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Published on: May 9, 2025
Discovery of novel IDO1/TDO2 dual inhibitors: a consensus Virtual screening approach with molecular dynamics
Naufa Hanif1,2, Suat Sari1
1Department of Pharmaceutical Chemistry, Faculty of Pharmacy, Hacettepe University, Ankara, Turkey.
Abstract:
The pursuit of effective cancer immunotherapy drugs remains challenging, with overexpression of indoleamine 2,3-dioxygenase 1 (IDO1) and tryptophan 2,3-dioxygenase 2 (TDO2) allowing cancer cells to evade immune attacks. While several IDO1 inhibitors have undergone clinical testing, only three dual IDO1/TDO2 inhibitors have reached human trials. Hence, this study focuses on identifying novel IDO1/TDO2 dual inhibitors through consensus structure-based virtual screening (SBVS). ZINC15 natural products library was refined based on molecular descriptors, and the selected compounds were docked to the holo form IDO1 and TDO2 using two different software programs and ranked according to their consensus docking scores. The top-scoring compounds underwent in silico evaluations for pharmacokinetics, toxicity, CYP3A4 affinity, molecular dynamics (MD) simulations, and MM-GBSA binding free energy calculations. Five compounds (ZINC00000079405/10, ZINC00004028612/11, ZINC00013380497/12, ZINC00014613023/13, and ZINC00103579819/14) were identified as potential IDO1/TDO2 dual inhibitors due to their high consensus docking scores, key residue interactions with the enzymes, favorable pharmacokinetics, and avoidance of CYP3A4 binding. MD simulations of the top three hits with IDO1 indicated conformational changes and compactness, while MM-GBSA analysis revealed strong binding free energy for compounds 10 (ΔG: -20.13 kcal/mol) and 11 (ΔG: -16.22 kcal/mol). These virtual hits signify a promising initial step in identifying candidates as supplementary therapeutics to immune checkpoint inhibitors in cancer treatment. Their potential to deliver potent dual inhibition of IDO1/TDO2, along with safety and favorable pharmacokinetics, makes them compelling. Validation through in vitro and in vivo assays should be conducted to confirm their activity, selectivity, and preclinical potential as holo IDO1/TDO2 dual inhibitors.
Insights
This study identifies novel dual inhibitors for indoleamine 2,3-dioxygenase 1 (IDO1) and tryptophan 2,3-dioxygenase 2 (TDO2) using virtual screening. These compounds show promise as cancer immunotherapy drugs by overcoming immune evasion.
Area of Science:
- Biochemistry and Pharmacology
- Computational Chemistry
- Oncology
Background:
- Cancer cells evade immune responses by overexpressing indoleamine 2,3-dioxygenase 1 (IDO1) and tryptophan 2,3-dioxygenase 2 (TDO2).
- Targeting IDO1 and TDO2 is a strategy for cancer immunotherapy, but dual inhibitors are scarce, with only three reaching human trials.
- Existing IDO1 inhibitors have limitations, necessitating the search for novel dual-acting agents.
Purpose of the Study:
- To identify novel dual inhibitors of IDO1 and TDO2 using structure-based virtual screening (SBVS).
- To evaluate potential drug candidates for favorable pharmacokinetic properties and safety profiles.
- To provide lead compounds for further development as adjuncts to current cancer immunotherapies.
Main Methods:
- Utilized consensus structure-based virtual screening (SBVS) on the ZINC15 natural products library.
- Docked selected compounds to holo IDO1 and TDO2 using two distinct software programs.
- Conducted in silico evaluations including pharmacokinetics, toxicity, CYP3A4 affinity, molecular dynamics (MD) simulations, and MM-GBSA binding free energy calculations.
Main Results:
- Identified five potential IDO1/TDO2 dual inhibitors (compounds 10-14) based on high consensus docking scores and key enzyme interactions.
- Top compounds exhibited favorable pharmacokinetics, low predicted toxicity, and no significant CYP3A4 binding.
- MD simulations and MM-GBSA analysis confirmed strong binding affinities for compounds 10 and 11.
Conclusions:
- The identified virtual hits represent promising candidates for novel IDO1/TDO2 dual inhibitors in cancer treatment.
- These compounds demonstrate potential for dual inhibition, favorable safety, and pharmacokinetic profiles.
- Further in vitro and in vivo validation is required to confirm the preclinical potential of these compounds as holo IDO1/TDO2 dual inhibitors.
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