Javascript must be enabled to continue!
A novel heuristic of rigid docking scores positively correlates with full-length nuclear receptor LRH-1 regulation.
View through CrossRef
The nuclear receptor Liver Receptor Homolog-1 (LRH-1, NR5A2) is a ligand-regulated transcription factor and validated drug target for several human diseases. LRH-1 activation is regulated by small molecule ligands, which bind to the ligand binding domain (LBD) within the full-length LRH-1. We recently identified 57 compounds that bind LRH-1, and unexpectedly found these compounds regulated either the isolated LBD, or the full-length LRH-1 in cells, with little overlap. Here, we correlated compound binding energy from a single rigid-body scoring function with full-length LRH-1 activity in cells. Although docking scores of the 57 hit compounds did not correlate with LRH-1 regulation in wet lab assays, a subset of the compounds had large differences in binding energy docked to the isolated LBD vs. full-length LRH-1, which we used to empirically derive a new metric of the docking scores we call "ΔΔG". Initial regressions, correlations and contingency analyses all suggest compounds with high ΔΔG values more frequently regulated LRH-1 in wet lab assays. We then docked all 57 compounds to 18 crystal structures of LRH-1 to obtain averaged ΔΔG values, which robustly and reproducibly associated with full-length LRH-1 activity in cells. Network analyses on the 18 crystal structures of LRH-1 suggest unique communication paths exist between the subsets of LRH-1 crystal structures that produced high vs. low ΔΔG values, identifying a structural relationship between ΔΔG and the position of Helix 6, a previously established regulatory helix important for LRH-1 regulation. Together, these data suggest computational docking can be used to quickly calculate ΔΔG, which positively correlated with the ability of these 57 hit compounds to regulate full-length LRH-1 in cell-based assays. We propose ΔΔG as a novel computational tool that can be applied to LRH-1 drug screens to prioritize compounds for secondary screening.Although docking scores of the 57 hit compounds did not correlate with LRH-1 regulation in wet lab assays, a subset of the compounds had large differences in binding energy docked to the isolated LBD vs. full-length LRH-1, which we used to empirically derive a new metric of the docking scores we call "ΔΔG". Initial regressions, correlations and contingency analyses all suggest compounds with high ΔΔG values more frequently regulated LRH-1 in wet lab assays. We then docked all 57 compounds to 18 crystal structures of LRH-1 to obtain averaged ΔΔG values, which robustly and reproducibly associated with full-length LRH-1 activity in cells. Network analyses on the 18 crystal structures of LRH-1 suggest unique communication paths exist between the subsets of LRH-1 crystal structures that produced high vs. low ΔΔG values, identifying a structural relationship between ΔΔG and the position of Helix 6, a previously established regulatory helix important for LRH-1 regulation. Together, these data suggest computational docking can be used to quickly calculate ΔΔG, which positively correlated with the ability of these 57 hit compounds to regulate full-length LRH-1 in cell-based assays. We propose ΔΔG as a novel computational tool that can be applied to LRH-1 drug screens to prioritize compounds for secondary screening.
Title: A novel heuristic of rigid docking scores positively correlates with full-length nuclear receptor LRH-1 regulation.
Description:
The nuclear receptor Liver Receptor Homolog-1 (LRH-1, NR5A2) is a ligand-regulated transcription factor and validated drug target for several human diseases.
LRH-1 activation is regulated by small molecule ligands, which bind to the ligand binding domain (LBD) within the full-length LRH-1.
We recently identified 57 compounds that bind LRH-1, and unexpectedly found these compounds regulated either the isolated LBD, or the full-length LRH-1 in cells, with little overlap.
Here, we correlated compound binding energy from a single rigid-body scoring function with full-length LRH-1 activity in cells.
Although docking scores of the 57 hit compounds did not correlate with LRH-1 regulation in wet lab assays, a subset of the compounds had large differences in binding energy docked to the isolated LBD vs.
full-length LRH-1, which we used to empirically derive a new metric of the docking scores we call "ΔΔG".
Initial regressions, correlations and contingency analyses all suggest compounds with high ΔΔG values more frequently regulated LRH-1 in wet lab assays.
We then docked all 57 compounds to 18 crystal structures of LRH-1 to obtain averaged ΔΔG values, which robustly and reproducibly associated with full-length LRH-1 activity in cells.
Network analyses on the 18 crystal structures of LRH-1 suggest unique communication paths exist between the subsets of LRH-1 crystal structures that produced high vs.
low ΔΔG values, identifying a structural relationship between ΔΔG and the position of Helix 6, a previously established regulatory helix important for LRH-1 regulation.
