Predicting coiled coils from protein sequences

A Lupas, M Van Dyke, J Stock - Science, 1991 - science.org
A Lupas, M Van Dyke, J Stock
Science, 1991science.org
The probability that a residue in a protein is part of a coiled-coil structure was assessed by
comparison of its flanking sequences with sequences of known coiled-coil proteins. This
method was used to delineate coiled-coil domains in otherwise globular proteins, such as
the leucine zipper domains in transcriptional regulators, and to predict regions of
discontinuity within coiled-coil structures, such as the hinge region in myosin. More than 200
proteins that probably have coiled-coil domains were identified in GenBank, including α-and …
The probability that a residue in a protein is part of a coiled-coil structure was assessed by comparison of its flanking sequences with sequences of known coiled-coil proteins. This method was used to delineate coiled-coil domains in otherwise globular proteins, such as the leucine zipper domains in transcriptional regulators, and to predict regions of discontinuity within coiled-coil structures, such as the hinge region in myosin. More than 200 proteins that probably have coiled-coil domains were identified in GenBank, including α- and β-tubulins, flagellins, G protein β subunits, some bacterial transfer RNA synthetases, and members of the heat shock protein (Hsp70) family.
AAAS