Open Access
Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences
2
Mahatma Gandhi Medical Advanced Research Institute (MGMARI), Sri Balaji Vidyapeeth (Deemed to be University), Pondy−Cuddalore Main Road, Pillaiyarkuppam, Pondicherry 607402, India
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Publication type: Journal Article
Publication date: 2023-08-07
scimago Q1
wos Q2
SJR: 0.773
CiteScore: 7.1
Impact factor: 4.3
ISSN: 24701343
PubMed ID:
37636929
General Chemistry
General Chemical Engineering
Abstract
Research on the interactions of naturally existing flavonoids with various noncanonical DNA such as i-motif (IM) DNA structures is helpful in comprehending the molecular basis of binding mode as well as providing future direction for the application and invention of novel effective therapeutic drugs. IM DNA structures have been identified as prospective anticancer therapeutic targets, and flavonoids are smaller molecules with a variety of health-promoting attributes, including anticancer activities. The extensive investigation comprising a series of techniques reveals the contrasting mode of the binding behavior of fisetin and morin with various IM DNA structures. We have discovered that structural alterations of hydroxyl groups located at different places of aromatic rings influence flavonoid's reactivity. This minor structural alteration appears to be critical for fisetin and morin's capacity to interact differentially with HRAS1 and HRAS2 IM DNA. Hence, fisetin appears to be an efficient ligand for HRAS1 and morin is considered to be an efficient ligand for HRAS2 IM DNA. This novel exploration opens up the possibility of employing the strategy for regulation of gene expression in cancerous cells. Our finding also reveals the flavonoid-mediated specific interaction with IM DNA while pointing toward tangible strategies for drug discovery and other essential cellular functions.
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Total citations:
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Citations from 2024:
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(92.85%)
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Bag S. et al. Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences // ACS Omega. 2023. Vol. 8. No. 33. pp. 30315-30329.
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Bag S., Ghosal S., Karmakar S., Pramanik G., Bhowmik S. Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences // ACS Omega. 2023. Vol. 8. No. 33. pp. 30315-30329.
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RIS
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TY - JOUR
DO - 10.1021/acsomega.3c03105
UR - https://pubs.acs.org/doi/10.1021/acsomega.3c03105
TI - Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences
T2 - ACS Omega
AU - Bag, Sagar
AU - Ghosal, Souvik
AU - Karmakar, Sudip
AU - Pramanik, Goutam
AU - Bhowmik, Sudipta
PY - 2023
DA - 2023/08/07
PB - American Chemical Society (ACS)
SP - 30315-30329
IS - 33
VL - 8
PMID - 37636929
SN - 2470-1343
ER -
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BibTex (up to 50 authors)
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@article{2023_Bag,
author = {Sagar Bag and Souvik Ghosal and Sudip Karmakar and Goutam Pramanik and Sudipta Bhowmik},
title = {Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences},
journal = {ACS Omega},
year = {2023},
volume = {8},
publisher = {American Chemical Society (ACS)},
month = {aug},
url = {https://pubs.acs.org/doi/10.1021/acsomega.3c03105},
number = {33},
pages = {30315--30329},
doi = {10.1021/acsomega.3c03105}
}
Cite this
MLA
Copy
Bag, Sagar, et al. “Uncovering the Contrasting Binding Behavior of Plant Flavonoids Fisetin and Morin Having Subsidiary Hydroxyl Groups (−OH) with HRAS1 and HRAS2 i-Motif DNA Structures: Decoding the Structural Alterations and Positional Influences.” ACS Omega, vol. 8, no. 33, Aug. 2023, pp. 30315-30329. https://pubs.acs.org/doi/10.1021/acsomega.3c03105.