| Literature DB >> 33280581 |
S E Dmitriev1,2,3, D O Vladimirov2, K A Lashkevich4.
Abstract
Eukaryotic ribosome and cap-dependent translation are attractive targets in the antitumor, antiviral, anti-inflammatory, and antiparasitic therapies. Currently, a broad array of small-molecule drugs is known that specifically inhibit protein synthesis in eukaryotic cells. Many of them are well-studied ribosome-targeting antibiotics that block translocation, the peptidyl transferase center or the polypeptide exit tunnel, modulate the binding of translation machinery components to the ribosome, and induce miscoding, premature termination or stop codon readthrough. Such inhibitors are widely used as anticancer, anthelmintic and antifungal agents in medicine, as well as fungicides in agriculture. Chemicals that affect the accuracy of stop codon recognition are promising drugs for the nonsense suppression therapy of hereditary diseases and restoration of tumor suppressor function in cancer cells. Other compounds inhibit aminoacyl-tRNA synthetases, translation factors, and components of translation-associated signaling pathways, including mTOR kinase. Some of them have antidepressant, immunosuppressive and geroprotective properties. Translation inhibitors are also used in research for gene expression analysis by ribosome profiling, as well as in cell culture techniques. In this article, we review well-studied and less known inhibitors of eukaryotic protein synthesis (with the exception of mitochondrial and plastid translation) classified by their targets and briefly describe the action mechanisms of these compounds. We also present a continuously updated database (http://eupsic.belozersky.msu.ru) that currently contains information on 370 inhibitors of eukaryotic protein synthesis.Entities:
Mesh:
Substances:
Year: 2020 PMID: 33280581 PMCID: PMC7689648 DOI: 10.1134/S0006297920110097
Source DB: PubMed Journal: Biochemistry (Mosc) ISSN: 0006-2979 Impact factor: 2.487
Figure.Eukaryotic translation cycle, selected regulatory pathways, and the most commonly used and well-characterized inhibitors of protein synthesis. The inhibitors are grouped according to the translation cycle stages, in which their targets are involved. Translation initiation: i.1, Met-tRNAi binding to eIF2 and formation of the eIF2/Met-tRNAi/GTP ternary complex (TC); i.2, eIF4A binging to eIF4G; i.3, eIF4E binging to eIF4G; i.4, eIF4E binging to the m7G-capped mRNA 5′-end; i.5, eIF4A helicase activity during eIF4F binding to the mRNA and subsequent ribosome scanning; i.6, AUG codon recognition during scanning; i.7, eIF5B interaction with the 60S subunit; i.8, eIF6 interaction with the 60S subunit; i.9, 60S subunit recruitment to the 48S preinitiation complex (48S PIC) and formation of the 80S initiation complex (80S IC). Elongation and accompanying reactions: e.1, tRNA aminoacylation; e.2, eEF1A/GDP dissociation after delivery of aminoacyl-tRNA (Aa-tRNA); e.3, polypeptide progression in the ribosomal tunnel; e.4, tRNA accommodation/decoding; e.5, peptidyl transferase reaction (combined with the preceding stages of Aa-tRNA binding and accommodation); e.6, translocation; e.7, eEF2/GDP dissociation after translocation. Termination: t.1, stop codon recognition; t.2, peptidyl-tRNA hydrolysis. Recycling: r.1, 60S subunit dissociation. Modulators of signaling cascades: s.1-s.3, activators of eIF2 kinases; s.4, eIF2 phosphatase inhibitors; s.5, PI3K inhibitors; s.6, mTOR active site inhibitors; s.7, allosteric inhibitors of mTOR in the mTORC1 complex. Inhibitors with different mechanisms of actions affecting the same stage are shown in frames.
