The discovery of the highly potent antibiotic teixobactin, which kills the bacteria without any detectable resistance, has stimulated interest in its structure–activity relationship. However, a molecular structure–activity relationship has not been established so far for teixobactin. Moreover, the importance of the individual amino acids in terms of their L/D configuration and their contribution to the molecular structure and biological activity are still unknown. For the first time, we have defined the molecular structure of seven teixobactin analogues through the variation of the D/L configuration of its key residues, namely N-Me-D-Phe, D-Gln, D-allo-Ile and D-Thr. Furthermore, we have established the role of the individual D amino acids ...
The development of bacterial resistance over time combined with the lack of novel compounds has resu...
The prevalence of life‐threatening, drug‐resistant microbial infections has challenged researchers t...
Following the widespread use and abuse of antibiotics, bacteria have evolved a diverse array of stra...
The discovery of the highly potent antibiotic teixobactin, which kills the bacteria without any dete...
Multi-drug resistant bacteria that are primarily unresponsive towards the available marketed antibio...
The discovery of the new antibiotic teixobactin has been timely in the race for unearthing novel ant...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
Antibiotics that use novel mechanisms are needed to combat antimicrobial resistance1–3. Teixobactin4...
Teixobactin is a new promising antibiotic that targets cell wall biosynthesis by binding to lipid II...
Teixobactin, a recently discovered depsipeptide that binds to bacterial lipid II and lipid III, prov...
Teixobactin is a highly promising antibacterial depsipeptide consisting of four D-amino acids and a ...
Antimicrobial resistance is a serious threat to global human health; therefore, new anti-infective t...
The recently discovered cyclic depsipeptide, teixobactin, is a highly potent antibiotic against mult...
Increasing bacterial resistance against current antibiotics and lack of new molecules to combat bact...
The development of bacterial resistance over time combined with the lack of novel compounds has resu...
The prevalence of life‐threatening, drug‐resistant microbial infections has challenged researchers t...
Following the widespread use and abuse of antibiotics, bacteria have evolved a diverse array of stra...
The discovery of the highly potent antibiotic teixobactin, which kills the bacteria without any dete...
Multi-drug resistant bacteria that are primarily unresponsive towards the available marketed antibio...
The discovery of the new antibiotic teixobactin has been timely in the race for unearthing novel ant...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
The discovery of antibiotics has led to the effective treatment of bacterial infections that were ot...
Antibiotics that use novel mechanisms are needed to combat antimicrobial resistance1–3. Teixobactin4...
Teixobactin is a new promising antibiotic that targets cell wall biosynthesis by binding to lipid II...
Teixobactin, a recently discovered depsipeptide that binds to bacterial lipid II and lipid III, prov...
Teixobactin is a highly promising antibacterial depsipeptide consisting of four D-amino acids and a ...
Antimicrobial resistance is a serious threat to global human health; therefore, new anti-infective t...
The recently discovered cyclic depsipeptide, teixobactin, is a highly potent antibiotic against mult...
Increasing bacterial resistance against current antibiotics and lack of new molecules to combat bact...
The development of bacterial resistance over time combined with the lack of novel compounds has resu...
The prevalence of life‐threatening, drug‐resistant microbial infections has challenged researchers t...
Following the widespread use and abuse of antibiotics, bacteria have evolved a diverse array of stra...