Synthesis, microbiological evaluation and structure activity relationship analysis of linezolid analogues with different C5-acylamino substituents

Bioorganic & Medicinal Chemistry
2021.0

Abstract

Antimicrobial resistance and lack of new antibiotics to treat multidrug-resistant (MDR) bacteria is a significant public health problem. There is a discovery void and the pipeline of new classes of antibiotics in clinical development is almost empty. Therefore, it is important to understand the structure activity relationships (SAR) of current chemical classes as that can help the drug discovery community in their efforts to develop new antibiotics by modifying existing antibiotic classes. We studied the SAR of the C5-acylaminomethyl moiety of the linezolid, an oxazolidinone antibiotic, by synthesizing 25 compounds containing various aromatic, heteroaromatic and aliphatic substitutions. Our findings suggest that this position is highly important for the function of this antibiotic class, since only smaller non-polar fragments are tolerated at this position while larger and polar ones lead to a decrease in activity compared to linezolid. Our findings have led us to construct a structure activity relationship, around the C5-acylaminomethyl moiety of linezolid, that provides valuable insight into the function of the oxazolidinone class of antibiotics.

Knowledge Graph

Similar Paper

Synthesis, microbiological evaluation and structure activity relationship analysis of linezolid analogues with different C5-acylamino substituents
Bioorganic & Medicinal Chemistry 2021.0
Synthesis and antibacterial activity of linezolid analogues
Bioorganic & Medicinal Chemistry Letters 2002.0
Antibacterial activity of pyrrolopyridine-substituted oxazolidinones: synthesis and in vitro SAR of various C-5 acetamide replacements
Bioorganic & Medicinal Chemistry Letters 2006.0
Novel promising linezolid analogues: Rational design, synthesis and biological evaluation
European Journal of Medicinal Chemistry 2013.0
Design, Synthesis, and Structure–Activity Relationship Studies of Highly Potent Novel Benzoxazinyl-Oxazolidinone Antibacterial Agents
Journal of Medicinal Chemistry 2011.0
Synthesis of Conformationally Constrained Analogues of Linezolid:  Structure−Activity Relationship (SAR) Studies on Selected Novel Tricyclic Oxazolidinones
Journal of Medicinal Chemistry 2002.0
Recent development of potent analogues of oxazolidinone antibacterial agents
Bioorganic & Medicinal Chemistry 2013.0
The synthesis and antibacterial activity of 1,3,4-Thiadiazole phenyl oxazolidinone analogues
Bioorganic & Medicinal Chemistry Letters 2003.0
Synthesis and antibacterial activity of novel oxazolidinones bearing N-hydroxyacetamidine substituent
Bioorganic & Medicinal Chemistry Letters 2006.0
Structure–Activity Relationship for the Oxadiazole Class of Antibiotics
Journal of Medicinal Chemistry 2015.0