Small-molecule inhibitors of eukaryotic ribosome
| Name | Class, group of chemical substances | Specificity (B, A, E)# | Interacting ribosomal subunit | Binding site## | Stage of the translation cycle### | Effect on polysomes#### | Mechanism of action |
|---|---|---|---|---|---|---|---|
| Anisomycin/flagecidin | pyrrolidine, anisomycin group | A, E | 60S | PTC (A) | E | stab | PTC inhibitor |
| Deacetylanisomycin | – // – | E | 60S | PTC (A) | E | stab? | – // – |
| Preussin/L-657,398 | – // – | E | 60S | PTC (A)? | E? | – // – | |
| Calonectrin | trichothecene A | 60S? | PTC (A)? | E | stab/dis | – // – | |
| Neosolaniol | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Scirpentriol | – // – | B, A, E | 60S | PTC (A) | E | dis | – // – |
| Diacetoxyscirpenol/anguidine | – // – | B, A, E | 60S | PTC (A) | E | dis | – // – |
| T-2 toxin | – // – | E | 60S | PTC (A) | E | dis | – // – |
| T-2 triol | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Trichodermin | – // – | E | 60S | PTC | E | stab/dis | – // – |
| Trichodermol | – // – | E | 60S | PTC | E | stab | – // – |
| Diacetylverrucarol | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Trichothecolone | – // – | B, A, E | 60S? | PTC (A)? | E? | stab/dis | – // – ? |
| Trichothecin | trichothecene B | E | 60S | PTC (A)? | E | stab/dis | – // – |
| Fusarenone X | – // – | E | 60S | PTC | E | stab | – // – |
| Vomitoxin/deoxynivalenol | – // – | E | 60S | PTC (A) | E | dis | – // – |
| Nivalenol | – // – | E | 60S? | PTC (A)? | E? | dis | – // – ? |
| Crotocin | trichothecene C | E | 60S | PTC (A) | E, T? | stab | – // – ? |
| Satratoxin G | trichothecene D | E | 60S | PTC (A) | E? | dis | – // – ? |
| Roridin A | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Myrothecin A | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Verrucarin A/muconomycin A | trichothecene D, muconomycin | E | 60S | PTC (A) | E | stab | – // – |
| Muconomycin B | – // – | E | 60S? | PTC (A)? | E? | stab | – // – |
| Narciclasine | tetraheterocyclic alkaloid | B, A, E | 60S | PTC (A) | E | stab | – // – |
| Isonarciclasine | – // – | B, A, E | 60S? | PTC (A)? | E | stab | – // – |
| Lycorine | – // – | B, A, E | 60S | PTC (A) | E | ? | – // – |
| Pseudolycorine | – // – | B, A, E | 60S | PTC (A) | E | ? | – // – |
| Haemanthamine | – // – | A, E | 60S | PTC (A) | E | stab | – // – |
| Haemanthidine | – // – | A, E | 60S | PTC (A) | E | (stab) | – // – |
| Bulbispermine/hamayne | – // – | E | 60S | PTC (A) | E | (stab) | – // – |
| Pretazettine | – // – | E | 60S | PTC (A) | E | stab | – // – |
| Jonquailine | – // – | E? | 60S? | PTC (A)? | E? | ? | – // – ? |
| Crinamine | – // – | B, A, E | 60S | PTC (A) | E | (stab) | – // – |
| Agelastatin A | heterocyclic alkaloid | E | 60S | PTC (A) | E | ? | – // – |
| Cephalotaxine | heterocyclic alkaloid, cephalotaxine group | (E) | 60S | PTC (A)? | (E) | (stab) | – // – (weak) |
| Harringtonine | – // – | A, E | 60S | PTC (A) | E | dis | – // – |
| Homoharringtonine/omacetaxine mepesuccinate | – // – | A, E | 60S | PTC (A) | E | dis | – // – |
| Nagilactone C | diterpenoid | E | 60S | PTC (A) | E | dis | – // – |
| Nagilactone E | – // – | E | 60S? | PTC (A)? | E | ? | – // – ? |
| Bruceantin | quassinoid | A, E | 60S | PTC (A) | E | ? | – // – |
| Grandilactone A | – // – | E | 60S? | PTC (A)? | E | ? | – // – |
| Brusatol | – // – | E | 60S? | PTC (A) | E? | ? | – // – ? |
| Holacanthone | – // – | E? | 60S | PTC (A) | ? | ? | – // – |
