Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study

Raltitrexed (tomudex) is an alternative antifolate drug to 5-fluorouracil (5-FU) to inhibit thymidylate synthase (TS) by decreasing dihydrofolate reductase (DHFR) activity. The clinical trial shows the potential of raltitrexed towards TS inhibition can be enhanced by combining the raltiterexed with...

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Main Authors: Sabri, Nadia Hanim, Halim, Siti Nadiah Abdul, Zain, Sharifuddin Md, Lee, Vannajan Sanghiran
Format: Article
Published: Faculty of Science, Chiang Mai University 2018
Subjects:
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author Sabri, Nadia Hanim
Halim, Siti Nadiah Abdul
Zain, Sharifuddin Md
Lee, Vannajan Sanghiran
author_facet Sabri, Nadia Hanim
Halim, Siti Nadiah Abdul
Zain, Sharifuddin Md
Lee, Vannajan Sanghiran
author_sort Sabri, Nadia Hanim
collection UM
description Raltitrexed (tomudex) is an alternative antifolate drug to 5-fluorouracil (5-FU) to inhibit thymidylate synthase (TS) by decreasing dihydrofolate reductase (DHFR) activity. The clinical trial shows the potential of raltitrexed towards TS inhibition can be enhanced by combining the raltiterexed with other anticancer agents. This present work discovered the combination of raltitrexed with modifying 5-FU based co-crystal (compound 1) have high effectiveness with manageable toxicity via computational approach. The X-ray structure of human TS (1HVY) was retrieved from Protein Database Bank. The molecular docking of protein-ligand complexes has been performed to investigate the potential of ligands as TS inhibitor by disrupting both promising binding sites; nucleotide and folate. The best-ranked conformations were further explored via parameterized molecular dynamic simulation. The simulated result by molecular dynamic simulation suggested that the modified co-crystal (compound 1) enhancing binding strength of raltitrexed to inhibit TS with binding free energy (-45.68 kcal/mol) compared to raltitrexed alone (-16.57 kcal/mol). Per-residue decomposition revealed that the Arg50A, Leu192A, Cys195A, His196A, Asn226 and Gly217A are the pivotal residues that playing main role in the nucleotide binding site. The binding free energy in the folate binding site is majority come from the interaction with Phe80A, Ile108A, Trp109A, Asp218A, Phe225A, Tyr258A, Met311A and Ala312A residues.
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spelling um.eprints-208442019-04-09T03:28:36Z http://eprints.um.edu.my/20844/ Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study Sabri, Nadia Hanim Halim, Siti Nadiah Abdul Zain, Sharifuddin Md Lee, Vannajan Sanghiran Q Science (General) QD Chemistry Raltitrexed (tomudex) is an alternative antifolate drug to 5-fluorouracil (5-FU) to inhibit thymidylate synthase (TS) by decreasing dihydrofolate reductase (DHFR) activity. The clinical trial shows the potential of raltitrexed towards TS inhibition can be enhanced by combining the raltiterexed with other anticancer agents. This present work discovered the combination of raltitrexed with modifying 5-FU based co-crystal (compound 1) have high effectiveness with manageable toxicity via computational approach. The X-ray structure of human TS (1HVY) was retrieved from Protein Database Bank. The molecular docking of protein-ligand complexes has been performed to investigate the potential of ligands as TS inhibitor by disrupting both promising binding sites; nucleotide and folate. The best-ranked conformations were further explored via parameterized molecular dynamic simulation. The simulated result by molecular dynamic simulation suggested that the modified co-crystal (compound 1) enhancing binding strength of raltitrexed to inhibit TS with binding free energy (-45.68 kcal/mol) compared to raltitrexed alone (-16.57 kcal/mol). Per-residue decomposition revealed that the Arg50A, Leu192A, Cys195A, His196A, Asn226 and Gly217A are the pivotal residues that playing main role in the nucleotide binding site. The binding free energy in the folate binding site is majority come from the interaction with Phe80A, Ile108A, Trp109A, Asp218A, Phe225A, Tyr258A, Met311A and Ala312A residues. Faculty of Science, Chiang Mai University 2018 Article PeerReviewed Sabri, Nadia Hanim and Halim, Siti Nadiah Abdul and Zain, Sharifuddin Md and Lee, Vannajan Sanghiran (2018) Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study. Chiang Mai Journal of Science, 45 (6). pp. 2361-2373. ISSN 0125-2526, http://it.science.cmu.ac.th/ejournal/journalDetail.php?journal_id=9522
spellingShingle Q Science (General)
QD Chemistry
Sabri, Nadia Hanim
Halim, Siti Nadiah Abdul
Zain, Sharifuddin Md
Lee, Vannajan Sanghiran
Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title_full Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title_fullStr Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title_full_unstemmed Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title_short Modification of anti-cancer co-crystal for thymidylate synthase inhibition: Molecular dynamics study
title_sort modification of anti cancer co crystal for thymidylate synthase inhibition molecular dynamics study
topic Q Science (General)
QD Chemistry
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AT halimsitinadiahabdul modificationofanticancercocrystalforthymidylatesynthaseinhibitionmoleculardynamicsstudy
AT zainsharifuddinmd modificationofanticancercocrystalforthymidylatesynthaseinhibitionmoleculardynamicsstudy
AT leevannajansanghiran modificationofanticancercocrystalforthymidylatesynthaseinhibitionmoleculardynamicsstudy