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Synthesis, biochemical characterization and molecular modeling studies of 5-(substituted benzylidene) pyrimidine-2,4,6-trione: Potential inhibitors of alkaline phosphatase
被引:3
作者:
Ejaz, Syeda Abida
[1
]
Zain-ul-Abideen, Muhammad
[2
]
Channar, Pervaiz Ali
[3
]
Saeed, Aamer
[2
]
Ahmed, Aftab
[1
]
Alsaiari, Norah Salem
[4
]
Katubi, Khadijah Mohammedsaleh
[4
]
Abbas, Qamar
[5
]
Dahlous, Kholood A.
[6
]
Raza, Hussain
[7
]
Kim, Song Ja
[7
]
Mustafa, Muhammad Naeem
[2
]
机构:
[1] Islamia Univ Bahawalpur, Fac Pharm & Alternat Med, Dept Pharmaceut Chem, Bahawalpur, Pakistan
[2] Quaid i Azam Univ, Dept Chem, Islamabad 45320, Pakistan
[3] Dawood Univ Engn & Technol, Dept Basic Sci Math & Humanities, Karachi 74800, Pakistan
[4] Princess Nourah Bint Abdulrahman Univ, Coll Sci, Dept Chem, POB 84428, Riyadh 11671, Saudi Arabia
[5] Univ Bahrain, Coll Sci, Dept Biol, Sakhir Campus, Zallaq 32038, Bahrain
[6] King Saud Univ, Coll Sci, Dept Chem, Riyadh 11451, Saudi Arabia
[7] Kongju Natl Univ, Coll Nat Sci, Dept Biol Sci, Gongju 32588, South Korea
关键词:
Knovenagel condensation;
Thermodynamically stabilized;
Alkaline phosphatase assay;
Barbituric acid;
ALPHA-GLUCOSIDASE;
ACID;
DERIVATIVES;
ANTIBACTERIAL;
ANTIFUNGAL;
DOCKING;
AMYLASE;
DESIGN;
D O I:
10.1016/j.molstruc.2023.135225
中图分类号:
O64 [物理化学(理论化学)、化学物理学];
学科分类号:
070304 ;
081704 ;
摘要:
Among the several forms of homodimeric protein enzymes, alkaline phosphatases are the major enzymes that play a critical part in a variety of biological activities and are responsible for the removal of phos-phates from a variety of molecules. The alkaline phosphatase expression has been reported to be higher in numerous multifactorial disorders/syndromes and in cancer patients, making it an intriguing target for therapeutic research. Because of the substantial structural similarity between intestinal alkaline phos-phatases (IAPs) and tissue-nonspecific alkaline phosphatases (TNAPs), only a few selective inhibitors have been discovered. Barbiturates are a privileged class of heterocyclic compounds that have the potential to act as efficient phosphatase inhibitors. In this context, a new series of 5-(substituted benzylidene) pyrimidine-2,4,6-triones (3a-j) was devised and easily synthesized using a simple and environmentally friendly Knovenagel condensation process. The FT-IR, 1H-NMR, and 13C-NMR were used to characterize the synthesized barbiturates. Furthermore, the compounds were examined for their ability to inhibit calf -intestinal alkaline phosphatases (CIAP). All the tested compounds showed inhibition of CIAP, however compound 5-(4-(Dimethylamino)benzylidene) pyrimidine-2,4,6(1H,3H,5H)-trion (3f) was shown to be the most effective and best CIAP inhibitor, with an IC50 value of 0.29 +/- 0.02 mu M. To test their stability and binding affinities within the active pocket of the CIAP, the structure activity relationship, molecular dock-ing studies, and density function theory (DFTs) calculations were performed. The Global chemical reac-tivity descriptors were assessed through DFTs. Docking study indicated that the most active inhibitor (3f) exhibited significant interactions within the binding pockets of intestinal alkaline phosphatase. As a re-sult, the screened barbiturates derivatives provided an excellent platform for the subsequent development of alkaline phosphatase inhibitors. A new series of 5-(substituted benzylidene) pyrimidine-2,4,6-triones (3a-j) was devised and easily synthesized using a simple and environmentally friendly Knovenagel condensation reaction. The FT-IR, 1H-NMR/13C-NMR were used to characterize the synthesized compounds. The compounds were then ex-amined for their ability to inhibit the calf-intestinal alkaline phosphatases (CIAP). All the tested com-pounds showed inhibition of CIAP, however compound 5-(4-(Dimethylamino)benzylidene) pyrimidine-2,4,6(1H,3H,5H)-trion 3f was shown to be the most effective and best CIAP inhibitor, with an IC50 value of 0.29 +/- 0.02 mu M. To test their stability and binding affinities within the active pocket of the CIAP target site, the structure activity relationship, molecular docking studies, and density function theory calculations were performed. Based on the results of the docking investigation, the most effective inhibitor 3f was found to have strong interactions within the binding pockets of intestinal alkaline phosphatase. Global chemical reactivity descriptors were assessed by using density functional calculation. From In vitro as well as computational studies, the derivatives of barbiturates that were screened proved to be a suitable basis for the subsequent research and development of alkaline phosphatase inhibitors.(c) 2023 Elsevier B.V. All rights reserved.
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