| Baccharinol | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Ailanthinone | – // – | E | 60S? | PTC (A)? | E? | ? | – // – ? |
| Quassin | – // – | E? | 60S? | PTC (A)? | E? | ? | – // – ? |
| Sparsomycin | pyrimidone, sparsomycin group | B, A, E | 60S | PTC (A, P) | E | stab | – // – |
| Deshydroxysparsomycin | – // – | E | 60S? | PTC (A, P)? | E? | ? | – // – ? |
| Octylsparsomycin | – // – | E | 60S? | PTC (A, P)? | E? | ? | – // – ? |
| Phenol-alanine sparsomycin | – // – | B, A, E | 60S? | PTC (A, P)? | E? | ? | – // – ? |
| MDL 20828 | – // – | E | 60S? | PTC (A, P)? | E? | ? | – // – ? |
| Anthelmycin/hikizimycin | nucleoside, pyrimidone | B, A, E | 60S | PTC (P) | E | (stab) | – // – |
| Blasticidin S | nucleoside, blasticidin group | B, A, E | 60S | PTC (P) | E | ? | – // – |
| Gougerotin | – // – | B, A, E | 60S | PTC | E | dis | – // – |
| Bagougeramine A | – // – | B, A, E? | 60S? | PTC? | E? | ? | – // – ? |
| Amicetin | – // – | B, A, E | 60S | PTC | E | stab | – // – |
| Bamicetin | – // – | B, A, E | 60S | PTC | E | ? | – // – |
| Mildiomycin | – // – | B, A, E | 60S | PTC | E | ? | – // – |
| Plicacetine | – // – | B, A, E | 60S? | PTC? | E? | ? | – // – (weak) |
| Arginomycin | – // – | B, A, E | 60S? | PTC? | E? | ? | – // – ? |
| Puromycin | aminoacyl-nucleoside | B, A, E | 60S | A | E | dis | indices premature termination |
| A201A | – // – | B, A, E | 60S | A | E | PTC inhibitor | |
| Bactobolin | isocoumarin | B, A, E? | 60S | PTC (P) | E | ? | – // – |
| Actinobolin | – // – | B, A, E | 60S | PTC | E | ? | – // – |
| Amicoumacin A | – // – | B, A, E | 40S | E-site | E | ? | translocation inhibitor |
| Baciphelacin | – // – | B, A, E | ? | ? | I? | ? | ? |
| Oosponol | – // – | B, A, E? | ? | ? | ? | ? | ? |
| AHR-1911 | thiopseudourea | B, A, E | 60S? | PTC? | E | PTC inhibitor | |
| Tenuazonic acid | pyrroline | E | 60S? | PTC (A, P) | ? | stab | – // – |
| Bottromycin A2 | cyclic peptide | B, A, E? | 60S? | PTC? | E? | stab? | – // – ? |
| Griseoviridin | cyclodepsipeptide | B, A, E | 60S | PTC | E | ? | – // – ? |
| Cyclopiazonic acid | ergoline alkaloid | B, A, E | 60S? | ? | E | ? | – // – ? |
| PF-06446846/PF846 | B, A, E | 60S | PET | E | ? | alters path of nascent peptide, blocks translocation | |
| PF-06378503/PF8503 | E | 60S? | PET? | E | ? | – // – ? | |
| Tetracenomycin X | aromatic polyketide, tetracenomycin group | B, A, E | 60S | PET | E? | ? | blocks PET, hinder peptide progression |
| Tetracycline Col-3 | aromatic polyketide, tetracycline group | B, A, E | 40S, 60S | PET and other | E? | ? | ? |
| Doxycycline | – // – | B, A, E | 40S, 60S | PET and other | E? | ? | ? |
| Tigecycline | – // – | B, A, E | 40S? 60S? | ? | E | ? | inhibits Aa-tRNA binding? |
| Minocycline | – // – | B, A, E | 40S? 60S? | ? | E? | ? | ? |
| Doxorubicin | aromatic polyketide, anthracycline group | E? | ? | ? | T | ? | promotes stop-codon readthrough |
| Cycloheximide/naramycin A/actidion | glutarimide | E | 60S | E-site | E | stab | translocation inhibitor |
| Naramycin B | – // – | E | 60S? | E-site? | ? | ? | – // – ? |
| Acetoxycycloheximide | – // – | E | 60S | E-site? | E | stab | – // – ? |
| Streptimidone | – // – | E | 60S | E-site? | E | ? | – // – ? |
| Streptovitacin A | – // – | E | 60S | E-site? | E? | stab | – // – ? |
| Actiphenol | – // – | E | 60S? | E-site? | E? | ? | – // – ? |
| Lactimidomycin | – // – | E | 60S | E-site | E | dis | – // – |
| Isomigrastatin | – // – | E | 60S? | E-site? | E? | ? | – // – ? |
| ECA-LTM | – // – | E | 60S? | E-site? | E? | ? | – // – ? |
