- EMDB-13737: Cryo-EM map of the vacant Candida albicans 80S ribosome -
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基本情報
登録情報
データベース: EMDB / ID: EMD-13737
タイトル
Cryo-EM map of the vacant Candida albicans 80S ribosome
マップデータ
Cryo-EM map of the vacant Candida albicans 80S ribosome
試料
複合体: Candida albicans 80S ribosome
RNA: x 5種
タンパク質・ペプチド: x 75種
リガンド: x 5種
機能・相同性
機能・相同性情報
filamentous growth of a population of unicellular organisms in response to neutral pH / cellular response to neutral pH / negative regulation of cell integrity MAPK cascade / positive regulation of conjugation with cellular fusion / filamentous growth of a population of unicellular organisms in response to biotic stimulus / filamentous growth of a population of unicellular organisms in response to starvation / yeast-form cell wall / GCN2-mediated signaling / regulation of cytoplasmic translation / fungal biofilm matrix ...filamentous growth of a population of unicellular organisms in response to neutral pH / cellular response to neutral pH / negative regulation of cell integrity MAPK cascade / positive regulation of conjugation with cellular fusion / filamentous growth of a population of unicellular organisms in response to biotic stimulus / filamentous growth of a population of unicellular organisms in response to starvation / yeast-form cell wall / GCN2-mediated signaling / regulation of cytoplasmic translation / fungal biofilm matrix / hyphal cell wall / invasive growth in response to glucose limitation / triplex DNA binding / negative regulation of p38MAPK cascade / ribosome hibernation / translation elongation factor binding / regulation of translational initiation in response to stress / filamentous growth / negative regulation of glucose mediated signaling pathway / negative regulation of translational frameshifting / positive regulation of translational fidelity / ribosome-associated ubiquitin-dependent protein catabolic process / GDP-dissociation inhibitor activity / pre-mRNA 5'-splice site binding / preribosome, small subunit precursor / telomeric DNA binding / mRNA destabilization / negative regulation of mRNA splicing, via spliceosome / translational elongation / G-protein alpha-subunit binding / TOR signaling / endonucleolytic cleavage to generate mature 3'-end of SSU-rRNA from (SSU-rRNA, 5.8S rRNA, LSU-rRNA) / protein-RNA complex assembly / ribosomal subunit export from nucleus / ribosomal small subunit export from nucleus / positive regulation of autophagy / translation regulator activity / endonucleolytic cleavage in ITS1 to separate SSU-rRNA from 5.8S rRNA and LSU-rRNA from tricistronic rRNA transcript (SSU-rRNA, 5.8S rRNA, LSU-rRNA) / translation repressor activity / DNA-(apurinic or apyrimidinic site) endonuclease activity / maturation of LSU-rRNA / telomere maintenance / cellular response to starvation / maturation of LSU-rRNA from tricistronic rRNA transcript (SSU-rRNA, 5.8S rRNA, LSU-rRNA) / rescue of stalled ribosome / ribosomal large subunit biogenesis / maturation of SSU-rRNA from tricistronic rRNA transcript (SSU-rRNA, 5.8S rRNA, LSU-rRNA) / maturation of SSU-rRNA / small-subunit processome / protein kinase C binding / maintenance of translational fidelity / modification-dependent protein catabolic process / protein tag activity / rRNA processing / ribosomal small subunit biogenesis / small ribosomal subunit rRNA binding / extracellular vesicle / ribosome biogenesis / ribosome binding / ribosomal small subunit assembly / small ribosomal subunit / 5S rRNA binding / large ribosomal subunit rRNA binding / cytosolic small ribosomal subunit / ribosomal large subunit assembly / cytoplasmic translation / cytosolic large ribosomal subunit / negative regulation of translation / cell adhesion / rRNA binding / ribosome / protein ubiquitination / structural constituent of ribosome / ribonucleoprotein complex / positive regulation of protein phosphorylation / G protein-coupled receptor signaling pathway / translation / mRNA binding / ubiquitin protein ligase binding / negative regulation of apoptotic process / nucleolus / cell surface / RNA binding / zinc ion binding / extracellular region / membrane / nucleus / metal ion binding / cytosol / cytoplasm 類似検索 - 分子機能
