Beta-propeller proteins can be classified by blade number, sequence repeats, structural features, and biological function. Explore four-, five-, six-, seven-, and eight-bladed beta-propellers, WD40 and Kelch proteins, and important examples.
The beta-propeller is a distinctive protein fold formed by multiple beta-sheet blades arranged around a central axis. Learn how its blades, loops, hydrogen bonds, and central region determine its structure and function.
A beta-propeller is a versatile protein fold composed of multiple beta-sheet blades arranged around a central axis. Learn about its structure, types, functions, evolution, and role in enzymes and protein–protein interactions.
Beta-propeller proteins can be classified by blade number, sequence repeats, structural features, and biological function. Explore four-, five-, six-, seven-, and eight-bladed beta-propellers, WD40 and Kelch proteins, and important examples.
The beta-propeller is a distinctive protein fold formed by multiple beta-sheet blades arranged around a central axis. Learn how its blades, loops, hydrogen bonds, and central region determine its structure and function.
A beta-propeller is a versatile protein fold composed of multiple beta-sheet blades arranged around a central axis. Learn about its structure, types, functions, evolution, and role in enzymes and protein–protein interactions.