Category Ranking

98%

Total Visits

921

Avg Visit Duration

2 minutes

Citations

20

Article Abstract

Numerous clinical trials of drug candidates for Alzheimer's disease (AD) have failed, and computational drug repositioning approaches using omics data have been proposed as effective alternative approaches to the discovery of drug candidates. However, little multi-omics data is available for AD, due to limited availability of brain tissues. Even if omics data exist, systematic drug repurposing study for AD has suffered from lack of big data, insufficient clinical information, and difficulty in data integration on account of sample heterogeneity derived from poor diagnosis or shortage of qualified post-mortem tissue. In this study, we developed a proteotranscriptomic-based computational drug repositioning method named Drug Repositioning Perturbation Score/Class (DRPS/C) based on inverse associations between disease- and drug-induced gene and protein perturbation patterns, incorporating pharmacogenomic knowledge. We constructed a Drug-induced Gene Perturbation Signature Database (DGPSD) comprised of 61,019 gene signatures perturbed by 1,520 drugs from the Connectivity Map (CMap) and the L1000 CMap. Drugs were classified into three DRPCs (High, Intermediate, and Low) according to DRPSs that were calculated using drug- and disease-induced gene perturbation signatures from DGPSD and The Cancer Genome Atlas (TCGA), respectively. The DRPS/C method was evaluated using the area under the ROC curve, with a prescribed drug list from TCGA as the gold standard. Glioblastoma had the highest AUC. To predict anti-AD drugs, DRPS were calculated using DGPSD and AD-induced gene/protein perturbation signatures generated from RNA-seq, microarray and proteomic datasets in the Synapse database, and the drugs were classified into DRPCs. We predicted 31 potential anti-AD drug candidates commonly belonged to high DRPCs of transcriptomic and proteomic signatures. Of these, four drugs classified into the nervous system group of Anatomical Therapeutic Chemical (ATC) system are voltage-gated sodium channel blockers (bupivacaine, topiramate) and monamine oxidase inhibitors (selegiline, iproniazid), and their mechanism of action was inferred from a potential anti-AD drug perspective. Our approach suggests a shortcut to discover new efficacy of drugs for AD.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC7000455PMC
http://dx.doi.org/10.3389/fphar.2019.01653DOI Listing

Publication Analysis

Top Keywords

drug candidates
12
drug repositioning
12
drugs classified
12
drug
9
proteotranscriptomic-based computational
8
alzheimer's disease
8
computational drug
8
omics data
8
drug-induced gene
8
gene perturbation
8

Similar Publications

Venetoclax-induced degradation of VP8* lectin domain disrupts group A rotavirus replication.

Int J Biol Macromol

September 2025

Key Laboratory of Animal Vaccine Development, Ministry of Agriculture and Rural Affairs, College of Veterinary Medicine, South China Agricultural University, Guangzhou, 510642, China. Electronic address:

Group A Rotavirus (RVA) poses a significant health risk. Unfortunately, there are currently no the Food and Drug Administration (FDA) approved antiviral compounds available for treating RVA-induced diarrhea. The lectin-like domain of VP8* plays an important role in the RVA lifecycle.

View Article and Find Full Text PDF

Identification of poor prognostic factors using circulating extracellular vesicles in durvalumab consolidation therapy for locally advanced non-small cell lung cancer.

Lung Cancer

September 2025

Division of Respiratory Diseases, Department of Internal Medicine, The Jikei University School of Medicine, 3-25-8 Nishi-Shimbashi, Minato-ku, Tokyo, Japan; Division of Next-Generation Drug Development Research, Research Center for Medical Sciences, The Jikei University School of Medicine, 3-25-8 Ni

Background: The risk factors associated with treatment resistance to consolidation durvalumab following chemoradiotherapy (CRT) for locally advanced non-small cell lung cancer (NSCLC) have not been well established.

Methods: Extracellular vesicles (EVs) were isolated from the pretreatment serum of 73 patients treated with consolidation durvalumab. Isolation was performed using CD9/CD63 antibodies, and EV proteins were identified using liquid chromatography-tandem mass spectrometry (LC-MS).

View Article and Find Full Text PDF

Among the different types of HIV-1 maturation inhibitors, those that stabilize the junction between the capsid protein C-terminal domain (CA) and the spacer peptide 1 (SP1) within the immature Gag lattice are promising candidates for antiretroviral therapies. Here, we report the atomic-resolution structure of CA-SP1 assemblies with the small-molecule maturation inhibitor PF-46396 and the assembly cofactor inositol hexakisphosphate (IP6), determined by magic angle spinning (MAS) NMR spectroscopy. Our results reveal that although the two PF-46396 enantiomers exhibit distinct binding modes, they both possess similar anti-HIV potency.

View Article and Find Full Text PDF

Objective: This study employs integrated network toxicology and molecular docking to investigate the molecular basis underlying 4-nonylphenol (4-NP)-mediated enhancement of breast cancer susceptibility.

Methods: We integrated data from multiple databases, including ChEMBL, STITCH, Swiss Target Prediction, GeneCards, OMIM and TTD. Core compound-disease-associated target genes were identified through Protein-Protein Interaction (PPI) network analysis.

View Article and Find Full Text PDF