Binding mode of Pyridoclax to myeloid cell leukemia-1 (Mcl-1) revealed by nuclear magnetic resonance spectroscopy, docking and molecular dynamics approaches.
Asma Bourafai-AziezMuriel SebbanM BenabderrahmaneB MarekhaC DenisH PaysantL B WeiswaldLudovic CarlierR BureauG CoadouD RavaultAnne-Sophie Voisin-ChiretJana Sopkova-de Oliveira SantosHassan OulyadiPublished in: Journal of biomolecular structure & dynamics (2019)
Myeloid cell leukemia-1 (Mcl-1) is an anti-apoptotic member of the Bcl-2 family proteins. Its amplification is one of the most frequent genetic aberrations found in human cancers. Pyridoclax, a promising BH3 mimetic inhibitor, interacts directly with Mcl-1 and induces massive apoptosis at a concentration of 15 µM in combination with anti-Bcl-xL strategies in chemo-resistant ovarian cancer cell lines. In this study, a combined experimental and theoretical approach was used to investigate the binding mode of Pyridoclax to Mcl-1. The representative poses generated from dynamics simulations compared with NMR data revealed: (i) Pyridoclax bound to P1 and P2 pockets of Mcl-1 BH3 binding groove through its styryl and methyl groups establishing mainly hydrophobic contacts, (ii) one of the ending pyridines interacts through electrostatic interaction with K234 side chain, a negatively charged residue present only in this position in Mcl-1. Communicated by Ramaswamy H. Sarma.
Keyphrases
- molecular dynamics
- acute myeloid leukemia
- bone marrow
- single cell
- binding protein
- density functional theory
- cell death
- cell therapy
- endothelial cells
- dendritic cells
- oxidative stress
- magnetic resonance
- photodynamic therapy
- molecular dynamics simulations
- squamous cell carcinoma
- big data
- stem cells
- gene expression
- cross sectional
- mesenchymal stem cells
- cancer therapy
- endoplasmic reticulum stress
- radiation therapy
- genome wide
- mass spectrometry
- signaling pathway
- dna methylation
- cell cycle arrest
- small molecule
- anti inflammatory
- amino acid
- pluripotent stem cells
- deep learning