RNA binding protein HABP4/SERBP1 / Stm1-like, N-terminal / Stm1 / Hyaluronan/mRNA-binding protein / Hyaluronan / mRNA binding family / Ribosomal protein L18/L18-A/B/e, conserved site / Ribosomal protein L18e signature. / : / Ribosomal protein L18e / Ribosomal protein 60S L18 and 50S L18e ...RNA binding protein HABP4/SERBP1 / Stm1-like, N-terminal / Stm1 / Hyaluronan/mRNA-binding protein / Hyaluronan / mRNA binding family / Ribosomal protein L18/L18-A/B/e, conserved site / Ribosomal protein L18e signature. / : / Ribosomal protein L18e / Ribosomal protein 60S L18 and 50S L18e / : / Ribosomal protein S26e signature. / Ribosomal protein L41 / Ribosomal protein L41 / Ribosomal protein S26e / Ribosomal protein S21e, conserved site / Ribosomal protein S26e superfamily / Ribosomal protein S26e / Ribosomal protein S21e signature. / : / Ribosomal protein S12e signature. / Ribosomal protein S12e / Ribosomal protein S5, eukaryotic/archaeal / Ribosomal protein L29e / Ribosomal L29e protein family / Ribosomal protein L13e, conserved site / Ribosomal protein L13e signature. / Ribosomal protein S21e / Ribosomal protein S21e superfamily / Ribosomal protein S21e / Ribosomal protein S2, eukaryotic / Small (40S) ribosomal subunit Asc1/RACK1 / Ribosomal protein L22e / Ribosomal protein L22e superfamily / S27a-like superfamily / Ribosomal L22e protein family / Ribosomal protein L38e / Ribosomal protein L38e superfamily / Ribosomal L38e protein family / 40S Ribosomal protein S10 / Ribosomal protein S10, eukaryotic/archaeal / Ribosomal protein L27e, conserved site / Ribosomal protein L27e signature. / Ribosomal protein L44e signature. / Plectin/S10, N-terminal / Ribosomal protein L10e, conserved site / Plectin/S10 domain / Ribosomal protein L10e signature. / Ribosomal protein S25 / S25 ribosomal protein / Ribosomal protein L10e / Ribosomal protein L13e / Ribosomal protein L13e / Ribosomal protein L19, eukaryotic / Ribosomal protein S27a / Ribosomal protein S27a / Ribosomal protein S27a / Ribosomal protein S2, eukaryotic/archaeal / Ribosomal protein S8e subdomain, eukaryotes / Ribosomal protein S17e, conserved site / Ribosomal protein S17e signature. / 60S ribosomal protein L18a/ L20, eukaryotes / Ribosomal protein S30 / : / Ribosomal protein S30 / 40S ribosomal protein S29/30S ribosomal protein S14 type Z / : / Ribosomal protein S7e signature. / Ribosomal protein L24e, conserved site / Ribosomal protein L19/L19e conserved site / Ribosomal protein L19e signature. / Ribosomal protein L24e signature. / Ribosomal protein L44e / Ribosomal protein L44 / Ribosomal protein S3, eukaryotic/archaeal / Ribosomal protein L34e, conserved site / Ribosomal protein L34e signature. / Ribosomal protein L5 eukaryotic, C-terminal / Ribosomal L18 C-terminal region / : / Ribosomal protein L30e signature 1. / Ribosomal protein L6e signature. / 50S ribosomal protein L18Ae/60S ribosomal protein L20 and L18a / Ribosomal protein S19e / Ribosomal protein S3Ae, conserved site / Ribosomal protein S19e / Ribosomal protein S3Ae signature. / Ribosomal_S19e / Ribosomal protein S27e signature. / Ribosomal protein 50S-L18Ae/60S-L20/60S-L18A / Ribosomal L40e family / Ribosomal proteins 50S-L18Ae/60S-L20/60S-L18A / Ribosomal protein S4e, N-terminal, conserved site / Ribosomal protein S4e signature. / Ribosomal_L40e / Ribosomal protein L40e / 40S ribosomal protein S4, C-terminal domain / Ribosomal protein L40e superfamily / 40S ribosomal protein S4 C-terminus / Ribosomal protein L23/L25, N-terminal 類似検索 - ドメイン・相同性
