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MultiCoil: A program for predicting two‐and three‐stranded coiled coils

Protein Science · 1997 · Vol. 6(6) · pp. 1179–1189
Ethan WolfPeter S. KimBonnie Berger

Abstract

A new multidimensional scoring approach for identifying and distinguishing trimeric and dimeric coiled coils is implemented in the MultiCoil program. The program extends the two-stranded coiled-coil prediction program PairCoil to the identification of three-stranded coiled coils. The computations are based upon data gathered from a three-stranded coiled-coil database comprising 6,319 amino acid residues, as well as from the previously constructed two-stranded coiled-coil database. In addition to identifying coiled coils not predicted by the two-stranded database programs, MultiCoil accurately classifies the oligomerization states of known dimeric and trimeric coiled coils. Analysis of the MultiCoil scores provides insight into structural features of coiled coils, and yields estimates that 0.9% of all protein residues form three-stranded coiled coils and that 1.5% form two-stranded coiled coils. The MultiCoil program is available at http:/(/)theory.lcs.mit.edu/multicoil.

Enzyme Structure and FunctionProtein Structure and DynamicsRNA and protein synthesis mechanismsCoiled coilElectromagnetic coilComputer sciencePhysicsBiologyBiophysics

MeSH terms

AlgorithmsForecastingMolecular Sequence DataProbabilitySoftwareReproducibility of ResultsDatabases, FactualProtein Structure, SecondaryProtein Folding
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721
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References
α‐Helical coiled coils and bundles: How to design an α‐helical protein
Proteins Structure Function and Bioinformatics · 1990 · 719 citations
A trimeric structural domain of the HIV-1 transmembrane glycoprotein
Nature Structural & Molecular Biology · 1995 · 704 citations
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