前往化源商城

Science 2013-11-29

The innate growth bistability and fitness landscapes of antibiotic-resistant bacteria.

J Barrett Deris, Minsu Kim, Zhongge Zhang, Hiroyuki Okano, Rutger Hermsen, Alexander Groisman, Terence Hwa

文献索引:Science 342(6162) , 1237435, (2013)

全文:HTML全文

摘要

To predict the emergence of antibiotic resistance, quantitative relations must be established between the fitness of drug-resistant organisms and the molecular mechanisms conferring resistance. These relations are often unknown and may depend on the state of bacterial growth. To bridge this gap, we have investigated Escherichia coli strains expressing resistance to translation-inhibiting antibiotics. We show that resistance expression and drug inhibition are linked in a positive feedback loop arising from an innate, global effect of drug-inhibited growth on gene expression. A quantitative model of bacterial growth based on this innate feedback accurately predicts the rich phenomena observed: a plateau-shaped fitness landscape, with an abrupt drop in the growth rates of cultures at a threshold drug concentration, and the coexistence of growing and nongrowing populations, that is, growth bistability, below the threshold.

相关化合物

结构式 名称/CAS号 全部文献
氯霉素 结构式 氯霉素
CAS:56-75-7
Chloramphenicol acetyltransferase 结构式 Chloramphenicol acetyltransferase
CAS:9040-07-7