| Streptoglutarimide H | – // – | B, A, E | 60S? | E-site? | E? | ? | – // – ? |
| Chlorolissoclimide | labdane diterpenoid, lissoclimide group | E | 60S | E-site | E | stab | – // – |
| Lissoclimide C45 | – // – | E | 60S | E-site | E | stab | – // – ? |
| Haterumaimides Q | – // – | E | 60S? | E-site? | E | stab | – // – |
| Phyllanthoside | glycoside | E | 60S | E-site | E | dis | – // – |
| S3′-desacetyl phyllanthoside | – // – | E | 60S? | E-site? | ? | ? | – // – ? |
| Pederin | polyketide, pederin group | E | 60 | E-site | E | stab | – // – |
| Psymberin/irciniastatin A | – // – | E | 60S | E-site | E | ? | – // – |
| Theopederin B | – // – | A, E | 60S | E-site | E | ? | – // – |
| Mycalamide B | – // – | B, A, E | 60S | E-site | E | dis | – // – |
| Onnamide A | – // – | A? E | 60S | E-site | E | ? | – // – |
| Tedanolide | polyketide, tedanolide group | A? E | 60S | E-site | E | ? | – // – |
| 13-deoxytedanolide | – // – | A, E | 60S | E-site | E | ? | – // – |
| Myriaporone 3/4 | – // – | A, E | eEF2? | - | E | ? | (see |
| Emetine | pyridoisoquinoline alkaloid, emetine group | E | 40S | E-site | E | stab | translocation inhibitor |
| Dehydroemetine | – // – | E | 40S? | E-site? | E? | (stab) | – // – |
| Cephaeline | – // – | E | 40S? | E-site? | E? | (stab) | – // – |
| Cryptopleurine | phenanthroquinolizidine alkaloid, emetine-like | E | 40S, 60S? | E-site | E | ? | – // – |
| Tylocrebrine | – // – | B? E | 40S? | E-site? | E | ? | – // – |
| Tubulosine | – // – | E | 40S, 60S? | E-site? | E | ? | – // – |
| Tylophorine/DCB-3500 | – // – | B?, A, E | 40S | E-site? | E | stab | – // – |
| Rac-cryptopleurin | – // – | E | 40S? | E-site? | E | ? | – // – |
| YXM-110 | – // – | E | 40S? | E-site? | E | ? | – // – |
| Pactamycin | aminocyclopentitol, pactamycin group | B, A, E | 40S | E-site | E (I?) | (dis) | – // – |
| de-6-MSA-pactamycin | – // – | B, A, E | 40S? | E-site? | E (I?) | ? | – // – ? |
| Zaluzanin C | sesquiterpene lactone | E | ? | ? | E | ? | – // – |
| Hygromycin B | 2-DOS aminoglycoside, noncanonical | B, A, E | 40S? | DC | E (R?) | stab | – // – |
| G418/geneticin | 2-DOS aminoglycoside, 4,6-disubstituted | B, E | 40S, 60S | DC, PET | E, T | dis | induces miscoding, promotes stop-codon readthrough (HC inhibits translocation) |
| Gentamicins | – // – | B, E | 40S, 60S | DC, PET | E, T | dis | – // – |
| Tobramycin | – // – | B, E? | 40S, 60S? | DC | E, T | dis? | – // – |
| Amikacin | – // – | B, E | 40S | DC | E, T | dis | – // – |
| Netilmicin | – // – | B, A, E? | 40S? | DC? | E? | dis? | – // – |
| Paromomycin | 2-DOS aminoglycoside, 4,5-disubstituted | B, E | 40S, 60S | DC | E, T (R?) | dis | – // – |
| Lividomycin | – // – | B, A, E? | 40S? | DC? | E | ? | – // – |
| Neomycin | – // – | B, A, E? | 40S? | DC? | E, T (R?) | ? | – // – |
| TC007 | – // – | B, A, E | 40S, 60S | DC, PET | T | ? | – // – |
| NB74 | – // – | B? E | 40S | DC | E, T | ? | – // – |
| NB124 | – // – | B? E | 40S | DC? | E, T | ? | – // – |
| NB156 | – // –, NB74 derivative | B?, E | 40S | DC | E, T | ? | – // – |
| NB157 | – // –, NB124 derivative | B?, E | 40S | DC | E, T | ? | – // – |
| Neamine | 2-DOS aminoglycoside, 4-monosubstituted | B, E | 60S? | DC | E, T | dis? | – // – |
| Apramycin | – // – | B, E | 40S? | DC | E | ? | – // – ? |
| Negamycin | negamycin group | B, A, E | 40S | ? | T | stab | – // – |
| 3-Epi-deoxynegamycin | – // – | E | ? | ? | T | ? | – // – ? |
| TCP-1109 | – // – | E | 40S | T | ? | – // – | |
