Docking and hydropathic scoring of polysubstituted pyrrole compounds with antitubulin activity (original) (raw)

Pyrrole-Based Antitubulin Agents: Two Distinct Binding Modalities Are Predicted for C-2 Analogues in the Colchicine Site

John Gupton

ACS Medicinal Chemistry Letters, 2012

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Biological Characterization of an Improved Pyrrole-Based Colchicine Site Agent Identified through Structure-Based Design

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In-silico Investigation of Tubulin Binding Modes of a Series of Novel Antiproliferative Spiroisoxazoline Compounds Using Docking Studies

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Antibacterial activity of some 1,2,3,4-tetrasubstituted pyrrole derivatives and molecular docking studies

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High-affinity ligands of the colchicine domain in tubulin based on a structure-guided design

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In silico Study of the Interaction between the Modified B-ring Analogues of Colchicine with Tubulin Heterodimer

Suchaya Pongsai

2018

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A Review on Docking Studies of Indole Moiety as Potent Inhibitor of Tubulin Polymerization

aditya dixit

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Antiproliferative Activity and Molecular Docking of Novel Double-Modified Colchicine Derivatives

Jack A Tuszynski

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3D-QSAR and docking studies of benzoyl urea derivatives as tubulin-binding agents for antiproliferative activity

Aniket Shinde

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Design and Biological Evaluation of Novel Tubulin Inhibitors as Antimitotic Agents Using a Pharmacophore Binding Model with Tubulin

Cheol Kyu Han

Journal of Medicinal Chemistry, 2006

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A promising anti-cancer and anti-oxidant agents based on the pyrrole and fused pyrrole: synthesis, docking studies and biological evaluation

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Arylthioindole Inhibitors of Tubulin Polymerization. 3. Biological Evaluation, Structure−Activity Relationships and Molecular Modeling Studies

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A facile synthesis of diaryl pyrroles led to the discovery of potent colchicine site antimitotic agents

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European Journal of Medicinal Chemistry, 2021

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New Pyrrole Derivatives as Promising Biological Agents: Design, Synthesis, Characterization, In Silico, and Cytotoxicity Evaluation

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Discovery of Novel 2-Aryl-4-benzoyl-imidazoles Targeting the Colchicines Binding Site in Tubulin As Potential Anticancer Agents

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SYNTHESIS, CHARACTERIZATION AND MOLECULAR DOCKING STUDIES OF PYRROLE-2-CARBOXALDEHYDE WITH GLYCINE

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ijetrm journal , 2020

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Rolando Perez-Pineiro

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Synthesis, anticancer activity and molecular docking studies on a series of heterocyclic trans-cyanocombretastatin analogues as antitubulin agents

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European Journal of Medicinal Chemistry, 2015

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Synthesis, Cytotoxicity, Docking Study, and Tubulin Polymerization Inhibitory Activity of Novel 1-(3,4-Dimethoxyphenyl)-5-(3,4,5-trimethoxyphenyl)-1H-1,2,4-triazole-3-carboxanilides

Muh. S A B I R M.

Archiv der Pharmazie, 2014

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Binding of dihydroxynaphthyl aryl ketones to tubulin colchicine site inhibits microtubule assembly

Eunices Gutiérrez

Biochemical and Biophysical Research Communications, 2015

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