Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking

This study aimed to propose new indole derivatives as anticancer through Quantitative Structure-Activity Relationship (QSAR) and molecular docking method. The best predicted anticancer activity of indole derivatives was recommended based on the QSAR equation. A data set consist of 18 indole derivati...

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Main Authors: Jufrizal Syahri, Nurul Hidayah, Rahmiwati Hilma, Beta Achromi Nurohmah, Emmy Yuanita
Format: Article
Language:English
Published: Jenderal Soedirman University 2020-03-01
Series:Molekul
Online Access:https://ojs.jmolekul.com/ojs/index.php/jm/article/view/582
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spelling doaj-ae9befbff1e7416b9702c300518b12c32020-11-25T03:00:18ZengJenderal Soedirman UniversityMolekul1907-97612503-03102020-03-0115191710.20884/1.jm.2020.15.1.582287Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular DockingJufrizal Syahri0Nurul Hidayah1Rahmiwati Hilma2Beta Achromi Nurohmah3Emmy Yuanita4Department of Chemistry, Universitas Muhammadiyah RiauUniversitas Muhammadiyah RiauUniversitas Muhammadiyah RiauUniversitas Gadjah MadaUniversitas MataramThis study aimed to propose new indole derivatives as anticancer through Quantitative Structure-Activity Relationship (QSAR) and molecular docking method. The best predicted anticancer activity of indole derivatives was recommended based on the QSAR equation. A data set consist of 18 indole derivatives from literature with anticancer activity against the A498 cell line was used to generate a QSAR model equation. The data set was divided randomly into training (14) and test (4) set compounds. The structure of indole compound was optimized first using AM1 semi-empirical methods, and the descriptors involved were analyzed using Multiple Linear Regression (MLR). The best QSAR equation obtained was Log IC50 = 65.596 (qC2) + 366.764 (qC6) – 92.742 (qC11) + 503.297 (HOMO) – 492.550 (LUMO) – 76.966. Based on the QSAR model, varying electron-withdrawing groups in C2 and C6 atom, as well as adding electron-donating groups in C11 were proposed could increase the anticancer activity of the indole derivatives. The QSAR analysis showed that compound 15 has the best predicted anticancer activity, supported by molecular docking results that showed hydrogen bond interaction with essential amino acids to build anticancer activity such as MET769, THR830, and THR766 residues.https://ojs.jmolekul.com/ojs/index.php/jm/article/view/582
collection DOAJ
language English
format Article
sources DOAJ
author Jufrizal Syahri
Nurul Hidayah
Rahmiwati Hilma
Beta Achromi Nurohmah
Emmy Yuanita
spellingShingle Jufrizal Syahri
Nurul Hidayah
Rahmiwati Hilma
Beta Achromi Nurohmah
Emmy Yuanita
Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
Molekul
author_facet Jufrizal Syahri
Nurul Hidayah
Rahmiwati Hilma
Beta Achromi Nurohmah
Emmy Yuanita
author_sort Jufrizal Syahri
title Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
title_short Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
title_full Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
title_fullStr Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
title_full_unstemmed Design of New 2,4-Substituted Furo [3,2-B] Indole Derivatives as Anticancer Compounds Using Quantitative Structure-Activity Relationship (QSAR) and Molecular Docking
title_sort design of new 2,4-substituted furo [3,2-b] indole derivatives as anticancer compounds using quantitative structure-activity relationship (qsar) and molecular docking
publisher Jenderal Soedirman University
series Molekul
issn 1907-9761
2503-0310
publishDate 2020-03-01
description This study aimed to propose new indole derivatives as anticancer through Quantitative Structure-Activity Relationship (QSAR) and molecular docking method. The best predicted anticancer activity of indole derivatives was recommended based on the QSAR equation. A data set consist of 18 indole derivatives from literature with anticancer activity against the A498 cell line was used to generate a QSAR model equation. The data set was divided randomly into training (14) and test (4) set compounds. The structure of indole compound was optimized first using AM1 semi-empirical methods, and the descriptors involved were analyzed using Multiple Linear Regression (MLR). The best QSAR equation obtained was Log IC50 = 65.596 (qC2) + 366.764 (qC6) – 92.742 (qC11) + 503.297 (HOMO) – 492.550 (LUMO) – 76.966. Based on the QSAR model, varying electron-withdrawing groups in C2 and C6 atom, as well as adding electron-donating groups in C11 were proposed could increase the anticancer activity of the indole derivatives. The QSAR analysis showed that compound 15 has the best predicted anticancer activity, supported by molecular docking results that showed hydrogen bond interaction with essential amino acids to build anticancer activity such as MET769, THR830, and THR766 residues.
url https://ojs.jmolekul.com/ojs/index.php/jm/article/view/582
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