Peptide linkers consisting of repeats of glycine and serine residues are commonly chosen by protein engineers to introduce flexible and hydrophilic spacers between protein domains. Given the popularity of these linkers, gaining a quantitative insight in their conformational behavior is important to understand the effect on functional properties of fusion proteins, including energy transfer efficiency in luminescent sensor proteins, intramolecular domain interactions and (multivalent) binding. In this chapter, we discuss how the conformational behavior of Ser/Gly linkers can be described using random coil models, and how measuring FRET as a function of linker length can be used to obtain empirical values for the stiffness of linkers containi...
Real-time imaging of molecular events inside living cells is important for understanding the basis o...
Photoswitchable distance constraints in the form of photoisomerizable chemical cross-links offer a g...
Over the past two decades the field of computational protein design has produced striking successes,...
Peptide linkers consisting of repeats of glycine and serine residues are commonly chosen by protein ...
Flexible polypeptide linkers composed of glycine and serine are important components of engineered m...
The fusion of different protein domains via peptide linkers is a powerful, modular approach to obtai...
The fusion of different protein domains via peptide linkers is a powerful, modular approach to obtai...
ABSTRACT: The fusion of different protein domains via peptide linkers is a powerful, modular approac...
Abstract: Control of structural flexibility is essential for the proper functioning of a large numbe...
Engineered fusion proteins containing two or more functional polypeptides joined by a peptide or pro...
International audienceLinkers in polyproteins are considered as mere spacers between two adjacent do...
Linkers play critical roles in the construction of synthetic protein switches and sensors as they fu...
Engineered fusion proteins containing two or more func-tional polypeptides joined by a peptide or pr...
Real-time imaging of molecular events inside living cells is important for understanding the basis o...
Photoswitchable distance constraints in the form of photoisomerizable chemical cross-links offer a g...
Over the past two decades the field of computational protein design has produced striking successes,...
Peptide linkers consisting of repeats of glycine and serine residues are commonly chosen by protein ...
Flexible polypeptide linkers composed of glycine and serine are important components of engineered m...
The fusion of different protein domains via peptide linkers is a powerful, modular approach to obtai...
The fusion of different protein domains via peptide linkers is a powerful, modular approach to obtai...
ABSTRACT: The fusion of different protein domains via peptide linkers is a powerful, modular approac...
Abstract: Control of structural flexibility is essential for the proper functioning of a large numbe...
Engineered fusion proteins containing two or more functional polypeptides joined by a peptide or pro...
International audienceLinkers in polyproteins are considered as mere spacers between two adjacent do...
Linkers play critical roles in the construction of synthetic protein switches and sensors as they fu...
Engineered fusion proteins containing two or more func-tional polypeptides joined by a peptide or pr...
Real-time imaging of molecular events inside living cells is important for understanding the basis o...
Photoswitchable distance constraints in the form of photoisomerizable chemical cross-links offer a g...
Over the past two decades the field of computational protein design has produced striking successes,...