| Ataluren/PTC124 | oxadiazoles | E | 60S? | A? | T? | ? | – // – ? |
| Amlexanox | benzopyrans | E | ? | T | – // – | ||
| RTC204 | E | ? | ? | T | ? | – // – | |
| RTC219 | E | ? | ? | T | ? | – // – | |
| GJ071 | E | ? | ? | T | ? | – // – | |
| GJ072 | E | ? | ? | T | ? | – // – | |
| GJ103 | E | ? | ? | T | ? | – // – | |
| RTC13 | thiazolidinone group | E | 40S? | ? | T | ? | – // – |
| RTC14 | – // – | E | ? | ? | T | ? | – // – |
| BZ6 | – // – | E | ? | ? | T | ? | – // – |
| BZ16 | – // – | E | ? | ? | T | ? | – // – |
| CDX5-1 | phthalimide | ? | ? | ? | ? | ? | enhances induction of stop-codon readthrough by aminoglycosides |
| RP 49532A/girodazole/girolline | A, E | 60S | E-site | T | ? | inhibits peptide release | |
| Sanguinamide B | cyclic peptide | B, A, E | 40S, 60S | uS17, uL3, uL30, other | ? | ? | ? |
| Daptomycin | cyclic lipopeptide | B, A?, E | 40S | eS19 | ? | ? | ? |
| QL-XII-47/QL47 | QL47 group | E | ? | ? | E? | ? | ? |
| YKL-04-085 | – // – | E | ? | ? | E? | ? | ? |
| Mefloquine | quinoline | E* | 60S | GAC | E | ? | impedes accommodation of eEF1A, eEF2 (eIF5B?) |
| Edeine A | B, A, E | 40S | E-site | I | ? | affects binding or accommodation of Met-tRNAi | |
| MDMP | E | 40S? 60S? | ? | I | dis | prevents 60S joining | |
| eIFsixty-4 | E | 60S | ? | I | dis | precludes eIF6 binding to 60S |
Notes: # B, bacteria; A, archaea; E, eukaryotes. * Denotes a narrower group of organisms (for example, fungi or protozoa).
## PTC (A), A-site of the PTC; PTC (P), P-site of the PTC; other abbreviation as in the main text.
### I, initiation; E, elongation; T, termination; R, recycling.
#### stab, stabilizes polysomes; dis, disassembles polysomes, stab/dis, stabilizes or disassembles polysomes depending on the concentration or other conditions.
“?” means “presumably” (by analogy with a chemically similar compound, based on the information from other organisms or on controversial data); brackets, phenomenon is less pronounced than in other cases; HC, at high concentration.
Inhibitors of translation factors and ARSases
| Name | Class, group of chemical substances | Specificity (B, A, E) | Target | Stage of the translation cycle | Mechanism of action |
|---|---|---|---|---|---|
| Aurintricarboxylic acid | triphenylmethane | B, A, E | 40S? tRNA? mRNA? | I (E) | inhibits eIF2-GTP-Met-tRNAi complex formation (HC inhibits mRNA and tRNA binding to the ribosome) |
| Pyrocatechol violet | – // – | B? A? E | – // – | I (E) | – // – |
| Gallin | xanthene-like, gallin/fluorescein analog | B? A? E | – // – | I (E) | – // – |
| Gallein | – // – | E? | – // – | I? | – // – |
| NSC 119893 | – // – | E? | eIF2-GTP-Met-tRNAi? | I | inhibits eIF2-GTP-Met-tRNAi complex formation |
| NSC 119889 | – // – | E? | – // – | I | – // – |
| Showdomycin | uridine analog | B, A, E | eIF2, eEF2? | I, E | – // –, eEF2 inhibitor? |
| Didemnin B | cyclic peptide | E | eEF1A | E | prevents eEF1A-GDP dissociation from the ribosome |
| Aplidine/plitidipsin/dehydrodidemnin B | – // – | E | eEF1A | E | – // – |
| Nannocystin A | – // – | E | eEF1A | E | – // – |
| Cytotrienin A | – // – | E | eEF1A | E | – // – |
| Tamandarin A | – // – | E | eEF1A | E | – // – |
| Ansatrienin A/mycotrienin I | cyclic peptide, ansamycin | E | eEF1A | E | – // – |
| Trienomycin A | – // – | E | eEF1A? | E | – // – |
| Monoenomycin | – // – | ? | eEF1A? | E? | – // – |
| Trienomycin J | – // – | ? | eEF1A? | E? | – // – |
| Trierixin | – // – | E | eEF1A? | E | – // – |
| Quinotrierixin | – // – | E | eEF1A? | E | – // – |
