Species | Target name | Source | Bibliographic reference |
---|---|---|---|
Homo sapiens | Werner syndrome, RecQ helicase-like | Starlite/ChEMBL | References |
Homo sapiens | Bloom syndrome, RecQ helicase-like | Starlite/ChEMBL | References |
Species | Potential target | Raw | Global | Species |
---|---|---|---|---|
Schistosoma mansoni | tar DNA-binding protein | 0.0062 | 0.3248 | 1 |
Brugia malayi | TAR-binding protein | 0.0062 | 0.3248 | 0.4263 |
Loa Loa (eye worm) | cytochrome P450 family protein | 0.0029 | 0.1128 | 0.1128 |
Schistosoma mansoni | Guanine nucleotide-binding protein G(s) subunit alpha (Adenylate cyclase-stimulating G alpha protein) | 0.0045 | 0.2139 | 0.6585 |
Echinococcus multilocularis | bloom syndrome protein | 0.0055 | 0.279 | 0.8193 |
Giardia lamblia | Sgs1 DNA helicase, putative | 0.0023 | 0.0715 | 0.5 |
Schistosoma mansoni | tar DNA-binding protein | 0.0062 | 0.3248 | 1 |
Loa Loa (eye worm) | cytochrome P450 family protein | 0.0019 | 0.0477 | 0.0477 |
Loa Loa (eye worm) | hypothetical protein | 0.0023 | 0.0715 | 0.0715 |
Brugia malayi | RNA recognition motif domain containing protein | 0.0062 | 0.3248 | 0.4263 |
Trypanosoma brucei | ATP-dependent DEAD/H DNA helicase recQ, putative | 0.0029 | 0.1144 | 1 |
Leishmania major | ATP-dependent DEAD/H DNA helicase recQ, putative | 0.0029 | 0.1144 | 1 |
Loa Loa (eye worm) | hypothetical protein | 0.012 | 0.6976 | 0.6976 |
Schistosoma mansoni | tar DNA-binding protein | 0.0062 | 0.3248 | 1 |
Trypanosoma cruzi | cytochrome P450, putative | 0.0019 | 0.0477 | 0.4173 |
Loa Loa (eye worm) | TAR-binding protein | 0.0062 | 0.3248 | 0.3248 |
Schistosoma mansoni | tar DNA-binding protein | 0.0062 | 0.3248 | 1 |
Echinococcus multilocularis | guanine nucleotide binding protein G(s) subunit | 0.0045 | 0.2139 | 0.562 |
Echinococcus granulosus | guanine nucleotide binding protein Gs subunit | 0.0045 | 0.2139 | 0.562 |
Loa Loa (eye worm) | RNA binding protein | 0.0062 | 0.3248 | 0.3248 |
Brugia malayi | hypothetical protein | 0.012 | 0.6976 | 1 |
Schistosoma mansoni | Guanine nucleotide-binding protein G(s) subunit alpha (Adenylate cyclase-stimulating G alpha protein) | 0.0045 | 0.2139 | 0.6585 |
Trypanosoma cruzi | ATP-dependent DEAD/H DNA helicase recQ, putative | 0.0029 | 0.1144 | 1 |
Echinococcus granulosus | bloom syndrome protein | 0.0055 | 0.279 | 0.8193 |
Loa Loa (eye worm) | GTP-binding regulatory protein Gs alpha-S chain | 0.0045 | 0.2139 | 0.2139 |
Loa Loa (eye worm) | RecQ helicase | 0.0055 | 0.279 | 0.279 |
Toxoplasma gondii | ATP-dependent DNA helicase, RecQ family protein | 0.0037 | 0.1618 | 1 |
Echinococcus granulosus | guanine nucleotide binding protein Gs subunit | 0.0045 | 0.2139 | 0.562 |
Loa Loa (eye worm) | RNA recognition domain-containing protein domain-containing protein | 0.0062 | 0.3248 | 0.3248 |
Echinococcus granulosus | tar DNA binding protein | 0.0062 | 0.3248 | 1 |
Schistosoma mansoni | blooms syndrome DNA helicase | 0.0043 | 0.2047 | 0.6302 |
Schistosoma mansoni | tar DNA-binding protein | 0.0062 | 0.3248 | 1 |
Schistosoma mansoni | DNA helicase recq1 | 0.0023 | 0.0715 | 0.2202 |
