Protein engineering shows a wide range of possibilities for designing properties in novel materials. Following inspiration from natural systems we have studied how combinations or duplications of protein modules can be used to engineer their interactions and achieve functional properties. Here we used cellulose binding modules (CBM) coupled to spider silk N-terminal domains that dimerize in a pH-sensitive manner. We showed how the pH-sensitive switching into dimers affected cellulose binding affinity in relation to covalent coupling between CBMs. Finally, we showed how the pH-sensitive coupling could be used to assemble cellulose nanofibers in a dynamic pH-dependent way. The work shows how novel proteins can be designed by linking functiona...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
In this study, the interaction forces between different cellulosic nanomaterials and a protein domai...
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
One central problem for the function and manufacture of materials where performance relies on nanosc...
One central problem for the function and manufacture of materials where performance relies on nanosc...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
International audienceThe development of protein and microorganism engineering have led to rising ex...
Cellulose is commonly used as the stiff component to interact with a softer matrix, such as proteins...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
In this study, the interaction forces between different cellulosic nanomaterials and a protein domai...
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
One central problem for the function and manufacture of materials where performance relies on nanosc...
One central problem for the function and manufacture of materials where performance relies on nanosc...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
International audienceThe development of protein and microorganism engineering have led to rising ex...
Cellulose is commonly used as the stiff component to interact with a softer matrix, such as proteins...
We investigated how a genetically engineered resilin fusion protein modifies cellulose surfaces. We ...
Protein-protein interactions (PPIs) are essential in many biological processes, such as cell cycle, ...
In this study, the interaction forces between different cellulosic nanomaterials and a protein domai...