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Dive into the research topics where Shuo-Bin Chen is active.

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Featured researches published by Shuo-Bin Chen.


Bioorganic & Medicinal Chemistry | 2010

Bisaryldiketene derivatives: A new class of selective ligands for c-myc G-quadruplex DNA

Dan Peng; Jia-Heng Tan; Shuo-Bin Chen; Tian-Miao Ou; Lian-Quan Gu; Zhi-Shu Huang

A series of bisaryldiketene derivatives were designed and synthesized as a new class of specific G-quadruplex ligands. The ligand-quadruplex interactions were further evaluated by FRET, ITC, and PCR stop assay. In contrast to most of the G-quadruplex ligands reported so far, which comprise an extended aromatic ring, these compounds are neither polycyclic nor macrocyclic, but have a non-aromatic and relative flexible linker between two quinoline moieties enabling the conformation of compounds to be flexible. Our results showed that these bisaryldiketene derivatives could selectively recognize G-quadruplex DNA rather than binding to duplex DNA. Moreover, they showed promising discrimination between different G-quadruplex DNA. The primary binding affinity of ligand M2 for c-myc G-quadruplex DNA was over 200 times larger than that for telomere G-quadruplex DNA.


Analytical Chemistry | 2012

Development of a Universal Colorimetric Indicator for G-Quadruplex Structures by the Fusion of Thiazole Orange and Isaindigotone Skeleton

Jin-Wu Yan; Wen-Jie Ye; Shuo-Bin Chen; Wei-Bin Wu; Jin-Qiang Hou; Tian-Miao Ou; Jia-Heng Tan; Ding Li; Lian-Quan Gu; Zhi-Shu Huang

The rapid and convenient method for identification of all kinds of G-quadruplex is highly desirable. In the present study, a novel colorimetric indicator for a vast variety of G-quadruplex was designed and synthesized on the basis of thiazole orange and isaindigotone skeleton. Its distinct color change enables label-free visual detection of G-quadruplexes, which is due to the disassembly of dye H-aggregates to monomers. This specific detection of G-quadruplex arises from its end-stacking interaction with G-quartet. On the basis of this universal indicator, a facile approach for large-scale identification of G-quadruplex was developed.


Journal of Physical Chemistry B | 2010

New Insights into the Structures of Ligand-Quadruplex Complexes from Molecular Dynamics Simulations

Jin-Qiang Hou; Shuo-Bin Chen; Jia-Heng Tan; Tian-Miao Ou; Hai-Bin Luo; Ding Li; Jun Xu; Lian-Quan Gu; Zhi-Shu Huang

G-quadruplexes are higher-order DNA and RNA structures formed from guanine-rich sequences, and they are attractive anticancer drug targets. Understanding the three-dimensional interactions between a G-quadruplex and its ligand in solution is the key to discovering a drug lead. Hence, from crystallographic or NMR structures, molecular dynamics studies have been performed on six ligand-quadruplex complexes. BRACO-19, BSU6039, daunomycin, RHPS4, MMQ1, and TMPyP4 are the six ligands that bind to the G-quadruplex structures in the studies. Based on molecular dynamics simulations and a series of computational analyses, the results suggest that ions move away from the external G-quartet to let the ligand bind to the quadruplex in aqueous solution. The ligand binding can increase the stability of the Hoogseen hydrogen bonds within the G-quartet. However, the G-quartet binding site can only fit one ligand molecule. The ligand can form hydrogen bonds at the loop or flank of the quadruplex. However, not all the interactions will stabilize the ligand-quadruplex complex in aqueous solution. These findings can assist in the design of selective and potent G-quadruplex ligands.


Bioorganic & Medicinal Chemistry | 2012

Design, synthesis and evaluation of isaindigotone derivatives as dual inhibitors for acetylcholinesterase and amyloid beta aggregation.

