Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

JEDi: java essential dynamics inspector — a molecular trajectory analysis toolkit

View through CrossRef
Abstract Background Principal component analysis (PCA) is commonly applied to the atomic trajectories of biopolymers to extract essential dynamics that describe biologically relevant motions. Although application of PCA is straightforward, specialized software to facilitate workflows and analysis of molecular dynamics simulation data to fully harness the power of PCA is lacking. The Java Essential Dynamics inspector (JEDi) software is a major upgrade from the previous JED software. Results Employing multi-threading, JEDi features a user-friendly interface to control rapid workflows for interrogating conformational motions of biopolymers at various spatial resolutions and within subregions, including multiple chain proteins. JEDi has options for Cartesian-based coordinates (cPCA) and internal distance pair coordinates (dpPCA) to construct covariance (Q), correlation (R), and partial correlation (P) matrices. Shrinkage and outlier thresholding are implemented for the accurate estimation of covariance. The effect of rare events is quantified using outlier and inlier filters. Applying sparsity thresholds in statistical models identifies latent correlated motions. Within a hierarchical approach, small-scale atomic motion is first calculated with a separate local cPCA calculation per residue to obtain eigenresidues. Then PCA on the eigenresidues yields rapid and accurate description of large-scale motions. Local cPCA on all residue pairs creates a map of all residue-residue dynamical couplings. Additionally, kernel PCA is implemented. JEDi output gives high quality PNG images by default, with options for text files that include aligned coordinates, several metrics that quantify mobility, PCA modes with their eigenvalues, and displacement vector projections onto the top principal modes. JEDi provides PyMol scripts together with PDB files to visualize individual cPCA modes and the essential dynamics occurring within user-selected time scales. Subspace comparisons performed on the most relevant eigenvectors using several statistical metrics quantify similarity/overlap of high dimensional vector spaces. Free energy landscapes are available for both cPCA and dpPCA. Conclusion JEDi is a convenient toolkit that applies best practices in multivariate statistics for comparative studies on the essential dynamics of similar biopolymers. JEDi helps identify functional mechanisms through many integrated tools and visual aids for inspecting and quantifying similarity/differences in mobility and dynamic correlations.
Title: JEDi: java essential dynamics inspector — a molecular trajectory analysis toolkit
Description:
Abstract Background Principal component analysis (PCA) is commonly applied to the atomic trajectories of biopolymers to extract essential dynamics that describe biologically relevant motions.
Although application of PCA is straightforward, specialized software to facilitate workflows and analysis of molecular dynamics simulation data to fully harness the power of PCA is lacking.
The Java Essential Dynamics inspector (JEDi) software is a major upgrade from the previous JED software.
Results Employing multi-threading, JEDi features a user-friendly interface to control rapid workflows for interrogating conformational motions of biopolymers at various spatial resolutions and within subregions, including multiple chain proteins.
JEDi has options for Cartesian-based coordinates (cPCA) and internal distance pair coordinates (dpPCA) to construct covariance (Q), correlation (R), and partial correlation (P) matrices.
Shrinkage and outlier thresholding are implemented for the accurate estimation of covariance.
The effect of rare events is quantified using outlier and inlier filters.
Applying sparsity thresholds in statistical models identifies latent correlated motions.
Within a hierarchical approach, small-scale atomic motion is first calculated with a separate local cPCA calculation per residue to obtain eigenresidues.
Then PCA on the eigenresidues yields rapid and accurate description of large-scale motions.
Local cPCA on all residue pairs creates a map of all residue-residue dynamical couplings.
Additionally, kernel PCA is implemented.
JEDi output gives high quality PNG images by default, with options for text files that include aligned coordinates, several metrics that quantify mobility, PCA modes with their eigenvalues, and displacement vector projections onto the top principal modes.
JEDi provides PyMol scripts together with PDB files to visualize individual cPCA modes and the essential dynamics occurring within user-selected time scales.
Subspace comparisons performed on the most relevant eigenvectors using several statistical metrics quantify similarity/overlap of high dimensional vector spaces.
Free energy landscapes are available for both cPCA and dpPCA.
Conclusion JEDi is a convenient toolkit that applies best practices in multivariate statistics for comparative studies on the essential dynamics of similar biopolymers.
JEDi helps identify functional mechanisms through many integrated tools and visual aids for inspecting and quantifying similarity/differences in mobility and dynamic correlations.

Related Results

Numerical simulation of Juno JEDI's response to high energy electrons and protons at Jupiter
Numerical simulation of Juno JEDI's response to high energy electrons and protons at Jupiter
<p>The Jupiter Energetic Particle Detector Instrument (JEDI) on the Juno mission detects energetic electrons from the tens of keV to almost 1 MeV and energetic ions f...
JAWABAN UTS_PRAKTEK BORLAND DELHPI_RENI ALFIANI_155100063
JAWABAN UTS_PRAKTEK BORLAND DELHPI_RENI ALFIANI_155100063
Pertanyaan Type A : Paparkan dan jelaskan logo anda.Jawaban : Di dalam logo diatas berikut saya jelaskan makna yang terkandung di dalam nya logo di atas memiliki 3 warna pink ,mer...
The Europlanet Evaluation Toolkit
The Europlanet Evaluation Toolkit
Evaluation can provide essential information in understanding the effectiveness and accessibility of outreach activities in engaging diverse communities. In this presentation, we w...
The Europlanet Evaluation Toolkit
The Europlanet Evaluation Toolkit
<div> <p>In this presentation, we will give an overview of the Europlanet Evaluation Toolkit, a resource that aims to empower outreach providers and edu...
Enhancing Sepsis Prevention in Long-Term Care Facilities: Development of an Infection Prevention Sepsis Toolkit
Enhancing Sepsis Prevention in Long-Term Care Facilities: Development of an Infection Prevention Sepsis Toolkit
Objectives: The purpose of this Doctor of Nursing Practice (DNP) project was to create, validate, and refine an Evidence-Based Sepsis Prevention Toolkit to enhanced early sepsis re...
Response to Toshihide Tsuda, Yumiko Miyano and Eiji Yamamoto [1]
Response to Toshihide Tsuda, Yumiko Miyano and Eiji Yamamoto [1]
Abstract Background In August 2021, we published in Environmental Health a Toolkit for detecting misused epidemiological methods with the goal of pr...
A Trajectory Similarity Computation Method based on GAT-based Transformer and CNN model
A Trajectory Similarity Computation Method based on GAT-based Transformer and CNN model
Trajectory similarity computation is very important for trajectory data mining. It is applied into many trajectory mining tasks, including trajectory clustering, trajectory classif...
Control-Oriented Real-Time Trajectory Planning for Heterogeneous UAV Formations
Control-Oriented Real-Time Trajectory Planning for Heterogeneous UAV Formations
Aiming at the trajectory planning problem for heterogeneous UAV formations in complex environments, a trajectory prediction model combining Convolutional Neural Networks (CNNs) and...

Back to Top