| Ternatin | diterpene alkaloid | E | eEF1A | E | – // – |
| Tosylphenylalanylchloromethane | chloromethyl ketone | B, A, E? | eEF1A? | E | – // – |
| Bouvardin | cyclic peptide, bouvardin group | E | eEF2 | E | prevents eEF2 GDP dissociation from the ribosome |
| SVC112 | – // – | E | eEF2? | – // – | |
| RA-VII | – // – | E | eEF2? | E | – // – |
| DDD107498 | quinoline derivative | E* | eEF2 | E | – // – |
| Sordarin | cyclic diterpene glycoside, sordarin analog | E* | eEF2 | E | – // – |
| GM193663 | – // – | E* | eEF2 | E | – // – |
| GR135402 | – // – | E* | eEF2 | E | – // – |
| Moriniafungin | – // – | E* | eEF2 | E | – // – |
| DAO/dihydroarmillylorsellinate | polyketide, sesquiterpene | E | eEF2 | – // – | |
| Arnamial | – // – | E | eEF2 | – // – | |
| Fusidic acid | steroid | BA(E) | (eEF2) | E | – // – ? (HC) |
| Allolaurinterol | sesquiterpene | E | eIF4A | I | inhibits eIF4A ATPase activity |
| Elisabatin A | – // – | E | eIF4A | I | – // – |
| Rocaglamide A/Roc A | rocaglate | E | eIF4A | I | inhibits eIF4A helicase activity and eIF4F binding to mRNA |
| Silvestrol | – // – | E | eIF4A | I | inhibits eIF4A helicase activity |
| Pateamine A | macrodiolide | E | eIF4A | I | impedes eIF4A binding to eIF4G |
| Hippuristanol | steroid | E | eIF4A | I | allosteric inhibitor of eIF4A |
| Ribavirin | m7G analog | E | eIF4E? | I | competes with m7G-cap for eIF4E binding? |
| 4EGI-1 | E | eIF4E-eIF4G | I | impedes eIF4E binding to eIF4G | |
| 4E1RCat | E | eIF4E-eIF4G | I | – // – | |
| 4E2RCat | E | eIF4E-eIF4G | I | – // – | |
| Gephyronic acid | polyketide | E | (eIF2) | I | binds to eIF2 and affects its activity? |
| CM16 | beta-carboline | E | eIF1AX, eIF3 | I | inhibits eIF1AX and eIF3? |
| Ochratoxin A | isocoumarin | B, A, E | Phe-tRNA synthetase | E | inhibits Phe-tRNA synthetase |
| Borrelidin | polyketide | B, A, E | Thr-tRNA synthetase | E | inhibits Thr-tRNA synthetase |
| Reveromycin A | – // – | E | Ile-tRNA synthetase | E | inhibits Ile-tRNA synthetase |
| Spirofungin A | – // – | E | – // – | E | – // – |
| Furanomycin | Ile analog | B? A? E | – // – | – // – | |
| Methionine sulfamide | Met analog | B, A, E | Met-tRNA synthetase | E | inhibits Met-tRNA synthetase |
| Methionyl adenylate | – // – | B, A, E | – // – | E | – // – |
| Methionine hydroxamate 20 | – // – | B, A, E | – // – | E | – // – |
| Ethionine | – // – | B, A, E | – // – | I, E | – // – |
| Tavaborole/AN2690 | oxaborol | E | Leu-tRNA synthetase | E | inhibits Leu-tRNA synthetase |
| Histidinol | His analog | B, A, E | His-tRNA synthetase | E | inhibits His-tRNA synthetase and His biosynthesis |
| Phosmidosine | nucleoside amidophosphite | E | Pro-tRNA synthetase? | E | inhibits Pro-tRNA synthetase |
| Febrifugine | quinazolinone alkaloid, febrifugine group | ? | – // – | E | – // – |
| Halofuginone | – // – | ? | – // – | E | – // – |
| Purpuromycin | polyketide | B, A, E | tRNA | E | binds any tRNA, prevents its aminoacylation |
| GC7 | spermidine analog | B, A, E | DHPS/eIF5A | E | inhibits hypusine synthesis necessary for eIF5A activity |
| Semapimod/CNI1493 | anilide | E | – // – | E | – // – |
| Deoxyspergualin/gusperimus | E | – // – | E | – // – | |
| DHSI-15 | E | – // – | E | – // – | |
| Ciclopirox/loprox | pyridone derivative | E | DOHH/eIF5A | E | inhibits hypusine synthesis necessary for eIF5A activity (iron chelator) |
| Deferiprone | – // – | E | – // – | E | – // – |
| Mimosine | – // – | E | – // – | E | – // – |
Note. Letter codes and designations – as in Table 1.
