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Amino acid sequence analysis is useful for the study of problems ranging from modifications of single molecules to complex networks and interactions of species. Many available amino acid sequences are providing the basis for various studies at the proteome level.The dynamics of protein expression and the simulation of complex biological systems in which proteins interact with certain kinetics and in their respective compartments are just about to be tackled. Amino acid sequences will be crucial reference points for such studies.Key Features* Mass spectrometric analysis of prote
Amino acid sequence. --- Amino acids --- Analysis. --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Proteins --- Sequence alignment (Bioinformatics) --- Analysis
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Amino acid sequence. --- Proteins --- Protein folding. --- Conformation. --- Chemical warfare. --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Folding of proteins --- Protein conformation --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Amino acids --- Sequence alignment (Bioinformatics) --- Folding --- Conformation --- Analysis
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'Pattern Discovery in Biomolecular Data' presents the work of researchers in the field of pattern discovery, a fundamental operation used in the process of extracting knowledge from biomolecular data. The significant growth of the size of biomolecular data has lead scientists to place increasing importance on developing novel techniques for this knowledge extraction. With this fact in mind, the editors have compiled this clear, up-to-date summary of the principle techniques of pattern discovery in molecular biology, in the hope that readers will build on these techniques and make discoveries of their own.
Nucleotide sequence --- Amino acid sequence --- Pattern recognition systems. --- Information storage and retrieval systems --- Pattern classification systems --- Pattern recognition computers --- Pattern perception --- Computer vision --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Amino acids --- Proteins --- Sequence alignment (Bioinformatics) --- Data processing. --- Nucleotide sequence. --- Analysis --- Aminoacid sequence
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Computerised sequence analysis is an integral part of biotechnological research, yet many biologists have received no formal training in this important technology. Sequence Analysis Primer offers the beginner the necessary background to enter this vital field and helps more seasoned researchers to fine-tune their approach. It covers basic data manipulation such as homology searches, stem-loop identification, and protein secondary structure prediction, and is compatible with most sequence analysis programs. A detailed example giving steps for characterising a new gene sequence provides users with hands-on experience when combined with their current software.
Nucleotide sequence --- Amino acid sequence --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Amino acids --- Proteins --- Sequence alignment (Bioinformatics) --- Analysis, Nucleic acid sequence --- Analysis, Nucleotide sequence --- Base sequence (Nucleic acids) --- DNA sequence --- Nucleic acid sequence analysis --- Nucleotide sequence analysis --- RNA sequence --- Sequence, Nucleotide --- Nucleic acids --- Nucleotides --- Methodology. --- Analysis --- Base Sequence. --- Nucleotide sequence.
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Analytical biochemistry --- Peptides --- Proteins --- Amino acid sequence --- AMINO ACID SEQUENCE --- Analysis --- analysis --- Amino Acid Sequence. --- 577.112.5 --- -Proteins --- -Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Organic compounds --- Amino acids --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Sequence alignment (Bioinformatics) --- Amino Acid Sequences --- Sequence, Amino Acid --- Sequences, Amino Acid --- Protein Structure, Primary --- Primary Protein Structure --- Primary Protein Structures --- Protein Structures, Primary --- Structure, Primary Protein --- Structures, Primary Protein --- analysis. --- Polypeptide chain. Types of linkages in the proteins. --- Amino acid sequence. --- Analysis. --- -analysis. --- 577.112.5 Polypeptide chain. Types of linkages in the proteins. --- Amino Acid Sequence --- -Amino acid sequence analysis --- Proteids --- Polypeptide chain. Types of linkages in the proteins --- Peptides - Analysis --- Proteins - Analysis --- Peptides - analysis --- Proteins - analysis
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Protein Physics is a lively presentation of the most general problems of protein structure, folding and function from the physics and chemistry perspective, based on lectures given by the authors. It deals with fibrous, membrane and, most of all, with the best studied water-soluble globular proteins, in both their native and denatured states. The major aspects of protein physics are covered systematically, physico-chemical properties of polypeptide chains; their secondary structures; tertiary structures of proteins and their classification; conformational transitions in protein molecules and t
Amino acid sequence. --- Protein binding. --- Protein folding. --- Proteins - Structure. --- Proteins. --- Proteins --- Protein binding --- Human Anatomy & Physiology --- Health & Biological Sciences --- Animal Biochemistry --- Structure --- Conformation. --- Chemistry. --- Proteids --- Folding of proteins --- Protein conformation --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Folding --- Biomolecules --- Polypeptides --- Proteomics --- Amino acids --- Sequence alignment (Bioinformatics) --- Conformation --- Analysis --- Protéines --- Structure. --- Fixation --- ELSEVIER-B EPUB-LIV-FT
