cancers14194719}
}
MLA
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Chang, Jeng Shiun, et al. “Bis(chloroacetamidino)-Derived Heteroarene-Fused Anthraquinones Bind to and Cause Proteasomal Degradation of tNOX, Leading to c-Flip Downregulation and Apoptosis in Oral Cancer Cells.” Cancers, vol. 14, no. 19, Sep. 2022, p. 4719. https://www.mdpi.com/2072-6694/14/19/4719.
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