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Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations

The acetophenone-based 3,4-dihydropyrimidine-2(1H)-thione was synthesized by the reaction of 4-methylpent-3-en-2-one (1), 4-acetyl aniline (2) and potassium thiocyanate. The spectroscopic analysis including: FTIR, (1)H-NMR, and single crystal analysis proved the structure of synthesized compound (4)...

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Autores principales: Saeed, Aamer, Ejaz, Syeda Abida, Khalid, Aqsa, Channar, Pervaiz Ali, Aziz, Mubashir, Abbas, Qamar, Wani, Tanveer A., Alsaif, Nawaf A., Alanazi, Mohammed M., Al-Hossaini, Abdullah M., Altwaijry, Nojood, Zargar, Seema, Elhadi, Muawya, Hökelek, Tuncer
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658835/
https://www.ncbi.nlm.nih.gov/pubmed/36361953
http://dx.doi.org/10.3390/ijms232113164
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author Saeed, Aamer
Ejaz, Syeda Abida
Khalid, Aqsa
Channar, Pervaiz Ali
Aziz, Mubashir
Abbas, Qamar
Wani, Tanveer A.
Alsaif, Nawaf A.
Alanazi, Mohammed M.
Al-Hossaini, Abdullah M.
Altwaijry, Nojood
Zargar, Seema
Elhadi, Muawya
Hökelek, Tuncer
author_facet Saeed, Aamer
Ejaz, Syeda Abida
Khalid, Aqsa
Channar, Pervaiz Ali
Aziz, Mubashir
Abbas, Qamar
Wani, Tanveer A.
Alsaif, Nawaf A.
Alanazi, Mohammed M.
Al-Hossaini, Abdullah M.
Altwaijry, Nojood
Zargar, Seema
Elhadi, Muawya
Hökelek, Tuncer
author_sort Saeed, Aamer
collection PubMed
description The acetophenone-based 3,4-dihydropyrimidine-2(1H)-thione was synthesized by the reaction of 4-methylpent-3-en-2-one (1), 4-acetyl aniline (2) and potassium thiocyanate. The spectroscopic analysis including: FTIR, (1)H-NMR, and single crystal analysis proved the structure of synthesized compound (4), with the six-membered nonplanar ring in envelope conformation. In crystal structure, the intermolecular N–H ⋯ S and C–H ⋯ O hydrogen bonds link the molecule in a two-dimensional manner which is parallel to (010) the plane enclosing R(2)(2) (8) and R(2)(2) (10) ring motifs. After that, the Hirshfeld surfaces and their related two-dimensional fingerprint plots were used for thorough investigation of intermolecular interactions. According to Hirshfeld surface analysis, the most substantial contributions to the crystal packing are from H ⋯ H (59.5%), H ⋯ S/S ⋯ H (16.1%), and H ⋯ C/C ⋯ H (13.1%) interactions. The electronic properties and stability of the compound were investigated through density functional theory (DFT) studies using B3LYP functional and 6-31G* as a basis set. The compound 4 displayed the high chemical reactivity with chemical softness of 2.48. In comparison to the already reported known tyrosinase inhibitor, the newly synthesized derivatives exhibited almost seven-fold better inhibition of tyrosinase (IC(50) = 1.97 μM), which was further supported by molecular docking studies. The compound 4 inside the active pocket of ribonucleotide reductase (RNR) exhibited a binding energy of −19.68 kJ/mol, and with mammalian deoxy ribonucleic acid (DNA) it acts as an effective DNA groove binder with a binding energy of −21.32 kJ/mol. The results suggested further exploration of this compound at molecular level to synthesize more potential leads for the treatment of cancer.
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spelling pubmed-96588352022-11-15 Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations Saeed, Aamer Ejaz, Syeda Abida Khalid, Aqsa Channar, Pervaiz Ali Aziz, Mubashir Abbas, Qamar Wani, Tanveer A. Alsaif, Nawaf A. Alanazi, Mohammed M. Al-Hossaini, Abdullah M. Altwaijry, Nojood Zargar, Seema Elhadi, Muawya Hökelek, Tuncer Int J Mol Sci Article The acetophenone-based 3,4-dihydropyrimidine-2(1H)-thione was synthesized by the reaction of 4-methylpent-3-en-2-one (1), 4-acetyl aniline (2) and potassium thiocyanate. The spectroscopic analysis including: FTIR, (1)H-NMR, and single crystal analysis proved the structure of synthesized compound (4), with the six-membered nonplanar ring in envelope conformation. In crystal structure, the intermolecular N–H ⋯ S and C–H ⋯ O hydrogen bonds link the molecule in a two-dimensional manner which is parallel to (010) the plane enclosing R(2)(2) (8) and R(2)(2) (10) ring motifs. After that, the Hirshfeld surfaces and their related two-dimensional fingerprint plots were used for thorough investigation of intermolecular interactions. According to Hirshfeld surface analysis, the most substantial contributions to the crystal packing are from H ⋯ H (59.5%), H ⋯ S/S ⋯ H (16.1%), and H ⋯ C/C ⋯ H (13.1%) interactions. The electronic properties and stability of the compound were investigated through density functional theory (DFT) studies using B3LYP functional and 6-31G* as a basis set. The compound 4 displayed the high chemical reactivity with chemical softness of 2.48. In comparison to the already reported known tyrosinase inhibitor, the newly synthesized derivatives exhibited almost seven-fold better inhibition of tyrosinase (IC(50) = 1.97 μM), which was further supported by molecular docking studies. The compound 4 inside the active pocket of ribonucleotide reductase (RNR) exhibited a binding energy of −19.68 kJ/mol, and with mammalian deoxy ribonucleic acid (DNA) it acts as an effective DNA groove binder with a binding energy of −21.32 kJ/mol. The results suggested further exploration of this compound at molecular level to synthesize more potential leads for the treatment of cancer. MDPI 2022-10-29 /pmc/articles/PMC9658835/ /pubmed/36361953 http://dx.doi.org/10.3390/ijms232113164 Text en © 2022 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Saeed, Aamer
Ejaz, Syeda Abida
Khalid, Aqsa
Channar, Pervaiz Ali
Aziz, Mubashir
Abbas, Qamar
Wani, Tanveer A.
Alsaif, Nawaf A.
Alanazi, Mohammed M.
Al-Hossaini, Abdullah M.
Altwaijry, Nojood
Zargar, Seema
Elhadi, Muawya
Hökelek, Tuncer
Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title_full Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title_fullStr Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title_full_unstemmed Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title_short Acetophenone-Based 3,4-Dihydropyrimidine-2(1H)-Thione as Potential Inhibitor of Tyrosinase and Ribonucleotide Reductase: Facile Synthesis, Crystal Structure, In-Vitro and In-Silico Investigations
title_sort acetophenone-based 3,4-dihydropyrimidine-2(1h)-thione as potential inhibitor of tyrosinase and ribonucleotide reductase: facile synthesis, crystal structure, in-vitro and in-silico investigations
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9658835/
https://www.ncbi.nlm.nih.gov/pubmed/36361953
http://dx.doi.org/10.3390/ijms232113164
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