The alpha-helical coiled coil is one of the principal subunit oligomerization motifs in proteins. Its most characteristic feature is a heptad repeat pattern of primarily apolar residues that constitute the oligomer interface. Despite its simplicity, it is a highly versatile folding motif: coiled-coil-containing proteins exhibit a broad range of different functions related to the specific 'design' of their coiled-coil domains. The architecture of a particular coiled-coil domain determines its oligomerization state, rigidity and ability to function as a molecular recognition system. Much progress has been made towards understanding the factors that determine coiled-coil formation and stability. Here we discuss this highly versatile protein fo...
Natural helical bundles (HBs) constitute a ubiquitous class of protein folds built of two or more lo...
Due to the regularity of their interactions, coiled coils are frequently very stable proteins and ma...
Proteins collectively display a broad array of tertiary and quaternary structures, with many differe...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils were described more than 60 years ago as simple, repetitive structures me...
Protein science is being transformed by powerful computational methods for structure prediction and ...
Coiled coils are formed by two or more α-helices wrapped around one another. This structural motif o...
α-Helical coiled coils constitute one of the most diverse folds yet described. They range in length ...
α-Helical coiled coils are ubiquitous protein–protein-interaction domains. They share a relatively s...
Over the past five years, the structures of more than 20 proteins containing coiled-coil domains hav...
Over the past five years, the structures of more than 20 proteins containing coiled-coil domains hav...
Natural helical bundles (HBs) constitute a ubiquitous class of protein folds built of two or more lo...
The coiled-coil is a very common protein structural motif, consisting of two or more alpha helices i...
Natural helical bundles (HBs) constitute a ubiquitous class of protein folds built of two or more lo...
Due to the regularity of their interactions, coiled coils are frequently very stable proteins and ma...
Proteins collectively display a broad array of tertiary and quaternary structures, with many differe...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils are versatile protein domains, supporting a wide range of biological func...
alpha-Helical coiled coils were described more than 60 years ago as simple, repetitive structures me...
Protein science is being transformed by powerful computational methods for structure prediction and ...
Coiled coils are formed by two or more α-helices wrapped around one another. This structural motif o...
α-Helical coiled coils constitute one of the most diverse folds yet described. They range in length ...
α-Helical coiled coils are ubiquitous protein–protein-interaction domains. They share a relatively s...
Over the past five years, the structures of more than 20 proteins containing coiled-coil domains hav...
Over the past five years, the structures of more than 20 proteins containing coiled-coil domains hav...
Natural helical bundles (HBs) constitute a ubiquitous class of protein folds built of two or more lo...
The coiled-coil is a very common protein structural motif, consisting of two or more alpha helices i...
Natural helical bundles (HBs) constitute a ubiquitous class of protein folds built of two or more lo...
Due to the regularity of their interactions, coiled coils are frequently very stable proteins and ma...
Proteins collectively display a broad array of tertiary and quaternary structures, with many differe...