| Literature DB >> 26824420 |
Tao Xie1, Lan Zhang1, Shouyue Zhang1, Liang Ouyang1, Haoyang Cai2, Bo Liu1.
Abstract
Autophagy (macroautophagy) is well known as an evolutionarily conserved lysosomal degradation process for long-lived proteins and damaged organelles. Recently, accumulating evidence has revealed a series of small-molecule compounds that may activate or inhibit autophagy for therapeutic potential on human diseases. However, targeting autophagy for drug discovery still remains in its infancy. In this study, we developed a webserver called Autophagic Compound-Target Prediction (ACTP) (http://actp.liu-lab.com/) that could predict autophagic targets and relevant pathways for a given compound. The flexible docking of submitted small-molecule compound (s) to potential autophagic targets could be performed by backend reverse docking. The webpage would return structure-based scores and relevant pathways for each predicted target. Thus, these results provide a basis for the rapid prediction of potential targets/pathways of possible autophagy-activating or autophagy-inhibiting compounds without labor-intensive experiments. Moreover, ACTP will be helpful to shed light on identifying more novel autophagy-activating or autophagy-inhibiting compounds for future therapeutic implications.Entities:
Keywords: autophagic compound-target prediction (ACTP); autophagy (macroautophagy); autophagy-activating compound; autophagy-inhibiting compound; webserver
Mesh:
Substances:
Year: 2016 PMID: 26824420 PMCID: PMC4891100 DOI: 10.18632/oncotarget.7015
Source DB: PubMed Journal: Oncotarget ISSN: 1949-2553
Structure-based autophagic targets (Reviewed)
| Uniprot ID | Uniprot Accession | Number of PDBs | Target type | Uniprot ID | Uniprot Accession | Number of PDBs | Target type |
|---|---|---|---|---|---|---|---|
| P53_HUMAN | P04637 | 74 | antigen | 5HT2B_HUMAN | P41595 | 2 | receptor |
| DRA_HUMAN | P01903 | 55 | antigen | NR1D1_HUMAN | P20393 | 5 | receptor |
| 2B11_HUMAN | P04229 | 34 | antigen | B2CL1_HUMAN | Q07817 | 38 | protein binding |
| 2B14_HUMAN | P13760 | 9 | antigen | RGS19_HUMAN | P49795 | 1 | others |
| DRB5_HUMAN | Q30154 | 4 | antigen | BAD_HUMAN | Q92934 | 1 | protein binding |
| ITB4_HUMAN | P16144 | 8 | antigen | BCL2_HUMAN | P10415 | 11 | protein binding |
| DRB3_HUMAN | P79483 | 3 | antigen | TAU_HUMAN | P10636 | 6 | protein binding |
| DPB1_HUMAN | P04440 | 3 | antigen | S100A9_HUMAN | P06702 | 3 | others |
| DPA1_HUMAN | P20036 | 3 | antigen | PARK7_HUMAN | Q99497 | 26 | others |
| PRKN2_HUMAN | O60260 | 4 | enzyme | S100A8_HUMAN | P05109 | 3 | others |
| SIR2_HUMAN | Q8IXJ6 | 5 | enzyme | SQSTM_HUMAN | Q13501 | 5 | protein binding |
| CATD_HUMAN | P07339 | 4 | enzyme | MLP3B_HUMAN | Q9GZQ8 | 6 | others |
| ATG4B_HUMAN | Q9Y4P1 | 4 | enzyme | PA1B2_HUMAN | P68402 | 1 | others |
| ATG4A_HUMAN | Q8WYN0 | 2 | enzyme | NBR1_HUMAN | Q14596 | 8 | others |
| UBP13_HUMAN | Q92995 | 2 | enzyme | GOPC_HUMAN | Q9HD26 | 8 | others |
| HDAC6_HUMAN | Q9UBN7 | 3 | enzyme | SPT5H_HUMAN | O00267 | 5 | protein binding |
| TIGAR_HUMAN | Q9NQ88 | 1 | enzyme | MT3_HUMAN | P25713 | 2 | others |
| SIR1_HUMAN | Q96EB6 | 4 | enzyme | RAB1A_HUMAN | P62820 | 8 | nucleotide binding |
| ATG3_HUMAN | Q9NT62 | 1 | enzyme | BNIP3_HUMAN | Q12983 | 2 | protein binding |
