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helix scaffold for the assembly of active protein kinases
by
Ten Eyck, Lynn F
, Kornev, Alexandr P
, Taylor, Susan S
in
Amino Acid Motifs
/ Binding Sites
/ Biochemistry
/ Bioinformatics
/ Biological Sciences
/ Catalysis
/ Catalysts
/ Computational Biology
/ Crystal structure
/ hydrophobicity
/ Kinases
/ Lead
/ Models, Molecular
/ Molecular structure
/ Molecules
/ Phosphorylation
/ Protein Binding
/ protein kinases
/ Protein Kinases - chemistry
/ Protein Kinases - metabolism
/ Protein Structure, Tertiary
/ Proteins
/ regulatory sequences
/ Scaffolds
/ Sequence Alignment
/ tyrosine
2008
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helix scaffold for the assembly of active protein kinases
by
Ten Eyck, Lynn F
, Kornev, Alexandr P
, Taylor, Susan S
in
Amino Acid Motifs
/ Binding Sites
/ Biochemistry
/ Bioinformatics
/ Biological Sciences
/ Catalysis
/ Catalysts
/ Computational Biology
/ Crystal structure
/ hydrophobicity
/ Kinases
/ Lead
/ Models, Molecular
/ Molecular structure
/ Molecules
/ Phosphorylation
/ Protein Binding
/ protein kinases
/ Protein Kinases - chemistry
/ Protein Kinases - metabolism
/ Protein Structure, Tertiary
/ Proteins
/ regulatory sequences
/ Scaffolds
/ Sequence Alignment
/ tyrosine
2008
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Do you wish to request the book?
helix scaffold for the assembly of active protein kinases
by
Ten Eyck, Lynn F
, Kornev, Alexandr P
, Taylor, Susan S
in
Amino Acid Motifs
/ Binding Sites
/ Biochemistry
/ Bioinformatics
/ Biological Sciences
/ Catalysis
/ Catalysts
/ Computational Biology
/ Crystal structure
/ hydrophobicity
/ Kinases
/ Lead
/ Models, Molecular
/ Molecular structure
/ Molecules
/ Phosphorylation
/ Protein Binding
/ protein kinases
/ Protein Kinases - chemistry
/ Protein Kinases - metabolism
/ Protein Structure, Tertiary
/ Proteins
/ regulatory sequences
/ Scaffolds
/ Sequence Alignment
/ tyrosine
2008
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Journal Article
helix scaffold for the assembly of active protein kinases
2008
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Overview
Structures of set of serine-threonine and tyrosine kinases were investigated by the recently developed bioinformatics tool Local Spatial Patterns (LSP) alignment. We report a set of conserved motifs comprised mostly of hydrophobic residues. These residues are scattered throughout the protein sequence and thus were not previously detected by traditional methods. These motifs traverse the conserved protein kinase core and play integrating and regulatory roles. They are anchored to the F-helix, which acts as an organizing \"hub\" providing precise positioning of the key catalytic and regulatory elements. Consideration of these discovered structures helps to explain previously inexplicable results.
Publisher
National Academy of Sciences,National Acad Sciences
Subject
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