Jin-Wu Yan; Yan-Ping Li; Wen-Jie Ye; Shuo-Bin Chen; Jin-Qiang Hou; Jia-Heng Tan; Tian-Miao Ou; Ding Li; Lian-Quan Gu; Zhi-Shu Huang

A series of isaindigotone derivatives and analogues were designed, synthesized and evaluated as dual inhibitors of cholinesterases (ChEs) and self-induced β-amyloid (Aβ) aggregation. The synthetic compounds had IC(50) values at micro or nano molar range for cholinesterase inhibition, and some compounds exhibited strong inhibitory activity for AChE and high selectivity for AChE over BuChE, which were much better than the isaindigotone derivatives previously reported by our group. Most of these compounds showed higher self-induced Aβ aggregation inhibitory activity than a reference compound curcumin. The structure-activity relationship studies revealed that the derivatives with higher inhibition activity on AChE also showed higher selectivity for AChE over BuChE. Compound 6c exhibiting excellent inhibition for both AChE and self-induced Aβ aggregation was further studied using CD, EM, molecular docking and kinetics.


European Journal of Medicinal Chemistry | 2015

Design, synthesis and biological evaluation of novel 7-alkylamino substituted benzo[a]phenazin derivatives as dual topoisomerase I/II inhibitors

Bing-Lei Yao; Yan-Wen Mai; Shuo-Bin Chen; Hua-Ting Xie; Pei-Fen Yao; Tian-Miao Ou; Jia-Heng Tan; Honggen Wang; Ding Li; Shi-Liang Huang; Lian-Quan Gu; Zhi-Shu Huang

A novel series of benzo[a]phenazin derivatives bearing alkylamino side chains were designed, synthesized and evaluated for their topoisomerases inhibitory activity as well as cytotoxicity against four human cancer cell lines (HL-60, K-562, HeLa, and A549). These compounds were found to be dual inhibitors of topoisomerase (Topo) I and Topo II, and exhibited excellent antiproliferative activity, in particular against HL-60 cells with submicromolar IC50 values. Further mechanistic studies showed that this class of compounds acted as Topo I poisons by stabilizing the Topo I-DNA cleavage complexes and Topo II catalytic inhibitors by inhibiting the ATPase activity of hTopo II. Molecular docking studies revealed the binding modes of these compounds for Topo I and Topo II.


Bioorganic & Medicinal Chemistry Letters | 2011

Pharmacophore-based discovery of triaryl-substituted imidazole as new telomeric G-quadruplex ligand.

Shuo-Bin Chen; Jia-Heng Tan; Tian-Miao Ou; Shi-Liang Huang; Lin-Kun An; Hai-Bin Luo; Ding Li; Lian-Quan Gu; Zhi-Shu Huang

Discovery of potent and selective ligands for telomeric G-quadruplex DNA is a challenging work. Through a combination approach of pharmacophore model construction, model validation, database virtual screening, chemical synthesis and interaction evaluation, we discovered and confirmed triaryl-substituted imidazole TSIZ01 to be a new telomeric G-quadruplex ligand with potent binding and stabilizing activity to G-quadruplex DNA, as well as a 8.7-fold selectivity towards telomeric G-quadruplex DNA over duplex DNA.


ACS Medicinal Chemistry Letters | 2013

Synthesis and Evaluation of Quinazolone Derivatives as a New Class of c-KIT G-Quadruplex Binding Ligands

Xiaoxiao Wang; Chen-Xi Zhou; Jin-Wu Yan; Jin-Qiang Hou; Shuo-Bin Chen; Tian-Miao Ou; Lian-Quan Gu; Zhi-Shu Huang; Jia-Heng Tan

The c-KIT G-quadruplex structures are a novel class of attractive targets for the treatment of gastrointestinal stromal tumor (GIST). Herein, a series of new quinazolone derivatives with the expansion of unfused aromatic ring system were designed and synthesized. Subsequent biophysical studies demonstrated that the derivatives with adaptive scaffold could effectively bind to and stabilize c-KIT G-quadruplexes with good selectivity against duplex DNA. More importantly, these ligands further inhibited the transcription and expression of c-KIT gene and exhibited significant cytotoxicity on the GIST cell line HGC-27. Overall, these quinazolone derivatives represent a new class of promising c-KIT G-quadruplex ligands. The experimental results have also reinforced the idea of inhibition of c-KIT expression through targeting c-KIT G-quadruplex DNA.


