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Quantitative analysis of cyclic beta-turn models.
Perczel A, Fasman GD. Perczel A, et al. Protein Sci. 1992 Mar;1(3):378-95. doi: 10.1002/pro.5560010310. Protein Sci. 1992. PMID: 1304345 Free PMC article.
Recently, it has been reported (Hollosi, M., Kover, K.E., Holly, S., Radics, L., & Fasman, G.D., 1987, Biopolymers 26, 1527-1572; Perczel, A., Hollosi, M., Foxman, B.M., & Fasman, G.D., 1991a, J. ...The pure component CD curves of type I and type II beta-tur …
Recently, it has been reported (Hollosi, M., Kover, K.E., Holly, S., Radics, L., & Fasman, G.D., 1987, Biopolymers 26, 1527-1572; Per
Differentiation between transmembrane helices and peripheral helices by the deconvolution of circular dichroism spectra of membrane proteins.
Park K, Perczel A, Fasman GD. Park K, et al. Among authors: perczel a. Protein Sci. 1992 Aug;1(8):1032-49. doi: 10.1002/pro.5560010809. Protein Sci. 1992. PMID: 1338977 Free PMC article.
The convex constraint analysis algorithm (Perczel, A., Hollosi, M., Tusnady, G., & Fasman, G. D., 1991, Protein Eng. 4, 669-679), on the other hand, operates only on a collection of spectral data to extract the common spectral components with their spectr …
The convex constraint analysis algorithm (Perczel, A., Hollosi, M., Tusnady, G., & Fasman, G. D., 1991, Protein Eng. 4, 66 …
Deconvolution of the circular dichroism spectra of proteins: the circular dichroism spectra of the antiparallel beta-sheet in proteins.
Perczel A, Park K, Fasman GD. Perczel A, et al. Proteins. 1992 May;13(1):57-69. doi: 10.1002/prot.340130106. Proteins. 1992. PMID: 1594578
A recently developed algorithm, called Convex Constraint Analysis (CCA), was successfully applied to determine the circular dichroism (CD) spectra of the pure beta-pleated sheet in globular proteins. On the basis of X-ray diffraction determined secondary structures, the or
A recently developed algorithm, called Convex Constraint Analysis (CCA), was successfully applied to determine the circular dichroism
173 results