Small ribosomal subunit protein eS21 / Small ribosomal subunit protein eS4 / Large ribosomal subunit protein uL24 / Small ribosomal subunit protein uS9 / Large ribosomal subunit protein eL6 / Large ribosomal subunit protein uL30 / Small ribosomal subunit protein uS11 / Large ribosomal subunit protein eL39 / Small ribosomal subunit protein uS12 / Large ribosomal subunit protein eL34 ...Small ribosomal subunit protein eS21 / Small ribosomal subunit protein eS4 / Large ribosomal subunit protein uL24 / Small ribosomal subunit protein uS9 / Large ribosomal subunit protein eL6 / Large ribosomal subunit protein uL30 / Small ribosomal subunit protein uS11 / Large ribosomal subunit protein eL39 / Small ribosomal subunit protein uS12 / Large ribosomal subunit protein eL34 / Large ribosomal subunit protein eL42 / Small ribosomal subunit protein eS17 / Large ribosomal subunit protein uL2 / Large ribosomal subunit protein eL37 / Large ribosomal subunit protein eL29 / Large ribosomal subunit protein eL27 / Large ribosomal subunit protein eL14 / Large ribosomal subunit protein uL4 / Large ribosomal subunit protein eL38 / Large ribosomal subunit protein eL21 / Small ribosomal subunit protein uS4 / Large ribosomal subunit protein eL36 / Large ribosomal subunit protein eL31 / Large ribosomal subunit protein eL33 / Large ribosomal subunit protein uL5 / Small ribosomal subunit protein eS10 / Small ribosomal subunit protein uS19 / Large ribosomal subunit protein uL29 / Large ribosomal subunit protein eL19 / Large ribosomal subunit protein eL18 / Small ribosomal subunit protein eS19 / Ribosome-associated protein STM1 / Large ribosomal subunit protein eL40 / Small ribosomal subunit protein eS6 / Large ribosomal subunit protein eL20 / Large ribosomal subunit protein eL22 / Large ribosomal subunit protein eL30 / Small ribosomal subunit protein uS17 / Small ribosomal subunit protein eS25 / Large ribosomal subunit protein eL43 / Small ribosomal subunit protein uS15 / Large ribosomal subunit protein eL32 / Large ribosomal subunit protein uL23 / Large ribosomal subunit protein uL14 / Small ribosomal subunit protein eS28 / Small ribosomal subunit protein uS13 / Large ribosomal subunit protein uL15 / Small ribosomal subunit protein eS30 / Small ribosomal subunit protein uS3 / Small ribosomal subunit protein eS27 / Small ribosomal subunit protein uS14 / 60S ribosomal protein L41 / Small ribosomal subunit protein uS2 / Large ribosomal subunit protein eL13 / Small ribosomal subunit protein eS1 / Small ribosomal subunit protein RACK1 / Large ribosomal subunit protein uL3 / Small ribosomal subunit protein eS8 / Large ribosomal subunit protein uL22 / Ubiquitin-ribosomal protein eS31 fusion protein / Small ribosomal subunit protein uS10 / Large ribosomal subunit protein eL24 / Large ribosomal subunit protein eL15 / Small ribosomal subunit protein eS24 / Small ribosomal subunit protein uS5 / Large ribosomal subunit protein uL13 / Small ribosomal subunit protein eS12 / Large ribosomal subunit protein uL6 / Small ribosomal subunit protein uS7 / Large ribosomal subunit protein uL18 / Large ribosomal subunit protein uL16 / Small ribosomal subunit protein eS7 / Small ribosomal subunit protein eS26 / Large ribosomal subunit protein eL8B / Small ribosomal subunit protein uS8A 類似検索 - 構成要素
ジャーナル: Sci Adv / 年: 2022 タイトル: E-site drug specificity of the human pathogen ribosome. 著者: Yury Zgadzay / Olga Kolosova / Artem Stetsenko / Cheng Wu / David Bruchlen / Konstantin Usachev / Shamil Validov / Lasse Jenner / Andrey Rogachev / Gulnara Yusupova / Matthew S Sachs / Albert ...著者: Yury Zgadzay / Olga Kolosova / Artem Stetsenko / Cheng Wu / David Bruchlen / Konstantin Usachev / Shamil Validov / Lasse Jenner / Andrey Rogachev / Gulnara Yusupova / Matthew S Sachs / Albert Guskov / Marat Yusupov / 要旨: is a widespread commensal fungus with substantial pathogenic potential and steadily increasing resistance to current antifungal drugs. It is known to be resistant to cycloheximide (CHX) that binds ... is a widespread commensal fungus with substantial pathogenic potential and steadily increasing resistance to current antifungal drugs. It is known to be resistant to cycloheximide (CHX) that binds to the E-transfer RNA binding site of the ribosome. Because of lack of structural information, it is neither possible to understand the nature of the resistance nor to develop novel inhibitors. To overcome this issue, we determined the structure of the vacant 80 ribosome at 2.3 angstroms and its complexes with bound inhibitors at resolutions better than 2.9 angstroms using cryo-electron microscopy. Our structures reveal how a change in a conserved amino acid in ribosomal protein eL42 explains CHX resistance in and forms a basis for further antifungal drug development.