| Literature DB >> 26267242 |
Zaman Ashraf1, Abdul Bais2, Md Maniruzzaman Manir3, Umar Niazi4.
Abstract
A number of penicillin derivatives (4a-h) were synthesized by the condensation of 6-amino penicillinic acid (6-APA) with non-steroidal anti-inflammatory drugs as antimicrobial agents. In silico docking study of these analogues was performed against Penicillin Binding Protein (PDBID 1CEF) using AutoDock Tools 1.5.6 in order to investigate the antimicrobial data on structural basis. Penicillin binding proteins function as either transpeptidases or carboxypeptidases and in few cases demonstrate transglycosylase activity in bacteria. The excellent antibacterial potential was depicted by compounds 4c and 4e against Escherichia coli, Staphylococcus epidermidus and Staphylococcus aureus compared to the standard amoxicillin. The most potent penicillin derivative 4e exhibited same activity as standard amoxicillin against S. aureus. In the enzyme inhibitory assay the compound 4e inhibited E. coli MurC with an IC50 value of 12.5 μM. The docking scores of these compounds 4c and 4e also verified their greater antibacterial potential. The results verified the importance of side chain functionalities along with the presence of central penam nucleus. The binding affinities calculated from docking results expressed in the form of binding energies ranges from -7.8 to -9.2kcal/mol. The carboxylic group of penam nucleus in all these compounds is responsible for strong binding with receptor protein with the bond length ranges from 3.4 to 4.4 Ǻ. The results of present work ratify that derivatives 4c and 4e may serve as a structural template for the design and development of potent antimicrobial agents.Entities:
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Year: 2015 PMID: 26267242 PMCID: PMC4534092 DOI: 10.1371/journal.pone.0135293
Source DB: PubMed Journal: PLoS One ISSN: 1932-6203 Impact factor: 3.240
Fig 1Synthesis of Penicillin derivatives (4a-h).
Fig 2Chemical structure and three dimensional view of compounds 4c and 4e with highlighted green show the main penicillin nucleus and red show the designed moiety to increase the bioactivity.
Antibacterial activity result of penicillin derivatives (4a-h).
| Zone of inhibition(mm ± standard deviation) | |||||
|---|---|---|---|---|---|
| Codes |
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| 30±0.13 | - | 12±0.09 | 28±0.25 | - |
|
| - | - | - | 30±0.19 | - |
|
| 40±0.16 | - | 24±0.06 | 38±0.08 | - |
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| 30±0.20 | - | 14±0.17 | 0 | - |
|
| 38±0.18 | - | 24±0.21 | 50±0.18 | - |
|
| 36±0.09 | - | 2±0.12 | 4±0.05 | - |
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| 10±0.11 | - | 14±0.08 | 16±0.15 | - |
|
| 32±0.16 | - | 2±0.22 | 34±0.13 | - |
|
| 50±0.06 | 36±0.16 | 30±0.08 | 50±0.18 | 8±0.05 |
Data given are mean of three replicates± standard error. Activity presented in millimeters (mm). (-) = No activity measured. Escharichia coli (, Salmonilla typhae (, Staphylococcus epidermidus (, Staphylococcus aureus (, Micrococcus luteus (
Hydrogen bonding between penicillin derivatives (4a-h) and receptor.
