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The Structural and Functional Basis for Recurring Sulfa Drug Resistance Mutations in Staphylococcus aureus Dihydropteroate Synthase

Frontiers in Microbiology. 2019-12; 
Elizabeth C. Griffith; Miranda J. Wallace; Yinan Wu; Gyanendra Kumar; Stefan Gajewski; Pamela Jackson; Gregory A. Phelps; Zhong Zheng; Charles O. Rock; Richard E. Lee; Stephen W. White
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Custom Vector Construction ) and those of the F17L, S18L, T51M, E208K, KE257_dup, T51M/E208K, F17L/E208K, and F17L/KE257_dup mutants were synthesized into the pET16b vector by GenScript to produce the protein with a N-terminal 10xHis tag. These plasmids were used to transform competent E. coli BL21[DE3] cells. Resultant cell lines were Get A Quote

摘要

Staphylococcal species are a leading cause of bacterial drug-resistant infections and associated mortality. One strategy to combat bacterial drug resistance is to revisit compromised targets, and to circumvent resistance mechanisms using structure-assisted drug discovery. The folate pathway is an ideal candidate for this approach. Antifolates target an essential metabolic pathway, and the necessary detailed structural information is now available for most enzymes in this pathway. Dihydropteroate synthase (DHPS) is the target of the sulfonamide class of drugs, and its well characterized mechanism facilitates detailed analyses of how drug resistance has evolved. Here, we surveyed clinical genetic sequencing data ... More

关键词

infectious disease, antibiotics, drug discovery, fitness cost, kinetics, drug susceptibility, bacterial genetics