E. coli 70S ribosome complex (unmethylated 16S A1408 + arbekacin)
マップデータ
Masked, sharpened map used for modeling. Obtained by sharpening a masked, unsharpened map produced using a RELION postprocess job in PHENIX Autosharpen.
試料
複合体: 16S A1408-unmethylated 70S ribosome complex (E. coli) containing arbekacin
RNA: x 3種
タンパク質・ペプチド: x 49種
リガンド: x 3種
キーワード
aminoglycoside / A1408 / resistance / ribosome
機能・相同性
機能・相同性情報
negative regulation of cytoplasmic translational initiation / misfolded RNA binding / Group I intron splicing / RNA folding / positive regulation of ribosome biogenesis / DnaA-L2 complex / negative regulation of translational initiation / negative regulation of DNA-templated DNA replication initiation / mRNA regulatory element binding translation repressor activity / assembly of large subunit precursor of preribosome ...negative regulation of cytoplasmic translational initiation / misfolded RNA binding / Group I intron splicing / RNA folding / positive regulation of ribosome biogenesis / DnaA-L2 complex / negative regulation of translational initiation / negative regulation of DNA-templated DNA replication initiation / mRNA regulatory element binding translation repressor activity / assembly of large subunit precursor of preribosome / positive regulation of RNA splicing / ribosome assembly / cytosolic ribosome assembly / transcription antitermination / translational initiation / regulation of cell growth / DNA-templated transcription termination / maintenance of translational fidelity / mRNA 5'-UTR binding / large ribosomal subunit / transferase activity / ribosome binding / ribosomal small subunit biogenesis / ribosomal small subunit assembly / small ribosomal subunit / small ribosomal subunit rRNA binding / 5S rRNA binding / ribosomal large subunit assembly / cytosolic small ribosomal subunit / large ribosomal subunit rRNA binding / cytosolic large ribosomal subunit / cytoplasmic translation / tRNA binding / negative regulation of translation / rRNA binding / structural constituent of ribosome / ribosome / translation / ribonucleoprotein complex / response to antibiotic / mRNA binding / RNA binding / zinc ion binding / membrane / cytoplasm / cytosol 類似検索 - 分子機能
Ribosomal protein S21, conserved site / Ribosomal protein S21 signature. / Ribosomal protein L25, short-form / Ribosomal protein S14, bacterial/plastid / Ribosomal protein L31 type A / Ribosomal protein S21 superfamily / Ribosomal protein S21 / Ribosomal protein S16, conserved site / Ribosomal protein S16 signature. / Ribosomal protein L31 signature. ...Ribosomal protein S21, conserved site / Ribosomal protein S21 signature. / Ribosomal protein L25, short-form / Ribosomal protein S14, bacterial/plastid / Ribosomal protein L31 type A / Ribosomal protein S21 superfamily / Ribosomal protein S21 / Ribosomal protein S16, conserved site / Ribosomal protein S16 signature. / Ribosomal protein L31 signature. / Ribosomal protein S21 / Ribosomal protein L31 / Ribosomal protein L31 superfamily / Ribosomal protein L31 / Ribosomal protein L16 signature 1. / Ribosomal protein L21, conserved site / Ribosomal protein L21 signature. / Ribosomal protein L16 signature 2. / Ribosomal protein L16, conserved site / Ribosomal protein L6, conserved site / Ribosomal protein L6 signature 1. / : / Ribosomal protein L9 signature. / Ribosomal protein L9, bacteria/chloroplast / Ribosomal protein L9, C-terminal / Ribosomal protein L9, C-terminal domain / Ribosomal protein L9, C-terminal domain superfamily / Ribosomal protein L17 signature. / Ribosomal L25p family / Ribosomal protein L25 / Ribosomal protein L36 signature. / Ribosomal protein L32p, bacterial type / Ribosomal protein L28/L24 superfamily / Ribosomal protein L25/Gln-tRNA synthetase, N-terminal / Ribosomal protein L25/Gln-tRNA synthetase, anti-codon-binding domain superfamily / Ribosomal protein L9, N-terminal domain superfamily / Ribosomal protein L9 / Ribosomal protein L9, N-terminal / Ribosomal protein L9, N-terminal domain / Ribosomal protein L33, conserved site / Ribosomal protein L33 signature. / Ribosomal protein L35, conserved site / Ribosomal protein L35 signature. / Ribosomal protein L28 / Ribosomal protein L35, non-mitochondrial / : / Ribosomal protein L6, bacterial-type / Ribosomal protein S3, bacterial-type / Ribosomal protein S19, bacterial-type / Ribosomal protein S13, bacterial-type / Ribosomal protein S6, conserved site / Ribosomal protein S6 signature. / Ribosomal protein L9/RNase H1, N-terminal / Ribosomal protein S7, bacterial/organellar-type / Ribosomal protein S11, bacterial-type / Ribosomal protein S20 / Ribosomal protein S20 superfamily / Ribosomal protein S20 / Ribosomal protein L5, bacterial-type / Ribosomal protein L36 / Ribosomal protein L36 superfamily / Ribosomal protein L36 / Ribosomal protein S4, bacterial-type / Ribosomal protein L19, conserved site / Ribosomal protein L19 signature. / 30S ribosomal protein S17 / Ribosomal protein S5, bacterial-type / Ribosomal protein L27, conserved site / Ribosomal protein L27 signature. / Ribosomal protein S6, plastid/chloroplast / Ribosomal protein L20 signature. / Ribosomal protein L22, bacterial/chloroplast-type / Ribosomal protein L14P, bacterial-type / Ribosomal protein L34, conserved site / Ribosomal protein L34 signature. / Ribosomal protein S2, bacteria/mitochondria/plastid / Ribosomal protein L2, bacterial/organellar-type / Ribosomal protein L35 / Ribosomal protein L35 superfamily / Ribosomal protein L35 / Ribosomal protein L33 / Ribosomal protein L33 / Ribosomal L28 family / Ribosomal protein L33 superfamily / Ribosomal protein S9, bacterial/plastid / Ribosomal protein L16 / Ribosomal protein L28/L24 / Ribosomal protein S18, conserved site / Ribosomal protein S18 signature. / Ribosomal protein L30, bacterial-type / Ribosomal protein S16 / Ribosomal protein S16 domain superfamily / Ribosomal protein S16 / : / L28p-like / Ribosomal protein S15, bacterial-type / Ribosomal protein S6 / Ribosomal protein S6 / Ribosomal protein L27 / Ribosomal L27 protein 類似検索 - ドメイン・相同性
