Protein cages are hollow protein shells with a nanometric cavity that can be filled with useful materials. The encapsulating nature of the cages means that they are particularly attractive for loading with biological macromolecules, affording the guests protection in conditions where they may be degraded. Given the importance of proteins in both industrial and all cellular processes, encapsulation of functional protein cargoes, particularly enzymes, are of high interest both for in vivo diagnostic and therapeutic use as well as for ex vivo applications. Increasing knowledge of protein cage structures at high resolution along with recent advances in producing artificial protein cages means that they can now be designed with various attachmen...
Well-defined containers constructed from multiple protein subunits are a unique class of nanomateria...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
Proteins and protein-based assemblies represent the most structurally and functionally diverse molec...
Protein cages are hollow protein shells with a nanometric cavity that can be filled with useful mate...
Using a newly discovered encapsulin from Mycolicibacterium hassiacum, several biocatalysts were pack...
Development of protein cages for encapsulation of active enzyme cargoes and their subsequent arrange...
Proteins that self-assemble into polyhedral shell-like structures are useful molecular containers bo...
Therapeutic enzymes play important roles in modern medicine due to their high affinity and specifici...
Bacterial microcompartments serve as metabolic modules (pseudo-organelles) that help to increase the...
Protein-based encapsulation systems have a wide spectrum of applications in targeted delivery of car...
Enzymes are protein catalysts that have many useful functions in industrial and technological applic...
Protein cages are nanocompartments with a well-defined structure and monodisperse size. They are com...
Enzymes are always considered as great gifts from nature since they are holding brilliant properties...
Artificial receptors able to recognise biologically relevant molecules or ions have gained interest ...
Encapsulation of enzymes inside protein cage structures, mimicking protein-based organelle structure...
Well-defined containers constructed from multiple protein subunits are a unique class of nanomateria...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
Proteins and protein-based assemblies represent the most structurally and functionally diverse molec...
Protein cages are hollow protein shells with a nanometric cavity that can be filled with useful mate...
Using a newly discovered encapsulin from Mycolicibacterium hassiacum, several biocatalysts were pack...
Development of protein cages for encapsulation of active enzyme cargoes and their subsequent arrange...
Proteins that self-assemble into polyhedral shell-like structures are useful molecular containers bo...
Therapeutic enzymes play important roles in modern medicine due to their high affinity and specifici...
Bacterial microcompartments serve as metabolic modules (pseudo-organelles) that help to increase the...
Protein-based encapsulation systems have a wide spectrum of applications in targeted delivery of car...
Enzymes are protein catalysts that have many useful functions in industrial and technological applic...
Protein cages are nanocompartments with a well-defined structure and monodisperse size. They are com...
Enzymes are always considered as great gifts from nature since they are holding brilliant properties...
Artificial receptors able to recognise biologically relevant molecules or ions have gained interest ...
Encapsulation of enzymes inside protein cage structures, mimicking protein-based organelle structure...
Well-defined containers constructed from multiple protein subunits are a unique class of nanomateria...
The study of enzyme behavior in small nanocompartments is crucial for the understanding of biocataly...
Proteins and protein-based assemblies represent the most structurally and functionally diverse molec...