| Ligandcodes | Length of H-bond(Å) | Interacting ligand parts | Interacting Amino acid | Side chain/Backbone | No. of H-Bonds |
|---|---|---|---|---|---|
|
| 3.4 | C = O(carboxyl) | Thr 123 | Side chain | 3 |
| 4 | C = O (Sec-NH) | Thr 116 | Side chain | ||
| 5 | C = O (Sec-NH) | Asn 161 | Side chain | ||
|
| 3.8 | C = O(carboxyl) | Asn 327 | Backbone | 2 |
| 4 | C = O (Sec-NH) | Tyr 116 | Side chain | ||
|
| 4.2 | C = O(carboxyl) | Asn 327 | Backbone | 3 |
| 3.7 | C = O(carboxyl) | Ser 236 | Side chain | ||
| 3.5 | Hydrogen(Carboxyl) | Ser 236 | Side chain | ||
|
| 4 | C = O(side chain) | Ser 326 | Side chain | 5 |
| 4.1 | C = O(Sec-NH) | Thr 116 | Side chain | ||
| 5.6 | C = O(Sec-NH) | Asn 161 | Side chain | ||
| 4.2 | C = O(B-lactam) | Thr 301 | Side chain | ||
| 4.3 | C = O(carboxyl) | Thr 301 | Side chain | ||
|
| 5.2 | C = O(Sec-NH) | Asn 161 | Side chain | 3 |
| 3.6 | C = O(Sec-NH) | Thr 116 | Side chain | ||
| 3.9 | C = O(carboxyl) | Thr 123 | Side chain | ||
| 7.5 | O-CH3 | Arg 285 | Side chain | ||
|
| 6.5 | C = O(side chain) | Arg 285 | Side chain | 2 |
| 4.1 | C = O(carboxyl) | Arg 303 | Side chain | ||
|
| 5.2 | C = O(Sec-NH) | Asn 161 | Side chain | 5 |
| 4.3 | C = O(Sec-NH) | Thr 116 | Side chain | ||
| 3.8 | C = O (B-lactam) | Thr 301 | Side chain | ||
| 3.8 | OH(Carboxyl) | Asn 327 | Backbone | ||
| 4.4 | C = O(carboxyl) | Ser 326 | Side chain | ||
|
| 4 | C = O(Sec-NH) | Thr 116 | Side chain | 5 |
| 5.3 | C = O(Sec-NH) | Asn 161 | Side chain | ||
| 3.7 | C = O (B-lactam) | Thr 301 | Side chain | ||
| 4.2 | C = O(carboxyl) | Asn 327 | Backbone | ||
| 4.1 | C = O(carboxyl) | Ser 326 | Side chain |
aAmino acid main chain comprising of NH2-CH2-COOH.
Fig 3The potential ligand-protein interactions of compound 4c with the active site of Penicillin binding protein (PDB ID 1CEF) generated by using Discovery Studio 4.0.
A) The three-dimensional docking of the compound 4c in the binding pocket. B) The two dimensional interactions of 4c with amino acid residues are shown as balls colored by the type of interaction.
Fig 4The potential ligand-protein interactions of compound 4e with the active site of Penicillin binding protein (PDB ID 1CEF) generated by using Discovery Studio 4.0.
A) The three-dimensional docking of the compound 4e in the binding pocket. B) The two dimensional interactions of 4e with amino acid residues are shown as balls colored by the type of interaction.
The binding Affinities of the penicillin derivatives (4a-h).
| Compounds | Mode | Binding Affinity(kcal/mol) |
|---|---|---|
|
| 1 | -7.8 |
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| 1 | -7.8 |
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| 1 | -8.8 |
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| 1 | -8.8 |
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| 1 | -8.9 |
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| 1 | -9.2 |
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| 1 | -8.2 |
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| 1 | -9.0 |
Lipinski’s Rule of Five screening data for penicillin derivatives (4a-h).
| Ligandcodes | Lipinski's Rule of Five(Molecular properties) | |||||||
|---|---|---|---|---|---|---|---|---|
| miLogP | Molar refractivity | No. of Atoms | Molar Mass | H-bond acceptor | H-bond donor | No. of rotatable bonds | No. of violations | |
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| 3.917 | 86.706 | 28 | 404.53 | 6 | 2 | 6 | 0 |
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| 3.917 | 86.706 | 28 | 404.53 | 6 | 2 | 6 | 0 |
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| 4.503 | 86.706 | 31 | 442.05 | 6 | 2 | 5 | 0 |
|
| 4.047 | 103.77 | 32 | 452.53 | 7 | 2 | 6 | 0 |
|
| 3.832 | 95.94 | 30 | 428.51 | 7 | 2 | 5 | 0 |
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| 4.44 | 117.945 | 38 | 556.04 | 9 | 2 | 6 | 1 |
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| 4.953 | 98.733 | 31 | 480.37 | 7 | 3 | 5 | 0 |
|
| 4.47 | 98.733 | 31 | 439.53 | 7 | 3 | 5 | 0 |