Javascript must be enabled to continue!
Structural footprinting in protein structure comparison: the impact of structural fragments
View through CrossRef
Abstract
Background
One approach for speeding-up protein structure comparison is the projection approach, where a protein structure is mapped to a high-dimensional vector and structural similarity is approximated by distance between the corresponding vectors. Structural footprinting methods are projection methods that employ the same general technique to produce the mapping: first select a representative set of structural fragments as models and then map a protein structure to a vector in which each dimension corresponds to a particular model and "counts" the number of times the model appears in the structure. The main difference between any two structural footprinting methods is in the set of models they use; in fact a large number of methods can be generated by varying the type of structural fragments used and the amount of detail in their representation. How do these choices affect the ability of the method to detect various types of structural similarity?
Results
To answer this question we benchmarked three structural footprinting methods that vary significantly in their selection of models against the CATH database. In the first set of experiments we compared the methods' ability to detect structural similarity characteristic of evolutionarily related structures, i.e., structures within the same CATH superfamily. In the second set of experiments we tested the methods' agreement with the boundaries imposed by classification groups at the Class, Architecture, and Fold levels of the CATH hierarchy.
Conclusion
In both experiments we found that the method which uses secondary structure information has the best performance on average, but no one method performs consistently the best across all groups at a given classification level. We also found that combining the methods' outputs significantly improves the performance. Moreover, our new techniques to measure and visualize the methods' agreement with the CATH hierarchy, including the threshholded affinity graph, are useful beyond this work. In particular, they can be used to expose a similar composition of different classification groups in terms of structural fragments used by the method and thus provide an alternative demonstration of the continuous nature of the protein structure universe.
Springer Science and Business Media LLC
Title: Structural footprinting in protein structure comparison: the impact of structural fragments
Description:
Abstract
Background
One approach for speeding-up protein structure comparison is the projection approach, where a protein structure is mapped to a high-dimensional vector and structural similarity is approximated by distance between the corresponding vectors.
Structural footprinting methods are projection methods that employ the same general technique to produce the mapping: first select a representative set of structural fragments as models and then map a protein structure to a vector in which each dimension corresponds to a particular model and "counts" the number of times the model appears in the structure.
The main difference between any two structural footprinting methods is in the set of models they use; in fact a large number of methods can be generated by varying the type of structural fragments used and the amount of detail in their representation.
How do these choices affect the ability of the method to detect various types of structural similarity?
Results
To answer this question we benchmarked three structural footprinting methods that vary significantly in their selection of models against the CATH database.
In the first set of experiments we compared the methods' ability to detect structural similarity characteristic of evolutionarily related structures, i.
e.
, structures within the same CATH superfamily.
In the second set of experiments we tested the methods' agreement with the boundaries imposed by classification groups at the Class, Architecture, and Fold levels of the CATH hierarchy.
Conclusion
In both experiments we found that the method which uses secondary structure information has the best performance on average, but no one method performs consistently the best across all groups at a given classification level.
We also found that combining the methods' outputs significantly improves the performance.
Moreover, our new techniques to measure and visualize the methods' agreement with the CATH hierarchy, including the threshholded affinity graph, are useful beyond this work.
In particular, they can be used to expose a similar composition of different classification groups in terms of structural fragments used by the method and thus provide an alternative demonstration of the continuous nature of the protein structure universe.
Related Results
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
7
th
International Symposium on Enabling Technologies for Life Sciences (ETP)
The seventh in the series of ETP Symposia (see
Rapid Communications in Mass Spectrometry
2012,
26
, ...
Protein–RNA footprinting: an evolving tool
Protein–RNA footprinting: an evolving tool
Abstract
As more RNA molecules with important cellular functions are discovered, there is a strong need to characterize their structures, fun...
Endothelial Protein C Receptor
Endothelial Protein C Receptor
IntroductionThe protein C anticoagulant pathway plays a critical role in the negative regulation of the blood clotting response. The pathway is triggered by thrombin, which allows ...
High-throughput discovery of inhibitory protein fragments with AlphaFold
High-throughput discovery of inhibitory protein fragments with AlphaFold
Abstract
Peptides can bind to specific sites on larger proteins and thereby function as inhibitors and regulatory elements. Peptide fragments of ...
Bacillus subtilis bacteriophages SP82, SPO1, and phie: a comparison of DNAs and of peptides synthesized during infection
Bacillus subtilis bacteriophages SP82, SPO1, and phie: a comparison of DNAs and of peptides synthesized during infection
The genomes of Bacillus subtilis phages phie, SPO1, and SP82 were compared by DNA-DNA hybridization, analysis of DNA fragments produced by digestion with restriction endonucleases,...
ANÁLISE DO ÍNDICE DE ÁREA DOS FRAGMENTOS EXISTENTES NA FOZ DOS RIOS DO OESTE PAULISTA-SP
ANÁLISE DO ÍNDICE DE ÁREA DOS FRAGMENTOS EXISTENTES NA FOZ DOS RIOS DO OESTE PAULISTA-SP
O presente trabalho tem como objetivo analisar o índice de área dos fragmentos florestais existentes na foz dos rios do Oeste Paulista/SP, através de técnicas de sistema de informa...
Footprinting Using Nmap Authors Yuvraj Singh
Footprinting Using Nmap Authors Yuvraj Singh
Nmap is inbuilt in Kali Linux that is utilized by the organization to identify the weakness and remediate it. There are different sorts of subtleties that Nmap offers in the wake o...
Internal Fragments Generated by Electron Ionization Dissociation Enhances Protein Top-down Mass Spectrometry
Internal Fragments Generated by Electron Ionization Dissociation Enhances Protein Top-down Mass Spectrometry
Top-down proteomics by mass spectrometry (MS) involves the mass measurement of an intact protein followed by subsequent activation of the protein to generate product ions. Electr...

