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Structural basis of Cfr-mediated antimicrobial resistance and mechanisms to evade it

Nature Chemical Biology. 2020-04; 
Elena V. Aleksandrova; Kelvin J. Y. Wu; Ben I. C. Tresco; Egor A. Syroegin; Erin E. Killeavy; Samson M. Balasanyants; Maxim S. Svetlov; Steven T. Gregory; Gemma C. Atkinson; Andrew G. Myers; Yury S. Polikanov
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Gene Synthesis from various moderately thermophilic bacterial species ( Supplementary Table 1 ) were commercially synthesized de novo (the synthesis was carried out by GenScript, Inc.) and cloned into the pBGAA1-BthERM expression vector, which we have generated in our previous study 24 . The DNA sequences of the synthesized genes Get A Quote

摘要

The bacterial ribosome is an essential drug target as many clinically important antibiotics bind and inhibit its functional centers. The catalytic peptidyl transferase center (PTC) is targeted by the broadest array of inhibitors belonging to several chemical classes. One of the most abundant and clinically prevalent resistance mechanisms to PTC-acting drugs in Gram-positive bacteria is C8-methylation of the universally conserved A2503 nucleobase by Cfr methylase in 23S rRNA. Despite its clinical importance, a sufficient understanding of the molecular mechanisms underlying Cfr-mediated resistance is currently lacking. In this work, we report a set of high-resolution structures of the Cfr-modified 70S ribosome co... More

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