Bioprospecting of microbial enzymes: current trends in industry and healthcare

ER Tatta, M Imchen, J Moopantakath… - Applied Microbiology and …, 2022 - Springer
Microbial enzymes have an indispensable role in producing foods, pharmaceuticals, and
other commercial goods. Many novel enzymes have been reported from all domains of life …

Designed protein cages as scaffolds for building multienzyme materials

SA McConnell, KA Cannon, C Morgan… - ACS Synthetic …, 2020 - ACS Publications
The functions of enzymes can be strongly affected by their higher-order spatial
arrangements. In this study we combine multiple new technologies—designer protein cages …

Extreme stability in de novo-designed repeat arrays is determined by unusually stable short-range interactions

K Geiger-Schuller, K Sforza, M Yuhas… - Proceedings of the …, 2018 - National Acad Sciences
Designed helical repeats (DHRs) are modular helix–loop–helix–loop protein structures that
are tandemly repeated to form a superhelical array. Structures combining tandem DHRs …

[图书][B] Protein Structure and Modeling

N Kurochkina - 2019 - Springer
Structure of proteins, nucleic acids, polysaccharides, and lipids is very important for our
understanding of biological processes and life functions. Biological macromolecules are …

Helical Assemblies

N Kurochkina, N Kurochkina - Protein Structure and Modeling, 2019 - Springer
Repeating structural motifs in proteins exist in many forms as groups of amino acids,
secondary structure elements, domains or molecules. Protein assemblies of ankyrins …

[PDF][PDF] Barrick, D.(2018). Extreme stability in de novo-designed repeat arrays is determined by unusually stable short-range interactions. Proceedings of the National …

K Geiger-Schuller, K Sforza, M Yuhas, F Parmeggiani… - core.ac.uk
Abstract Designed Helical Repeats (DHRs) are modular helix-loop-helix-loop protein
structures that are tandemly repeated to form a superhelical array. Structures combining …