Treffer: Binary coding, mRNA information and protein structure

Title:
Binary coding, mRNA information and protein structure
Source:
ITI 2004 : proceedings of the 26th international conference on information technology interfaces (Cavtat, 7-10 June 2004)Information technology interfaces. :53-61
Publisher Information:
Zagreb: University Computing Centre, 2004.
Publication Year:
2004
Physical Description:
print, 38 ref
Original Material:
INIST-CNRS
Subject Terms:
Documentation, Sciences exactes et technologie, Exact sciences and technology, Sciences appliquees, Applied sciences, Informatique; automatique theorique; systemes, Computer science; control theory; systems, Logiciel, Software, Systèmes informatiques et systèmes répartis. Interface utilisateur, Computer systems and distributed systems. User interface, Organisation des mémoires. Traitement des données, Memory organisation. Data processing, Systèmes d'information. Bases de données, Information systems. Data bases, Algorithme apprentissage, Learning algorithm, Algoritmo aprendizaje, Analyse statistique, Statistical analysis, Análisis estadístico, Biologie moléculaire, Molecular biology, Biología molecular, Classification, Clasificación, Codage binaire, Binary coding, Codificación binaria, Code binaire, Binary code, Código binario, DNA, Intelligence artificielle, Artificial intelligence, Inteligencia artificial, Machine mesure, Measuring machine, Máquina medida, Ordinateur personnel, Personal computer, Computadora personal, Propriété physicochimique, Physicochemical properties, Propiedad fisicoquímica, Protéine, Protein, Proteína, Puce à DNA, DNA chip, Pulga de DNA, RNA, Randomisation, Randomization, Aleatorización, Structure information, Information structure, Estructura información, Structure protéine, Protein structure, Système information, Information system, Sistema información, Système réparti, Distributed system, Sistema repartido, Machine exemple support, Vector support machine, Máquina ejemplo soporte
Document Type:
Konferenz Conference Paper
File Description:
text
Language:
English
Author Affiliations:
Rudjer Boskovic Institute, Bijenička cesta 54, 10002 Zagreb, Croatia
Department of Radiology, General Hospital Pozega, Osjecka bb, 34000 Pozega, Croatia
Rights:
Copyright 2005 INIST-CNRS
CC BY 4.0
Sauf mention contraire ci-dessus, le contenu de cette notice bibliographique peut être utilisé dans le cadre d’une licence CC BY 4.0 Inist-CNRS / Unless otherwise stated above, the content of this bibliographic record may be used under a CC BY 4.0 licence by Inist-CNRS / A menos que se haya señalado antes, el contenido de este registro bibliográfico puede ser utilizado al amparo de una licencia CC BY 4.0 Inist-CNRS
Notes:
Computer science; theoretical automation; systems
Accession Number:
edscal.16369034
Database:
PASCAL Archive

Weitere Informationen

We describe new binary algorithm for the prediction of a and β protein folding types from RNA, DNA and amino acid sequences. The method enables quick, simple and accurate prediction of a and β protein folds on a personal computer by means of few binary patterns of coded amino acid and nucleotide physicochemical properties. The algorithm was tested with machine learning SMO (sequential minimal optimisation) classifier for the support vector machines and classification trees, on a dataset of 140 dissimilar protein folds. Depending on the method of testing, the overall classification accuracy was 91.43% - 100% and the tenfold cross-validation result of the procedure was 83.57% - >90%. Genetic code randomisation analysis based on 100,000 different codes tested for the protein fold prediction quality indicated that: a) there is a very low chance of p = 2.7 x 10-4 that a better code than the natural one specified by the binary coding algorithm is randomly produced, b) dipeptides represent basic protein units with respect to the natural genetic code defining of the secondary protein structure.