Person: Grad, Yonatan
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Publication In Vitro Selection of Neisseria gonorrhoeae Mutants with Elevated MIC Values and Increased Resistance to Cephalosporins
(American Society for Microbiology, 2014) Johnson, S. R.; Grad, Yonatan; Ganakammal, S. R.; Burroughs, M.; Frace, M.; Lipsitch, Marc; Weil, R.; Trees, D.Strains of Neisseria gonorrhoeae with mosaic penA genes bearing novel point mutations in penA have been isolated from ceftriaxone treatment failures. Such isolates exhibit significantly higher MIC values to third-generation cephalosporins. Here we report the in vitro isolation of two mutants with elevated MICs to cephalosporins. The first possesses a point mutation in the transpeptidase region of the mosaic penA gene, and the second contains an insertion mutation in pilQ.
Publication Origin and Proliferation of Multiple-Drug Resistance in Bacterial Pathogens
(American Society for Microbiology, 2015) Chang, Hsiao-Han; Cohen, Ted; Grad, Yonatan; Hanage, William; O, Thomas F.; Lipsitch, MarcSUMMARY: Many studies report the high prevalence of multiply drug-resistant (MDR) strains. Because MDR infections are often significantly harder and more expensive to treat, they represent a growing public health threat. However, for different pathogens, different underlying mechanisms are traditionally used to explain these observations, and it is unclear whether each bacterial taxon has its own mechanism(s) for multidrug resistance or whether there are common mechanisms between distantly related pathogens. In this review, we provide a systematic overview of the causes of the excess of MDR infections and define testable predictions made by each hypothetical mechanism, including experimental, epidemiological, population genomic, and other tests of these hypotheses. Better understanding the cause(s) of the excess of MDR is the first step to rational design of more effective interventions to prevent the origin and/or proliferation of MDR.