The Knob Socket (KS) model is a 4 amino acid motif that describes the way a protein will fold and pack its residues to form tertiary structure. The model includes a one amino acid residue knob from one secondary structure that packs into a three amino acid residue socket of another secondary structure. The α-helical sockets can be placed into three different categories: (1) free, unpacked and favoring intra-helical interactions, (2) filled, packed with a knob, and favoring inter-helical interactions, and (3) non, unpacked and disfavoring α-helical structure. Data within the Protein Data Bank was used to develop propensity libraries for each type of secondary structures. An α-helical propensity library was used to determine the relative freq...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The ability to identify tertiary protein structure based on a known sequence can provide avenues int...
The Knob Socket (KS) model is a 4 amino acid motif that describes the way a protein will fold and pa...
The Knob-Socket (KS) Model is a novel method to describe protein packing. In this work, the KS model...
The Knob-Socket Model is a protein-packing model that explains how amino acid residues pack with eac...
The novel knob-socket model provides a basis for defining how sequence determines protein structure....
A construct that simplifies the complexity of residue packing would significantly impact our underst...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
The Knob-Socket (KS) model provides a basis for the description of a protein’s packing structure. Th...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
The Knob-Socket (KS) model provides a basis for the description of a protein’s packing structure. Th...
The knob-socket model is a code to describe how proteins interact to form tertiary structures. The b...
The knob-socket model is a code to describe how proteins interact to form tertiary structures. The b...
The novel knob-socket (KS) model provides a construct to interpret and analyze the direct contributi...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The ability to identify tertiary protein structure based on a known sequence can provide avenues int...
The Knob Socket (KS) model is a 4 amino acid motif that describes the way a protein will fold and pa...
The Knob-Socket (KS) Model is a novel method to describe protein packing. In this work, the KS model...
The Knob-Socket Model is a protein-packing model that explains how amino acid residues pack with eac...
The novel knob-socket model provides a basis for defining how sequence determines protein structure....
A construct that simplifies the complexity of residue packing would significantly impact our underst...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
The Knob-Socket (KS) model provides a basis for the description of a protein’s packing structure. Th...
The Tsai laboratory developed a novel description of protein tertiary packing called the Knob-Socket...
The Knob-Socket (KS) model provides a basis for the description of a protein’s packing structure. Th...
The knob-socket model is a code to describe how proteins interact to form tertiary structures. The b...
The knob-socket model is a code to describe how proteins interact to form tertiary structures. The b...
The novel knob-socket (KS) model provides a construct to interpret and analyze the direct contributi...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The knob-socket model aids in the identification of packing in protein secondary, tertiary and quate...
The ability to identify tertiary protein structure based on a known sequence can provide avenues int...