Large ribosomal subunit protein uL15 / Small ribosomal subunit protein bS18 / Large ribosomal subunit protein bL36 / Small ribosomal subunit protein bS21 / Large ribosomal subunit protein uL5 / Large ribosomal subunit protein bL28 / Large ribosomal subunit protein uL24 / Small ribosomal subunit protein uS14 / Small ribosomal subunit protein uS13 / Large ribosomal subunit protein uL4 ...Large ribosomal subunit protein uL15 / Small ribosomal subunit protein bS18 / Large ribosomal subunit protein bL36 / Small ribosomal subunit protein bS21 / Large ribosomal subunit protein uL5 / Large ribosomal subunit protein bL28 / Large ribosomal subunit protein uL24 / Small ribosomal subunit protein uS14 / Small ribosomal subunit protein uS13 / Large ribosomal subunit protein uL4 / Large ribosomal subunit protein bL20 / Small ribosomal subunit protein uS11 / Small ribosomal subunit protein uS3 / Large ribosomal subunit protein bL34 / Large ribosomal subunit protein bL9 / Large ribosomal subunit protein bL33 / Small ribosomal subunit protein uS17 / Large ribosomal subunit protein uL6 / Large ribosomal subunit protein uL30 / Large ribosomal subunit protein bL17 / Small ribosomal subunit protein uS9 / Large ribosomal subunit protein bL21 / Small ribosomal subunit protein uS15 / Small ribosomal subunit protein bS16 / Small ribosomal subunit protein uS2 / Small ribosomal subunit protein bS20 / Large ribosomal subunit protein uL29 / Large ribosomal subunit protein bL25 / Large ribosomal subunit protein bL32 / Small ribosomal subunit protein uS8 / Small ribosomal subunit protein bS6 / Small ribosomal subunit protein uS7 / Large ribosomal subunit protein bL27 / Large ribosomal subunit protein bL31 / Large ribosomal subunit protein bL35 / Small ribosomal subunit protein uS12 / Small ribosomal subunit protein uS4 / Small ribosomal subunit protein uS5 / Large ribosomal subunit protein uL16 / Large ribosomal subunit protein uL2 / Large ribosomal subunit protein uL3 / Large ribosomal subunit protein uL22 / : / Small ribosomal subunit protein uS19 / Large ribosomal subunit protein uL13 / Large ribosomal subunit protein uL14 / : / Large ribosomal subunit protein bL19 / Small ribosomal subunit protein uS10 類似検索 - 構成要素
National Institutes of Health/National Institute Of Allergy and Infectious Diseases (NIH/NIAID)
R01AI088025
米国
National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)
T32GM135060
米国
National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)
U24GM129547
米国
National Institutes of Health/National Institute of General Medical Sciences (NIH/NIGMS)
U24GM129539
米国
Simons Foundation
SF349247
米国
National Institutes of Health/National Center for Advancing Translational Sciences (NIH/NCATS)
UL1TR000454
米国
引用
ジャーナル: Nat Commun / 年: 2025 タイトル: Basis for selective drug evasion of an aminoglycoside-resistance ribosomal RNA modification. 著者: Debayan Dey / Jacob M Mattingly / Natalia Zelinskaya / Christine M Dunham / Graeme L Conn / 要旨: Aminoglycosides disrupt the fidelity of bacterial protein synthesis, but their potent antibacterial activity is threatened by multiple resistance mechanisms, including methylation of their ribosomal ...Aminoglycosides disrupt the fidelity of bacterial protein synthesis, but their potent antibacterial activity is threatened by multiple resistance mechanisms, including methylation of their ribosomal RNA (rRNA) binding site. However, the impact of one such resistance-conferring methylation on N1 of helix 44 nucleotide A1408 (mA1408) is highly variable with some aminoglycosides retaining significant potency. Here, we examine bacterial susceptibility to diverse aminoglycosides, determine high-resolution electron cryomicroscopy structures of mA1408-modified 70S ribosome-aminoglycoside complexes, and perform molecular dynamics simulations to decipher the key determinants of such "resistance evasion." Collectively, these analyses reveal how some aminoglycosides adapt their conformation to accommodate mA1408, including the roles of specific ring substituents, balancing ligand strain and maintaining favorable interactions, as well as interactions made by additional functional groups that compensate for those disrupted by the modification. This work provides design principles that can guide future rational development of aminoglycosides refractory to resistance conferred by rRNA modifications.
ダウンロード / ファイル: emd_44193.map.gz / 形式: CCP4 / 大きさ: 244.1 MB / タイプ: IMAGE STORED AS FLOATING POINT NUMBER (4 BYTES)
注釈
Masked, sharpened map used for modeling. Obtained by sharpening a masked, unsharpened map produced using a RELION postprocess job in PHENIX Autosharpen.