Javascript must be enabled to continue!
Study on the active ingredients of Shenghui decoction inhibiting acetylcholinesterase based on molecular docking and molecular dynamics simulation
View through CrossRef
We aim to investigate the mechanism and effective components of Shenghui decoction (SHD), which has been shown to inhibit acetylcholinesterase (AChE) through molecular docking (MD) and molecular dynamics simulation (MDS). The effective ingredients in SHD were collected through the TCMSP database and literature review. All components were docked with AChE using CDOCKER. Receptor ligand interaction analysis was performed for the optimal ligand. Two simulation models (model I and II) containing AChE and acetylcholine (ACh) were constructed, in which model II contained the best-docked ligand. Perform 90ns MDS on 2 models. After the simulation, the distance between ACh and AChE peripheral active sites were calculated in both models. The root mean square deviation (RMSD) curve of ligand and receptor, the radius of gyration (Rog) of the receptor, the distance between ligand center and binding site center, and the binding energy of ligand and receptor were calculated in model II. 98 ingredients of SHD were collected, and the best ligand was Tumulosic acid. The residues that form conventional hydrogen bonds between AChE and Tumulosic acid include Tyr132 and Glu201. MDS revealed that ACh could bind to AChE active site in model I. In model II, ACh cannot bind to the binding cavity because the ligand occupies the active site. The RMSD of AChE and Tumulosic acid tends to be stable, the Rog curve of AChE is relatively stable, and the distance between ligand and binding cavity does not fluctuate greatly, indicating that the structure of receptor and ligand is relatively stable. The binding energy of AChE and Tumulosic acid was −24.14 ± 2.46 kcal/mol. SHD contains many effective ingredients that may inhibit AChE activity. Tumulosic acid can occupy the binding site to prevent ACh from entering the chemical domain, thus exerting AChE inhibitory effect.
Title: Study on the active ingredients of Shenghui decoction inhibiting acetylcholinesterase based on molecular docking and molecular dynamics simulation
Description:
We aim to investigate the mechanism and effective components of Shenghui decoction (SHD), which has been shown to inhibit acetylcholinesterase (AChE) through molecular docking (MD) and molecular dynamics simulation (MDS).
The effective ingredients in SHD were collected through the TCMSP database and literature review.
All components were docked with AChE using CDOCKER.
Receptor ligand interaction analysis was performed for the optimal ligand.
Two simulation models (model I and II) containing AChE and acetylcholine (ACh) were constructed, in which model II contained the best-docked ligand.
Perform 90ns MDS on 2 models.
After the simulation, the distance between ACh and AChE peripheral active sites were calculated in both models.
The root mean square deviation (RMSD) curve of ligand and receptor, the radius of gyration (Rog) of the receptor, the distance between ligand center and binding site center, and the binding energy of ligand and receptor were calculated in model II.
98 ingredients of SHD were collected, and the best ligand was Tumulosic acid.
The residues that form conventional hydrogen bonds between AChE and Tumulosic acid include Tyr132 and Glu201.
MDS revealed that ACh could bind to AChE active site in model I.
In model II, ACh cannot bind to the binding cavity because the ligand occupies the active site.
The RMSD of AChE and Tumulosic acid tends to be stable, the Rog curve of AChE is relatively stable, and the distance between ligand and binding cavity does not fluctuate greatly, indicating that the structure of receptor and ligand is relatively stable.
The binding energy of AChE and Tumulosic acid was −24.
14 ± 2.
46 kcal/mol.
SHD contains many effective ingredients that may inhibit AChE activity.
Tumulosic acid can occupy the binding site to prevent ACh from entering the chemical domain, thus exerting AChE inhibitory effect.
Related Results
GW24-e2123 Effect of Sini Decoction on the expression of Sirt-1 and eNOS system in EAhy926 cells injured by homocysteine
GW24-e2123 Effect of Sini Decoction on the expression of Sirt-1 and eNOS system in EAhy926 cells injured by homocysteine
Objectives
To detect the effect of Sini Decoction on the expression of Sirt-1 and eNOS in EAhy926 cell injured by homocysteine.
...
Winyanghuayin Decoction and Xiaoqinglong Decoction Treatment Airway Inflammation of Cold Asthma Through PI3K-mTOR Signal Pathway
Winyanghuayin Decoction and Xiaoqinglong Decoction Treatment Airway Inflammation of Cold Asthma Through PI3K-mTOR Signal Pathway
Abstract
Background: Airway inflammation plays a pivotal role in cold asthma. Winyanghuayin decoction and Xiaoqinglong decoction can significantly improve airway inflammati...
EFFECT OF SINI DECOCTION ON THE EXPRESSION OF CAVEOLIN-1 AND ENOS IN EAHY926 CELL INJURED BY HOMOCYSTEINE
EFFECT OF SINI DECOCTION ON THE EXPRESSION OF CAVEOLIN-1 AND ENOS IN EAHY926 CELL INJURED BY HOMOCYSTEINE
Objectives
To detect the effect of Sini Decoction on the expression of Caveolin-1 and eNOS in EAhy926 cell injured by homocysteine.
...
Whole-Transcriptome Sequencing Analysis Reveal Mechanisms of Yiqi Huoxue Yangyin (YHY) Decoction in Ameliorating D-gal-induced Cardiac Aging
Whole-Transcriptome Sequencing Analysis Reveal Mechanisms of Yiqi Huoxue Yangyin (YHY) Decoction in Ameliorating D-gal-induced Cardiac Aging
Abstract
Background
Aging is a major factor for cardiovascular disease, and cardiac aging is closely related to the incidence of cardiovascular disease. Clarifying the mec...
WITHDRAWN: Elucidating the Mechanisms of Action of Lianhua Qingwen decoction for the Treatment of COVID-19 via Systems Pharmacology Approaches
WITHDRAWN: Elucidating the Mechanisms of Action of Lianhua Qingwen decoction for the Treatment of COVID-19 via Systems Pharmacology Approaches
Abstract
Due to the severity of the COVID-19 epidemic, to identify a proper treatment for COVID-19 is of great significance. Traditional Chinese Medicine (TCM) has shown it...
Docking mechanism design and dynamic analysis for the GEO tumbling satellite
Docking mechanism design and dynamic analysis for the GEO tumbling satellite
Purpose
According to the requirements of servicing and deorbiting the failure satellites, especially the tumbling ones on geosynchronous orbit, this paper aims to...
Network Pharmacology-Based Approach to Investigate the Mechanisms of Piwei-Peiyuan Decoction in the Treatment of Gastric Carcinoma
Network Pharmacology-Based Approach to Investigate the Mechanisms of Piwei-Peiyuan Decoction in the Treatment of Gastric Carcinoma
Abstract
Purpose
Piwei-Peiyuan Decoction is a traditional Chinese medicine decoction, which has shown promising treatment in gastric carcinoma. However, the molecular mech...
Xiaoyan Decoction’s Intervention on WISP2/CCN5 gene Knockdown Breast Cancer Transplanted Tumor Growth
Xiaoyan Decoction’s Intervention on WISP2/CCN5 gene Knockdown Breast Cancer Transplanted Tumor Growth
Abstract
Xiaoyan decoction, as a classical traditional Chinese medicine (TCM) formula, has been widely used for decades of years due to its safety and efficiency in tumor t...

