Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System
Akash K Jain
1
,
Vishnu Vardhan Reddy
2
,
W. David Wilson
1
,
Kishoor Muniyappa
2
,
Santanu Bhattacharya
1, 3
Тип публикации: Journal Article
Дата публикации: 2009-10-20
scimago Q1
wos Q3
БС2
SJR: 1.175
CiteScore: 5.3
Impact factor: 3.0
ISSN: 00062960, 15204995, 1943295X
PubMed ID:
19731964
Biochemistry
Краткое описание
Achieving stabilization of telomeric DNA in G-quadruplex conformation by various organic compounds has been an important goal for the medicinal chemists seeking to develop new anticancer agents. Several compounds are known to stabilize G-quadruplexes. However, relatively few are known to induce their formation and/or alter the topology of the preformed quadruplex DNA. Herein, four compounds having the 1,3-phenylene-bis(piperazinyl benzimidazole) unit as a basic skeleton have been synthesized, and their interactions with the 24-mer telomeric DNA sequences from Tetrahymena thermophilia d(T2G4)4 have been investigated using high-resolution techniques such as circular dichroism (CD) spectropolarimetry, CD melting, emission spectroscopy, and polyacrylamide gel electrophoresis. The data obtained, in the presence of one of three ions (Li+, Na+, or K+), indicate that all the new compounds have a high affinity for G-quadruplex DNA, and the strength of the binding with G-quadruplex depends on (i) phenyl ring substitution, (ii) the piperazinyl side chain, and (iii) the type of monovalent cation present in the buffer. Results further suggest that these compounds are able to abet the conversion of the intramolecular quadruplex into parallel stranded intermolecular G-quadruplex DNA. Notably, these compounds are also capable of inducing and stabilizing the parallel stranded quadruplex from randomly structured DNA in the absence of any stabilizing cation. The kinetics of the structural changes induced by these compounds could be followed by recording the changes in the CD signal as a function of time. The implications of the findings mentioned above are discussed in this paper.
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Jain A. K. et al. Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System // Biochemistry. 2009. Vol. 48. No. 45. pp. 10693-10704.
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Jain A. K., Reddy V. V., Wilson W. D., Muniyappa K., Bhattacharya S. Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System // Biochemistry. 2009. Vol. 48. No. 45. pp. 10693-10704.
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TY - JOUR
DO - 10.1021/bi9003815
UR - https://doi.org/10.1021/bi9003815
TI - Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System
T2 - Biochemistry
AU - Jain, Akash K
AU - Reddy, Vishnu Vardhan
AU - Wilson, W. David
AU - Muniyappa, Kishoor
AU - Bhattacharya, Santanu
PY - 2009
DA - 2009/10/20
PB - American Chemical Society (ACS)
SP - 10693-10704
IS - 45
VL - 48
PMID - 19731964
SN - 0006-2960
SN - 1520-4995
SN - 1943-295X
ER -
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@article{2009_Jain,
author = {Akash K Jain and Vishnu Vardhan Reddy and W. David Wilson and Kishoor Muniyappa and Santanu Bhattacharya},
title = {Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System},
journal = {Biochemistry},
year = {2009},
volume = {48},
publisher = {American Chemical Society (ACS)},
month = {oct},
url = {https://doi.org/10.1021/bi9003815},
number = {45},
pages = {10693--10704},
doi = {10.1021/bi9003815}
}
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MLA
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Jain, Akash K., et al. “Synthesis and Evaluation of a Novel Class of G-Quadruplex-Stabilizing Small Molecules Based on the 1,3-Phenylene-Bis(piperazinyl benzimidazole) System.” Biochemistry, vol. 48, no. 45, Oct. 2009, pp. 10693-10704. https://doi.org/10.1021/bi9003815.