European Journal of Medicinal Chemistry | 2011

Synthesis and evaluation of mansonone F derivatives as topoisomerase inhibitors

Wei-Bin Wu; Jie-Bin Ou; Zhi-Hong Huang; Shuo-Bin Chen; Tian-Miao Ou; Jia-Heng Tan; Ding Li; Liu-Lan Shen; Shi-Liang Huang; Lian-Quan Gu; Zhi-Shu Huang

A series of mansonone F (MF) derivatives were designed and synthesized. These compounds were found to be strong inhibitors for topoisomerases, with much more significant inhibition for topoisomerase II rather than topoisomerase I. The best inhibitor showed 20 times stronger anti-topoisomerase II activity than a positive control Etoposide. The cytotoxic activity of these MF derivatives was evaluated against human cancer cell lines CNE-2 and Glc-82, which showed that these compounds were potent antitumor agents. The structure-activity relationships (SARs) study revealed that o-quinone group and pyran ring are important for their cytotoxic activity.


Nucleic Acids Research | 2017

Specific targeting of telomeric multimeric G-quadruplexes by a new triaryl-substituted imidazole

Ming-Hao Hu; Shuo-Bin Chen; Bo Wang; Tian-Miao Ou; Lian-Quan Gu; Jia-Heng Tan; Zhi-Shu Huang

Abstract Multiple G-quadruplex units in the 3΄-terminal overhang of human telomeric DNA can associate and form multimeric structures. The specific targeting of such distinctive higher-order G-quadruplexes might be a promising strategy for developing selective anticancer agents with fewer side effects. However, thus far, only a few molecules were found to selectively bind to telomeric multimeric G-quadruplexes, and their effects on cancer cells were unknown. In this study, a new triaryl-substituted imidazole derivative called IZNP-1 was synthesized and found to specifically bind to and strongly stabilize telomeric multimeric G-quadruplexes through intercalating into the pocket between the two quadruplex units. The pocket size might affect the binding behavior of IZNP-1. Further cellular studies indicated that IZNP-1 could provoke cell cycle arrest, apoptosis and senescence in Siha cancer cells, mainly because of telomeric DNA damage and telomere dysfunction induced by the interactions of IZNP-1 with telomeric G-quadruplexes. Notably, IZNP-1 had no effect on the transcriptional levels of several common oncogenes that have the potential to form monomeric G-quadruplex structures in their promoter regions. Such behavior differed from that of traditional telomeric G-quadruplex ligands. Accordingly, this work provides new insights for the development of selective anticancer drugs targeting telomeric multimeric G-quadruplexes.


Journal of Medicinal Chemistry | 2016

Synthesis and Mechanism Studies of 1,3-Benzoazolyl Substituted Pyrrolo[2,3-b]pyrazine Derivatives as Nonintercalative Topoisomerase II Catalytic Inhibitors.

Peng-Hui Li; Ping Zeng; Shuo-Bin Chen; Pei-Fen Yao; Yan-Wen Mai; Jia-Heng Tan; Tian-Miao Ou; Shi-Liang Huang; Ding Li; Lian-Quan Gu; Zhi-Shu Huang

Novel topoisomerase II (Topo II) inhibitors have gained considerable interest for the development of anticancer agents. In this study, a series of 1,3-benzoazolyl-substituted pyrrolo[2,3-b]pyrazine derivatives were designed, synthesized, and evaluated as potential Topo II catalytic inhibitors. It was found that some of derivatives had good antiproliferative activity on seven cancer cell lines, especially on HL-60/MX2, a cancer cell line derivative from HL-60 that is resistant to Topo II poison. Topo II mediated DNA relaxation assay results showed that derivatives could significantly inhibit the activity of Topo II, and the structure-activity relationship studies indicated the importance of the alkylamino side chain and the benzoazolyl group. Further mechanism studies revealed that derivatives function as Topo II nonintercalative catalytic inhibitors and may block the ATP binding site of Topo II. Moreover, flow cytometric analysis showed that this class of compounds could induce apoptosis of HL-60 cells.

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Ding Li

Sun Yat-sen University

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Ming-Hao Hu

Sun Yat-sen University

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Jin-Wu Yan

South China University of Technology

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