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Ten Most Wanted Solutions in Protein Bioinformatics
Ten Most Wanted Solutions in Protein Bioinformatics
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A01=Anna Tramontano
acid
active site mapping
amino
Amino Acids
Author_Anna Tramontano
bank
CASP
Category=PB
Category=PSB
color
computational protein engineering applications
data
eq_bestseller
eq_isMigrated=1
eq_isMigrated=2
eq_nobargain
eq_non-fiction
eq_science
evolutionary bioinformatics
figure
glycogen
graduate level protein science
hepatitis
Hidden Markov Model
ligand interaction analysis
Membrane Proteins
Multiple Sequence Alignment
Native Protein Sequence
Nuclear Magnetic Resonance
Nucleic Acids Res
OmpF Porin
Pairwise Potentials
PDB Id
phosphorylase
Protein Bioinformatics
Protein Design
protein function annotation
Protein Structures
Roc Curve
Secondary Structure Elements
sequence similarity detection
Sequence Structure Relationship
Structural Genomics Projects
Structural Superposition
Structure Based Virtual Screening
Structure Prediction
True Positive Fraction
Unfolded State
Vice Versa
Virtual Screening
virus
Product details
- ISBN 9781584884910
- Weight: 498g
- Dimensions: 152 x 229mm
- Publication Date: 24 May 2005
- Publisher: Taylor & Francis Inc
- Publication City/Country: US
- Product Form: Hardback
Utilizing high speed computational methods to extrapolate to the rest of the protein universe, the knowledge accumulated on a subset of examples, protein bioinformatics seeks to accomplish what was impossible before its invention, namely the assignment of functions or functional hypotheses for all known proteins.
The Ten Most Wanted Solutions in Protein Bioinformatics considers the ten most significant problems occupying those looking to identify the biological properties and functional roles of proteins.
- Problem One considers the challenge involved with detecting the existence of an evolutionary relationship between proteins.
- Two and Three studies the detection of local similarities between protein sequences and analysis in order to determine functional assignment.
- Four, Five, and Six look at how the knowledge of the three-dimensional structures of proteins can be experimentally determined or inferred, and then exploited to understand the role of a protein.
- Seven and Eight explore how proteins interact with each other and with ligands, both physically and logically.
- Nine moves us out of the realm of observation to discuss the possibility of designing completely new proteins tailored to specific tasks.
- And lastly, Problem Ten considers ways to modify the functional properties of proteins.
After summarizing each problem, the author looks at and evaluates the current approaches being utilized, before going on to consider some potential approaches.
Ten Most Wanted Solutions in Protein Bioinformatics
€137.99