Inhibitors of the general signaling pathways that regulate protein biosynthesis in eukaryotic cells
| Rapamycin/sirolimus | macrolide, rapamycin group | FKBP12/mTORC1 | I (E) | allosteric mTOR inhibitor (mTORC1 only); activates 4E-BP1 and suppresses cap-dependent translation, primarily 5′-TOP mRNAs |
|---|---|---|---|---|
| Everolimus | macrolide, rapamycin group (rapalog) | – // – | I (E) | – // – |
| Temsirolimus | – // – | – // – | I (E) | – // – |
| Ridaforolimus | – // – | – // – | I (E) | – // – |
| Torin 1 | pyridinonequinoline | mTOR | I (E) | ATP-competitive mTOR inhibitor (both mTORC1 and mTORC2), activates 4E-BP1 etc. |
| Torin 2 | – // – | – // – | I (E) | – // – |
| Torkinib/PP242 | pyrazolopyrimidine | – // – | I (E) | – // – |
| Sapanisertib/MLN0128/INK128/TAK-228 | benzoxazole | – // – | I (E) | – // – |
| Vistusertib/AZD2014 | phenylpyridine, vistusertib group | – // – | I (E) | – // – |
| AZD8055 | – // – | – // – | I (E) | – // – |
| Dactolisib/NVP-BEZ235 | phenylquinoline | PI3K (mTOR) | I (E) | – // – |
| Voxtalisib/SAR245409/XL765 | pyrazolylpyridine | – // – | I (E) | – // – |
| Samotosilib/LY3023414 | imidazoquinoline | – // – | I (E) | – // – |
| Omipalisib/GSK2126458 | quinoline | – // – | I (E) | – // – |
| Wortmannin | steroid | – // – | I (E) | – // – |
| LY294002 | morpholine derivative | – // – | I (E) | – // – |
| Bimiralisib/PQR309 | pyridinamine | – // – | I (E) | – // – |
| Gedatolisib/PKI-587/PF-05212384 | benzoylpiperidine | – // – | I (E) | – // – |
| Adavosertib/MK1775 | piperazine | GCN2? | I | activates GCN2?, leads to suppression of 5′-TOP mRNA translation |
| Dabrafenib | sulfanilide | – // – | I | – // – |
| BTdCPU | N,N′-diaryl urea | HRI | I | activates HRI, induces eIF2 phosphorylation |
| CCT020312 | quinoline | PERK | I | activates PERK, induces eIF2 phosphorylation |
| MK-28 | methylaminopentanamide | – // – | I | – // – |
| Salubrinal | quinoline, salubrinal group | GADD34/PP1?, CReP/PP1? | I | inhibits eIF2-specific PP1 phosphatase complexes, induces eIF2 phosphorylation |
| Sal003 | – // – | – // – | I | – // – |
| Okadaic acid | polyketine derivative of C38-fatty acid | PP2A | I | inhibits PP2A phosphatase, induces eIF2 phosphorylation |
| ISRIB | cyclohexylacetamide | eIF2B | I | modulates eIF2B activity, prevents translation inhibition |
| Myriaporone 3/4 | polyketide, tedanolide analogue (see | eEF2K? | E | induces eEF2 phosphorylation |
| Nelfinavir/viracept | – // – | E | – // – | |
| NH125 | methylimidazolium iodide | – // – | E | – // – |
| A-484954 | pyrimidine-6-carboxamide | eEF2K | E | eEF2K inhibitor, prevents translation inhibition |
Note. For letter codes and designations, see Table 1.