Loa Loa (eye worm) | ATP-dependent DNA helicase | 0.0023 | 0.0715 | 0.0715 |
Echinococcus multilocularis | tar DNA binding protein | 0.0062 | 0.3248 | 1 |
Toxoplasma gondii | ATP-dependent DNA helicase, RecQ family protein | 0.0023 | 0.0715 | 0.4422 |
Brugia malayi | Cytochrome P450 family protein | 0.0029 | 0.1128 | 0.1001 |
Onchocerca volvulus | Huntingtin homolog | 0.012 | 0.6976 | 0.5 |
Mycobacterium ulcerans | cytochrome P450 185A4 Cyp185A4 | 0.0019 | 0.0477 | 0.5 |
Onchocerca volvulus | Huntingtin homolog | 0.012 | 0.6976 | 0.5 |
Schistosoma mansoni | DNA helicase recq5 | 0.0023 | 0.0715 | 0.2202 |
Toxoplasma gondii | ATP-dependent DNA helicase, RecQ family protein | 0.0023 | 0.0715 | 0.4422 |
Trichomonas vaginalis | DNA helicase recq1, putative | 0.0055 | 0.279 | 1 |
Brugia malayi | ATP-dependent DNA helicase, RecQ family protein | 0.0023 | 0.0715 | 0.0366 |
Loa Loa (eye worm) | cytochrome P450 family protein | 0.0019 | 0.0477 | 0.0477 |
Loa Loa (eye worm) | hypothetical protein | 0.012 | 0.6976 | 0.6976 |
Plasmodium vivax | ADP-dependent DNA helicase RecQ, putative | 0.0037 | 0.1646 | 0.5 |
Trichomonas vaginalis | DNA helicase recq, putative | 0.0055 | 0.279 | 1 |
Schistosoma mansoni | Guanine nucleotide-binding protein G(s) subunit alpha (Adenylate cyclase-stimulating G alpha protein) | 0.0045 | 0.2139 | 0.6585 |
Treponema pallidum | ATP-dependent DNA helicase | 0.0012 | 0.0000000006015 | 0.5 |
Echinococcus multilocularis | guanine nucleotide binding protein G(s) subunit | 0.0045 | 0.2139 | 0.562 |
Brugia malayi | Bloom's syndrome protein homolog | 0.0055 | 0.279 | 0.3559 |
Brugia malayi | GTP-binding regulatory protein Gs alpha-S chain, putative | 0.0045 | 0.2139 | 0.2556 |
Brugia malayi | ATP-dependent DNA helicase, RecQ family protein | 0.0023 | 0.0715 | 0.0366 |
Loa Loa (eye worm) | CYP4Cod1 | 0.0019 | 0.0477 | 0.0477 |
Brugia malayi | RNA binding protein | 0.0062 | 0.3248 | 0.4263 |
Trypanosoma cruzi | cytochrome P450, putative | 0.0019 | 0.0477 | 0.4173 |
Entamoeba histolytica | recQ family helicase, putative | 0.0029 | 0.1144 | 1 |
Plasmodium falciparum | ADP-dependent DNA helicase RecQ | 0.0048 | 0.2361 | 1 |
Activity type | Activity value | Assay description | Source | Reference |
---|---|---|---|---|
IC50 (binding) | = 0.3 uM | Inhibition of BLM (unknown origin) by gel-based DNA unwinding assay | ChEMBL. | 24012121 |
IC50 (binding) | = 2.2 uM | Inhibition of WRN (unknown origin) by gel-based DNA unwinding assay | ChEMBL. | 24012121 |
IC50 (binding) | > 50 uM | Inhibition of RECQ1 (unknown origin) by gel-based DNA unwinding assay | ChEMBL. | 24012121 |
Many chemical entities in TDR Targets come from high-throughput screenings with whole cells or tissue samples, and not all assayed compounds have been tested against a single a single target protein, probably because they get ruled out during screening process. Even if these compounds may have not been of interest in the original screening, they may come as interesting leads for other screening assays. Furthermore, we may be able to propose drug-target associations using chemical similarities and network patterns.
1 literature reference was collected for this gene.