| HERC1_HUMAN | Q15751 | 2 | enzyme | PSN1_HUMAN | P49768 | 1 | protein binding |
| EPM2A_HUMAN | O95278 | 2 | enzyme | GBRL1_HUMAN | Q9H0R8 | 2 | tubulin binding |
| MK14_HUMAN | Q16539 | 103 | kinase | GATA4_HUMAN | P43694 | 1 | transcription factor binding |
| AKT1_HUMAN | P31749 | 13 | kinase | IF16_HUMAN | Q16666 | 4 | others |
| CDK5_HUMAN | Q00535 | 5 | kinase | BECN1_HUMAN | Q14457 | 5 | others |
| DAPK1_HUMAN | P53355 | 21 | kinase | TBC14_HUMAN | Q9P2M4 | 1 | others |
| KPYM_HUMAN | P14618 | 16 | kinase | FOXO1_HUMAN | Q12778 | 2 | others |
| MK08_HUMAN | P45983 | 20 | kinase | MLP3A_HUMAN | Q9H492 | 2 | others |
| DAPK2_HUMAN | Q9UIK4 | 7 | kinase | ACBD5_HUMAN | Q5T8D3 | 1 | others |
| DAPK3_HUMAN | O43293 | 4 | kinase | CISD2_HUMAN | Q8N5K1 | 2 | others |
| ABL2_HUMAN | P42684 | 7 | kinase | NPC1_HUMAN | O15118 | 1 | others |
| AAKB2_HUMAN | O43741 | 8 | kinase | ZC12A_HUMAN | Q5D1E8 | 1 | ion binding |
| AAPK2_HUMAN | P54646 | 5 | kinase | MLP3C_HUMAN | Q9BXW4 | 2 | others |
| PIM2_HUMAN | Q9P1W9 | 2 | kinase | ATG13_HUMAN | O75143 | 1 | others |
| AAKG1_HUMAN | P54619 | 3 | kinase | WDFY3_HUMAN | Q8IZQ1 | 1 | others |
| STK11_HUMAN | Q15831 | 1 | kinase | GBRL2_HUMAN | P60520 | 1 | protein binding |
| LRRK2_HUMAN | Q5S007 | 2 | kinase | ATG12_HUMAN | O94817 | 2 | others |
| PK3C3_HUMAN | Q8NEB9 | 5 | kinase | A16L1_HUMAN | Q676U5 | 3 | others |
| AAKB1_HUMAN | Q9Y478 | 1 | kinase | ATG5_HUMAN | Q9H1Y0 | 3 | others |
| TBK1_HUMAN | Q9UHD2 | 4 | kinase | VPS51_HUMAN | Q9UID3 | 1 | others |
| AAPK1_HUMAN | Q13131 | 1 | kinase | FBX7_HUMAN | Q9Y3I1 | 1 | others |
| ULK1_HUMAN | O75385 | 1 | kinase | LYRIC_HUMAN | Q86UE4 | 1 | transcription factor binding |
| ABL1_HUMAN | P00519 | 30 | kinase | TCPR1_HUMAN | Q7Z6L1 | 1 | others |
| MTOR_HUMAN | P42345 | 12 | kinase | STX17_HUMAN | P56962 | 1 | others |
| GBRAP_HUMAN | O95166 | 7 | receptor | VAMP8_HUMAN | Q9BV40 | 1 | others |
| OPTN_HUMAN | Q96CV9 | 3 | receptor | SNP29_HUMAN | O95721 | 1 | others |
Figure 1Molecular classification of potential autophagic targets
Herein, 86 targets with crystal structures were assigned to the following groups: peptide antigen binding, other enzymes, kinases, receptors, transcription factor binding, protein binding, nucleotide binding, tubulin binding and others. Groups are marked with different colors. The number of targets contained in each group is displayed in the pie chart.
Figure 2Predicted autophagic targets and related pathways from ACTP result page
(A) The output pages for (a) rapamycin (CAS number: 53123–88–9) and (b) LY294002 (CAS number: 154447–36–6) were displayed. The dock scoring table displayed on the page shows the top 10 possible targets according to the dock score. (B) Snapshots of (a) rapamycin docked with mTOR and (b) LY294002 docked with PI3K (the highest scored target in the result table) were also shown. (C) Users can also see the target PPI network graphically by clicking the view PPI hyperlink in the superscript of the target Uniprot AC, (a) mTOR, (b) PI3K. The PPI network is displayed by the cytoscape web plugin.
Figure 3The ACTP user interface
The simple user interface enables task submitting by inputting the compound name, CAS number, or by uploading a mol/mol2 formatted file. The pre-input example and tips help users become accustomed to the input format.