Together, these data suggest computational docking can be used to quickly calculate ΔΔG, which positively correlated with the ability of these 57 hit compounds to regulate full-length LRH-1 in cell-based assays.
We propose ΔΔG as a novel computational tool that can be applied to LRH-1 drug screens to prioritize compounds for secondary screening.
Although docking scores of the 57 hit compounds did not correlate with LRH-1 regulation in wet lab assays, a subset of the compounds had large differences in binding energy docked to the isolated LBD vs.
full-length LRH-1, which we used to empirically derive a new metric of the docking scores we call "ΔΔG".
Initial regressions, correlations and contingency analyses all suggest compounds with high ΔΔG values more frequently regulated LRH-1 in wet lab assays.
We then docked all 57 compounds to 18 crystal structures of LRH-1 to obtain averaged ΔΔG values, which robustly and reproducibly associated with full-length LRH-1 activity in cells.
Network analyses on the 18 crystal structures of LRH-1 suggest unique communication paths exist between the subsets of LRH-1 crystal structures that produced high vs.
low ΔΔG values, identifying a structural relationship between ΔΔG and the position of Helix 6, a previously established regulatory helix important for LRH-1 regulation.
Together, these data suggest computational docking can be used to quickly calculate ΔΔG, which positively correlated with the ability of these 57 hit compounds to regulate full-length LRH-1 in cell-based assays.
We propose ΔΔG as a novel computational tool that can be applied to LRH-1 drug screens to prioritize compounds for secondary screening.
Related Results
Bilirubin is a new ligand for nuclear receptor Liver Receptor Homolog-1
Bilirubin is a new ligand for nuclear receptor Liver Receptor Homolog-1
Summary
The nuclear receptor Liver Receptor Homolog-1 (LRH-1,
NR5A2
) binds to phospholipids that regulate im...
Uniting features from strongly activating small molecules to develop chimeric LRH‐1 agonist
Uniting features from strongly activating small molecules to develop chimeric LRH‐1 agonist
Nuclear receptors are transcription factors that respond to external lipophilic signaling molecules to alter target gene expression. Liver receptor homolog‐1 (LRH‐1) is a nuclear r...
Nuclear Weapons, Cyber Warfare, and Cyber Security: Ethical and Anticipated Ethical Issues
Nuclear Weapons, Cyber Warfare, and Cyber Security: Ethical and Anticipated Ethical Issues
In this paper, we discuss the interrelationship of nuclear weapons, cyber warfare, and cyber security. Some of the most significant cyber threats to nuclear stability are now ...
DTMol: Pocket-based Molecular Docking using Diffusion Transformers
DTMol: Pocket-based Molecular Docking using Diffusion Transformers
Abstract
In computational chemistry, molecular docking—predicting the binding structure of a small molecule ligand to a protein—is vital for understanding interacti...
INCIDENCE OF POST DURAL PUNCTURE HEADACHE: A COMPARATIVE ANALYSIS BETWEEN MEDIAN VERSUS PARAMEDIAN APPROACH TO SUB-ARACHNOID SPACE IN PATIENTS UNDERGOING ELECTIVE CESAREAN SECTION
INCIDENCE OF POST DURAL PUNCTURE HEADACHE: A COMPARATIVE ANALYSIS BETWEEN MEDIAN VERSUS PARAMEDIAN APPROACH TO SUB-ARACHNOID SPACE IN PATIENTS UNDERGOING ELECTIVE CESAREAN SECTION
Background: Post dural puncture headache is the common complication after spinal anesthesia due to puncture of dura matter. This complication is frequent in Obstetric patients who ...
Consensus Docking in Drug Discovery
Consensus Docking in Drug Discovery
Background:
Molecular docking is probably the most popular and profitable approach in
computer-aided drug design, being the staple technique for predicting the binding mode of bioa...
Comparison of cervical cancer outcomes following open and laparoscopic surgery performed by experienced surgeons: a retrospective study
Comparison of cervical cancer outcomes following open and laparoscopic surgery performed by experienced surgeons: a retrospective study
Objective: Compare the outcomes associated with laparoscopic radical
hysterectomy (LRH) and abdominal radical hysterectomy (ARH) for cervical
cancer. Design: Retrospective, multice...
Phosphatidylcholines as regulators of glucose and lipid homeostasis: Promises and potential risks
Phosphatidylcholines as regulators of glucose and lipid homeostasis: Promises and potential risks
Abstract
Nuclear hormone receptors regulate diverse metabolic pathways and the orphan nuclear receptor LRH-1 (also known as NR5A2) reg...

