30S subunit recognition and G1405 modification by the aminoglycoside- resistance 16S ribosomal RNA methyltransferase RmtC

被引:5
|
作者
Srinivas, Pooja [1 ,2 ]
Nosrati, Meisam [3 ]
Zelinskaya, Natalia [3 ]
Dey, Debayan [3 ]
Comstock, Lindsay R. [4 ]
Dunham, Christine M. [1 ,5 ]
Conn, Graeme L. [3 ,5 ]
机构
[1] Emory Univ, Dept Chem, Atlanta, GA 30322 USA
[2] Emory Univ, Grad Program Mol & Syst Pharmacol, Grad Div Biol & Biomed Sci, Atlanta, GA 30322 USA
[3] Emory Univ, Dept Biochem, Sch Med, Atlanta, GA 30322 USA
[4] Wake Forest Univ, Dept Chem, Winston Salem, NC 27101 USA
[5] Emory Univ, Emory Antibiot Resistance Ctr, Atlanta, GA 30322 USA
关键词
ribosome; methylation; aminoglycoside resistance; helix; 44; methyltransferase; M(1)A1408 METHYLTRANSFERASE; STRUCTURAL BASIS; METHYLATION; ANTIBIOTICS; VISUALIZATION; INHIBITION; EMERGENCE; INSIGHTS; FITNESS; SITES;
D O I
10.1073/pnas.2304128120
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Acquired ribosomal RNA (rRNA) methylation has emerged as a significant mechanism of aminoglycoside resistance in pathogenic bacterial infections. Modification of a single nucleotide in the ribosome decoding center by the aminoglycoside-resistance 16S rRNA (m7G1405) methyltransferases effectively blocks the action of all 4,6-deoxystreptamine ring-containing aminoglycosides, including the latest generation of drugs. To define the molecular basis of 30S subunit recognition and G1405 modification by these enzymes, we used a S- adenosyl- L- methionineanalog to trap the complex in a postcatalytic state to enable determination of a global 3.0 & ANGS; cryo-electron microscopy structure of the m7G1405 methyltransferase RmtC bound to the mature Escherichia coli 30S ribosomal subunit. This structure, together with functional analyses of RmtC variants, identifies the RmtC N-terminal domain as critical for recognition and docking of the enzyme on a conserved 16S rRNA tertiary surface adjacent to G1405 in 16S rRNA helix 44 (h44). To access the G1405 N7 position for modification, a collection of residues across one surface of RmtC, including a loop that undergoes a disorder to order transition upon 30S subunit binding, induces significant distortion of h44. This distortion flips G1405 into the enzyme active site where it is positioned for modification by two almost universally conserved RmtC residues. These studies expand our understanding of ribosome recognition by rRNA modification enzymes and present a more complete structural basis for future development of strategies to inhibit m7G1405 modification to resensitize bacterial pathogens to aminoglycosides.
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页数:10
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