Open Access
Open access
volume 24 issue 15 pages 12479

Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells

Publication typeJournal Article
Publication date2023-08-05
scimago Q1
wos Q1
SJR1.273
CiteScore9.0
Impact factor4.9
ISSN16616596, 14220067
Catalysis
Organic Chemistry
Inorganic Chemistry
Physical and Theoretical Chemistry
Computer Science Applications
Spectroscopy
Molecular Biology
General Medicine
Abstract

Numerous in vitro and in vivo studies have shown that curcumin primarily activates apoptotic pathways in cancer cells and inhibits cancer progression by modulating various molecular targets. In this study, we utilized reverse docking servers to predict 444 human proteins that may potentially be targeted by curcumin. Then, high-throughput assays were conducted by using RNA-seq technology on curcumin-treated MCF-7 (human breast cancer ER (+)) and MDA-MB-231 (human breast cancer ER(-)/TNBC) cancer cell lines. Enrichment analysis identified seven and eight significantly down-regulated signaling pathways in these two cell lines, where the enriched genes were used to construct protein–protein interaction networks. From these networks, the MCODE algorithm screened out 42 hub targets, which are core genes of the RTK-(PI3K-AKT)/(MEK/ERK1/2) crosstalk network. Genetic alteration and expression patterns of hub targets of curcumin may be closely related to the overall pathogenesis and prognosis of breast cancer. MAPKAPK3, AKT3, CDK5, IGF1R, and MAPK11 are potential prognostic markers and therapeutic targets of curcumin in patients with triple-negative breast cancer. Molecular docking and transcriptomic results confirmed that curcumin can inhibit these high-scoring targets at the protein level. Additionally, these targets can act as self-feedback factors, relying on the cascading repressive effects in the network to limit their own transcription at the mRNA level. In conclusion, the integration of transcriptomic and molecular docking approaches enables the rapid identification of dual or multiple inhibitory targets of curcumin in breast cancer. Our study provides the potential elucidation of the anti-cancer mechanism of curcumin.

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GOST |
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GOST Copy
Rui W. et al. Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells // International Journal of Molecular Sciences. 2023. Vol. 24. No. 15. p. 12479.
GOST all authors (up to 50) Copy
Rui W., Hao Yu., Chen P., Yuan T., Zhang J. Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells // International Journal of Molecular Sciences. 2023. Vol. 24. No. 15. p. 12479.
RIS |
Cite this
RIS Copy
TY - JOUR
DO - 10.3390/ijms241512479
UR - https://doi.org/10.3390/ijms241512479
TI - Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells
T2 - International Journal of Molecular Sciences
AU - Rui, Wang
AU - Hao, Yu
AU - Chen, Peide
AU - Yuan, Ting
AU - Zhang, Jing
PY - 2023
DA - 2023/08/05
PB - MDPI
SP - 12479
IS - 15
VL - 24
PMID - 37569854
SN - 1661-6596
SN - 1422-0067
ER -
BibTex |
Cite this
BibTex (up to 50 authors) Copy
@article{2023_Rui,
author = {Wang Rui and Yu Hao and Peide Chen and Ting Yuan and Jing Zhang},
title = {Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells},
journal = {International Journal of Molecular Sciences},
year = {2023},
volume = {24},
publisher = {MDPI},
month = {aug},
url = {https://doi.org/10.3390/ijms241512479},
number = {15},
pages = {12479},
doi = {10.3390/ijms241512479}
}
MLA
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MLA Copy
Rui, Wang, et al. “Integrated Transcriptome and Molecular Docking to Identify the Hub Superimposed Attenuation Targets of Curcumin in Breast Cancer Cells.” International Journal of Molecular Sciences, vol. 24, no. 15, Aug. 2023, p. 12479. https://doi.org/10.3390/ijms241512479.