The co-self-assembly of proteins and nucleic acids (NAs) produces complex biomolecular machines (e.g., ribosomes and telomerases) that represent some of the most daunting targets for biomolecular design. Despite significant advances in protein and DNA or RNA nanotechnology, the construction of artificial nucleoprotein complexes has largely been limited to cases that rely on the NA-mediated spatial organization of protein units, rather than a cooperative interplay between protein- and NA-mediated interactions that typify natural nucleoprotein assemblies. We report here a structurally well-defined synthetic nucleoprotein assembly that forms through the synergy of three types of intermolecular interactions: Watson–Crick base pairing, NA–protei...
We describe a general computational method for designing proteins that self-assemble to a desired sy...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
The co-self-assembly of proteins and nucleic acids (NAs) produces complex biomolecular machines (e.g...
The co-self-assembly of proteins and nucleic acids (NAs) produces complex biomolecular machines (e.g...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Supramolecular self-assembly is a spontaneous process in which a disordered system of pre-existing c...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
The self-assembly of supramolecular structures that are ordered on the nanometre scale is a key obje...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Nature has long been a source of fascination, inspiration and humility for chemists. Despite our bes...
We describe a general computational method for designing proteins that self-assemble to a desired sy...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...
The co-self-assembly of proteins and nucleic acids (NAs) produces complex biomolecular machines (e.g...
The co-self-assembly of proteins and nucleic acids (NAs) produces complex biomolecular machines (e.g...
Proteins are Nature’s fundamental multitools, fulfilling crucial roles in catalyzing complex chemica...
Protein based nanotechnology is an emerging field, which could someday provide novel protein materia...
Supramolecular self-assembly is a spontaneous process in which a disordered system of pre-existing c...
Several phenomena occurring throughout the life of living things start and end with proteins. Variou...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
The self-assembly of supramolecular structures that are ordered on the nanometre scale is a key obje...
The hydrogen-bonding recognition interactions of nucleobases are a fundamental property of nucleic a...
Hierarchical organization of macromolecules through self-assembly is a prominent feature in biologic...
In recent years, protein nanocages have been shown to be one the most promising and potential carrie...
Nature has long been a source of fascination, inspiration and humility for chemists. Despite our bes...
We describe a general computational method for designing proteins that self-assemble to a desired sy...
Recent advances in computational methods have enabled the predictive design of self-assembling prote...
Computation protein design (CPD) has been successfully used to create various functional proteins, i...