Construction of catalytic centers on natural protein aggregates is a challenging topic in biomaterial and biomedicine research. Here we report a novel construction of artificial nanoenzyme with glutathione peroxidase (GPx)-like function. By engineering the surface of tobacco mosaic virus (TMV) coat protein, the main catalytic components of GPx were fabricated on TMV protein monomers. Through direct self-assembly of the functionalized viral coat proteins, the multi-GPx centers were installed on these well-defined nanodisks or nanotubes. With the help of muti-selenoenzyme centers, the resulting organized nanoenzyme exhibited remarkable GPx activity, even approaching the level of natural GPx. The antioxidation study on subcell mitochondrial le...
The simultaneous expression in Escherichia coli cells of the Qβ virus-like particle (VLP) capsid pro...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
The integration of biological molecules and nanoscale components provides a fertile basis for the co...
Tobacco mosaic virus (TMV) is a robust nanotubular nucleoprotein scaffold increasingly employed for ...
Protein cages are attractive as molecular scaffolds for the fundamental study of enzymes and metabol...
International audienceOrganizing active enzyme molecules on nanometer-sized scaffolds is a promising...
Organizing active enzyme molecules on nanometer‐sized scaffolds is a promising strategy for designin...
In nature, the interior of a cell hosts a remarkable network of organelles and subcellular compartme...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
The conjunction of (bio-)chemical recognition elements with nanoscale biological building blocks suc...
Plant virus nanoparticles are promising candidates for the development of novel materials, including...
Virus particles are probably the most precisely defined nanometre-sized objects that can be formed b...
A virus-based nanostructuring strategy is proposed for improving the catalytic performance of integr...
Nanoassemblies based on self-assembly of biological building blocks are promising in mimicking the n...
Nanomaterials with enzyme-like activity have been the spotlight of scientific and technological effo...
The simultaneous expression in Escherichia coli cells of the Qβ virus-like particle (VLP) capsid pro...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
The integration of biological molecules and nanoscale components provides a fertile basis for the co...
Tobacco mosaic virus (TMV) is a robust nanotubular nucleoprotein scaffold increasingly employed for ...
Protein cages are attractive as molecular scaffolds for the fundamental study of enzymes and metabol...
International audienceOrganizing active enzyme molecules on nanometer-sized scaffolds is a promising...
Organizing active enzyme molecules on nanometer‐sized scaffolds is a promising strategy for designin...
In nature, the interior of a cell hosts a remarkable network of organelles and subcellular compartme...
The cooperative organization of enzymes by cells is a key feature for the efficiency of living syste...
The conjunction of (bio-)chemical recognition elements with nanoscale biological building blocks suc...
Plant virus nanoparticles are promising candidates for the development of novel materials, including...
Virus particles are probably the most precisely defined nanometre-sized objects that can be formed b...
A virus-based nanostructuring strategy is proposed for improving the catalytic performance of integr...
Nanoassemblies based on self-assembly of biological building blocks are promising in mimicking the n...
Nanomaterials with enzyme-like activity have been the spotlight of scientific and technological effo...
The simultaneous expression in Escherichia coli cells of the Qβ virus-like particle (VLP) capsid pro...
Advances in nanotechnology offer significant improvements in a wide range of applications that inclu...
The integration of biological molecules and nanoscale components provides a fertile basis for the co...