Comparing Graph Representations of Protein Structure for Mining Family-Specific Residue-Based Packing Motifs
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Summary
It is found that graphs based on almost-Delaunay edges significantly reduce the number of edges in the graph representation and hence present computational advantage, yet the patterns extracted from such graphs have a biological interpretation approximately equivalent to that of those extracted from distance based graphs.
- Type
- article
- Published
- 2005-07-01
- Cited by
- 101
- References
- 46
- Access
- Open access
- OpenAlex
- https://openalex.org/W16108709
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:1166455
Keywords
Chlorine, Disinfectant, Water disinfection, Environmental science, Water treatment
References
- Finding Frequent Substructures in Chemical Compounds
- Hierarchical Protein Structure Superposition Using Both Secondary Structure and Atomic Representations
- Simplicial neighborhood analysis of protein packing (SNAPP): a computational geometry approach to studying proteins.
- trilogy: Discovery of sequence–structure patterns across diverse proteins
- Distribution of Distances and Triangles in a Point Set and Algorithms for Computing the Largest Common Point Sets
- Accurate Classification of Protein Structural Families Using Coherent Subgraph Analysis
- Recognition of spatial motifs in protein structures.
- Almost-Delaunay simplices: nearest neighbor relations for imprecise points
- PROTEIN STRUCTURE: INSIGHTS FROM GRAPH THEORY
- Almost-Delaunay simplices: Robust neighbor relations for imprecise 3D points using CGAL
- Three‐dimensional, sequence order‐independent structural comparison of a serine protease against the crystallographic database reveals active site similarities: Potential implications to evolution and to protein folding
- The interpretation of protein structures: total volume, group volume distributions and packing density.
- Geometric matching under noise: combinatorial bounds and algorithms
- Identification of tertiary structure resemblance in proteins using a maximal common subgraph isomorphism algorithm.
- Structure validation by Cα geometry: ϕ,ψ and Cβ deviation
- Use of techniques derived from graph theory to compare secondary structure motifs in proteins.
- SCOP: a structural classification of proteins database for the investigation of sequences and structures.
- RAPID: randomized pharmacophore identification for drug design
- Protein flexibility predictions using graph theory
- Identification of structural domains in proteins by a graph heuristic
Cited by
- Inferring Probability Distributions of Graph Size and Node Degree from Stochastic Graph Grammars
- Protein function prediction using family-specific structural motifs
- Using Similarity Flooding for Extracting Similar Parts of Proteins
- Spectral Clustering for Complex Settings
- Protein Functional Site Prediction Using the Shortest-Path Graph Kernel Method
- Graph-based Approaches to Protein Structure- and Function Prediction
- CUSTOMER LOYALTY: THE CASE OF MOBILE PHONE USERS IN UNIVERSITI UTARA MALAYSIA
- MR-SimLab: Scalable subgraph selection with label similarity for big data
- An Amino Acid Code for Irregular and Mixed Protein Packing
- Prediction of enzyme catalytic sites on protein using a graph kernel method
- Smoothing 3D Protein Structure Motifs Through Graph Mining and Amino Acid Similarities
- Identification of Functionally Related Enzymes by Learning-to-Rank Methods
- Discrimination of thermophilic and mesophilic proteins
- Using bipartite matching in graph spectra for protein structural similarity
- Almost-Delaunay simplices: Robust neighbor relations for imprecise 3D points using CGAL
- Factors Influencing Customer Loyalty of Banking Industry: Empirical Evidence from Pakistan
- Graph Database Indexing Using Structured Graph Decomposition
- Graphlet Kernels for Prediction of Functional Residues in Protein Structures
- Functional Neighbors: Inferring Relationships between Non-Homologous Protein Families Using Family-Specific Packing Motifs
- Protein Data Modelling for Concurrent Sequential Patterns
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