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1.
Biofizika ; 60(1): 5-14, 2015.
Article in Russian | MEDLINE | ID: mdl-25868335

ABSTRACT

The work presents the results of an exhaustive conformational analysis of ß-turns involving amino acid residues with disallowed backbone conformation of the polypeptide chain. It is known that the first residue of the ß-turn (Asn47) of the distal ß-hairpin in the α-spectrin SH3-domain is characterized by sterically disallowed main chain conformation (values of the dihedral angles (φ and ψ are in the right bottom quadrant of the Ramachandran plot). All α-spectrin structures with the anomalous elements deposited in the PDB were analysed. We hypothesized that the formation of disallowed conformation may occur through the fixation (due to the SH3 domain structure) of the adjacent to the ß-turn amino acid residues with the ß-structure. These residues are disposed in such a manner that ß-turn conformation of the residues contributes just to the disallowed local conformation of this residue whereas any other ß-turn conformations (with allowed local conformation) are impossible. To test this hypothesis an exhaustive conformational analysis of the ß-bend has been performed by altering internal coordinates (two pairs of φ and ψ angles and two Ω angles). The conformations were selected as a result of grid search procedure with. 1 degrees step that corresponded to stereochemically allowed local deformations of the polypeptide chain segment forming the ß-turn. In all conformations obtained the local conformation of Asn47 rests in the disallowed region. The conformations found include conformations coinciding with experimentally determined structures from the PDB as well as an additional variant that differs from X-ray structure in values of a pair of φ and ψ angles of the second residue belonging to the ß-bend. Values of these angles fall in the region of the Ramachandran plot near the line φ = 0 (and negative values of ψ) i.e. in strongly disallowed region without experimental points. Therefore the additional variants of the ß-turn local deformation are impossible to observe in experiment. Thus, the idea that disallowed conformation is intruded to the ß-bend by fixation of adjacent residues receives confirmation in this work. The topological limitations in a context of the structure in such kind of ß-hairpins exclude the allowed local conformations.


Subject(s)
Spectrin/chemistry , Humans , Protein Structure, Secondary , src Homology Domains
2.
Biofizika ; 58(6): 975-80, 2013.
Article in Russian | MEDLINE | ID: mdl-25486755

ABSTRACT

The classification of amino acid residues based on the events of contact formation between distinct amino acid and selected nucleotides was constructed. Thus, the most integral properties, that characterize interactions in organization of DNA-protein complexes, were used. We applied the Voronoi-Delaunay tessellation to draw statistics of contacts and area of contacts for the set included 1937 DNA-protein complexes. Similarities of amino acid residues have been searched for based on the comparison of corresponded rows and matrixes of contacts and areas of contacts. Nine measures of distance were used for estimation of rows similarity degree. The procedure of clustering amino acids in groups included three hierarchical and two nonhierarchical methods. A total tree was built using nine techniques of estimating distance with three hierarchical clustering methods. It was shown that clustering centers in the main groups are always constant while other relationships between objects vary. Clustering of binary associations was found for the most amino acids. Major classes of up to six amino acids correspond to the certain local structures of the polypeptide chain in the context of amino acid composition. These data should be taken into account when designing DNA-protein ligands.


Subject(s)
Amino Acids/chemistry , DNA-Binding Proteins/chemistry , DNA/chemistry , Amino Acids/classification , DNA-Binding Proteins/classification , Hydrophobic and Hydrophilic Interactions , Ligands , Models, Molecular , Nucleotides/chemistry , Protein Binding
3.
Biofizika ; 58(6): 1069-73, 2013.
Article in Russian | MEDLINE | ID: mdl-25486767

ABSTRACT

In the work the arguments are presented in favor of the idea on the role of conformationally stable oligo-peptides in specific long-distance interactions in phenomena of molecular recognition during various biological processes. Original authors' and literature data are taken into account. The examples of conformationally stable short oligopeptides participation in alpha-helix and collagen type structures formation are given simultaneously with theoretical approaches. The conformationally stable oligopeptides obtained in the course of PDB bank analysis are discussed. The role of amino acids sequence in collagen helix formation is shown.


Subject(s)
Models, Molecular , Peptides/chemistry , Proteins/chemistry , Amino Acids/chemistry , Collagen/chemistry , Protein Conformation , Protein Structure, Secondary
4.
Biofizika ; 57(6): 1062-7, 2012.
Article in Russian | MEDLINE | ID: mdl-23272589

ABSTRACT

It was shown that selective interactions between helical segments of macromolecules can realize in globular proteins in the segments characterized by the same periodicities of charge distribution i.e. between conformationally conservative oligopeptides. It was found that in the macromolecules of alpha-helical proteins conformationally conservative oligopeptides are disposed at a distance being characteristic of direct interactions. For representatives of many structural families of alpha-type proteins specific disposition of conformationally conservative segments is observed. This disposition is inherent to a particular structural family. Disposition of conformationally conservative segments is not related to homology of the amino acid sequence but reflects peculiarities of native 3D-architectures of protein globules.


Subject(s)
Enzymes/chemistry , Models, Theoretical , Oligopeptides/chemistry , Protein Folding , Protein Structure, Secondary
5.
Biofizika ; 56(4): 594-601, 2011.
Article in Russian | MEDLINE | ID: mdl-21950060

ABSTRACT

The process of globular structure formation from a long molecular chain has been examined. In the course of this process, various regions of the chain interact with one another. We classify the bonds formed during this process as "correct" and "erroneous" ones. The term "correct" bonds implies the bonds characteristic for a completely formed native globular structure. All other bonds can be treated as "erroneous". It was demonstrated that the process of globule formation may proceed actually without the formation and the following decay of "erroneous" bonds. Our model permits one to avoid the examination of numerous "erroneous" variants since, between the regions of the chain that form "correct" bonds, long-distance interactions characterized simultaneously by high selectivity take place. The existence of interactions of this kind facilitates the drawing together and subsequent interaction of just these regions of the chain that yield "correct" bonds. Based on the data bank analysis, it was demonstrated that the model elaborated is valid not only for abstract structures but also for real polypeptide chains capable of forming protein globules and superhelical fibrils.


Subject(s)
Models, Molecular , Protein Folding , Proteins/chemistry
6.
Biofizika ; 54(6): 1137-43, 2009.
Article in Russian | MEDLINE | ID: mdl-20067196

ABSTRACT

The disposition of conformationally stable tetrapeptides and the segments containing these peptides in polypeptide chains of proteins from different structural and functional groups has been analyzed. It was shown that the disposition of segments of this kind can be treated as a statistical one. More than 60% of stable peptides in the globula space are separated by distances no greater than 5 A.


Subject(s)
Oligopeptides/chemistry , Proteins/chemistry , Monte Carlo Method , Protein Conformation
7.
Biofizika ; 53(4): 556-61, 2008.
Article in Russian | MEDLINE | ID: mdl-18819270

ABSTRACT

It has been found that 1500 tetrapeptides out of 160000 possible combinations occurring in proteins exhibit preference for particular conformational states. Most conformationally stable tetrapeptides obtained in the analysis of a sampling containing 706 proteins are in the alpha-helical form. The features of the amino acid composition of conformationally stable oligopeptides have been studied.


Subject(s)
Models, Molecular , Oligopeptides/chemistry , Proteins/chemistry , Protein Structure, Secondary
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