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Computer access is the only way to retrieve up-to-date sequences and this book shows researchers puzzled by the maze of URLs, sites, and searches how to use internet technology to find and analyze genetic data. The book describes the different types of databases, how to use a specific database to find a sequence that you need, and how to analyze the data to compare it with your own work. The content also covers sequence phenotype, mutation, and genetic linkage databases; simple repetitive DNA sequences; gene feature identification; and prediction of structure and function of proteins from
Genetics --- Nucleotide sequence --- Amino acid sequence --- Data processing. --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Analysis, Nucleic acid sequence --- Analysis, Nucleotide sequence --- Base sequence (Nucleic acids) --- DNA sequence --- Nucleic acid sequence analysis --- Nucleotide sequence analysis --- RNA sequence --- Sequence, Nucleotide --- Amino acids --- Proteins --- Sequence alignment (Bioinformatics) --- Nucleic acids --- Nucleotides --- Biology --- Embryology --- Mendel's law --- Adaptation (Biology) --- Breeding --- Chromosomes --- Heredity --- Mutation (Biology) --- Variation (Biology) --- Analysis
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Sequencing of proteins and peptides
Analytical biochemistry --- Amino acid sequence. --- Peptides --- Proteins --- Analysis. --- Aminozuursequenties. --- Analyse. --- Eiwitten. --- Amino acid sequence --- Amino Acid Sequence --- Amino Acid Sequences --- Sequence, Amino Acid --- Sequences, Amino Acid --- Protein Structure, Primary --- Primary Protein Structure --- Primary Protein Structures --- Protein Structures, Primary --- Structure, Primary Protein --- Structures, Primary Protein --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Amino acids --- Sequence alignment (Bioinformatics) --- Analysis --- analysis
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Molecular biology --- Nucleotide sequence --- Amino acid sequence --- Computer network resources. --- Agrotechnology and Food Sciences. Information and Communication Technology --- Internet Technology --- Internet Technology. --- Analysis, Nucleic acid sequence --- Analysis, Nucleotide sequence --- Base sequence (Nucleic acids) --- DNA sequence --- Nucleic acid sequence analysis --- Nucleotide sequence analysis --- RNA sequence --- Sequence, Nucleotide --- Molecular biochemistry --- Molecular biophysics --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Computer network resources --- Nucleic acids --- Nucleotides --- Sequence alignment (Bioinformatics) --- Biochemistry --- Biophysics --- Biomolecules --- Systems biology --- Amino acids --- Proteins --- Analysis
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Christopher Schirwitz's thesis focuses on improving the quality of in situ synthesized high-complexity peptide micro arrays. Micro arrays containing proteins or small protein fragments in the form of peptides have become of great interest in proteomic research. With the help of these microarrays a large number of potential target molecules can be screened for interaction with a probe in a short timeframe. However, protein and peptide micro arrays are still lagging behind oligonucleotide arrays in terms of density, quality and manufacturing costs. A new approach developed at the German Cancer Research Center (DKFZ) has improved the synthesis of high-density peptide arrays. The current technology is capable of producing arrays with up to 40,000 different peptides per square cm by means of micro particle-based solid phase peptide synthesis. However, in situ synthesis approaches bear a conceptual disadvantage: The quality of the peptides is dependent on the efficiency of the synthesis so that peptide fragments are present in the resulting array among the desired full-length peptides. In peptide-protein interaction studies such peptide fragments. The central achievement of this thesis is the development of a new method allowing for the fast one-step purification of entire arrays without loss of resolution or spatial information. Christopher Schirwitz's work has resulted in a number of publications in high ranking journals.
Chemistry --- Physical Sciences & Mathematics --- Organic Chemistry --- Peptides --- Amino acid sequence. --- Purification. --- Amino acid sequence analysis --- Analysis, Amino acid sequence --- Peptide sequence --- Peptide sequencing --- Protein sequence --- Protein sequencing --- Sequence, Amino acid --- Chemistry. --- Bioorganic chemistry. --- Physical chemistry. --- Proteins. --- Bioorganic Chemistry. --- Protein Science. --- Physical Chemistry. --- Amino acids --- Proteins --- Sequence alignment (Bioinformatics) --- Organic compounds --- Analysis --- Biochemistry. --- Chemistry, Physical organic. --- Chemistry, Physical organic --- Chemistry, Organic --- Chemistry, Physical and theoretical --- Biological chemistry --- Chemical composition of organisms --- Organisms --- Physiological chemistry --- Biology --- Medical sciences --- Bio-organic chemistry --- Biological organic chemistry --- Biochemistry --- Composition --- Proteins . --- Chemistry, Theoretical --- Physical chemistry --- Theoretical chemistry --- Proteids --- Biomolecules --- Polypeptides --- Proteomics --- Synthesis. --- Analysis.
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