virus structural protein - traducción al ruso
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virus structural protein - traducción al ruso

ALIGN MOLECULAR SEQUENCES USING SEQUENCE AND STRUCTURAL INFORMATION
Protein structural alignment; Protein structure comparison; Protein structural similarity; Approximate algorithms for structural alignment

virus structural protein      

медицина

вирусный структурный белок

protein-protein interaction         
  • The horseshoe shaped ribonuclease inhibitor (shown as wireframe) forms a protein–protein interaction with the ribonuclease protein. The contacts between the two proteins are shown as coloured patches.
  • Crystal structure of modified Gramicidin S determined by X-ray crystallography
  • doi=10.7554/eLife.05464 }}</ref>
  • Principle of tandem affinity purification
  • Principles of yeast and mammalian two-hybrid systems
  • NMR structure of cytochrome C illustrating its dynamics in solution
  • doi=10.1038/npjschz.2016.12 }}</ref>
  • [[Text mining]] protocol.
PHYSICAL INTERACTIONS AND CONSTRUCTIONS BETWEEN MULTIPLE PROTEINS
List of protein interactions; Protein-protein interactions; Protein protein interaction; Protein interaction; Protein-protein interaction assays; Protein-protein interaction; Protein–protein interactions; Protein-protein interface; Protein protein interfaces

общая лексика

белок-белковое взаимодействие

protein         
  • Constituent amino-acids can be analyzed to predict secondary, tertiary and quaternary protein structure, in this case hemoglobin containing [[heme]] units
  • The crystal structure of the [[chaperonin]], a huge protein complex. A single protein subunit is highlighted. Chaperonins assist protein folding.
  • encodes]] the amino acid sequence of a protein
  • ATP]] and [[glucose]].
  • [[John Kendrew]] with model of myoglobin in progress
  • Proteins in different [[cellular compartment]]s and structures tagged with [[green fluorescent protein]] (here, white)
  • [[Ribbon diagram]] of a mouse antibody against [[cholera]] that binds a [[carbohydrate]] antigen
  • Chemical structure of the peptide bond (bottom) and the three-dimensional structure of a peptide bond between an [[alanine]] and an adjacent amino acid (top/inset). The bond itself is made  of the [[CHON]] elements.
  • Resonance]] structures of the [[peptide bond]] that links individual amino acids to form a protein [[polymer]]
  • Molecular surface of several proteins showing their comparative sizes. From left to right are: [[immunoglobulin G]] (IgG, an [[antibody]]), [[hemoglobin]], [[insulin]] (a hormone), [[adenylate kinase]] (an enzyme), and [[glutamine synthetase]] (an enzyme).
  • Three possible representations of the three-dimensional structure of the protein [[triose phosphate isomerase]]. '''Left''': All-atom representation colored by atom type. '''Middle:'''  Simplified representation illustrating the backbone conformation, colored by secondary structure. '''Right''': Solvent-accessible surface representation colored by residue type (acidic residues red, basic residues blue, polar residues green, nonpolar residues white).
  • A ribosome produces a protein using mRNA as template
BIOMOLECULE CONSISTING OF CHAINS OF AMINO ACID RESIDUES
Proteins; Protein (biochemistry); Protein molecule; Protiens; Protien; Proteinaceous; Back bone (protein); Bacterial protein; Proteine; Protein action; Protein function; Cellular protein; Protein interactions; Structural protein; Structural proteins; Soluble protein

['prəuti:n]

общая лексика

белок

белковый

протеин

Смотрите также

anchor protein; animal protein; associated protein; autoimmune protein; autologous protein; blood protein; Ca-binding protein; capping protein; carrier protein; catabolite activator protein; channel-forming proteins; chimeric protein; coat protein; complete protein; conjugated protein; core protein; C-reactive protein; Cro protein; crude protein; cytolytic pore-forming proteins; cytoskeletal protein; defensive protein; denatured protein; designer protein; differentiation-inducing protein; DNA-binding protein; DNA-unwinding protein; factitious protein; fibrous protein; full-length protein; fused protein; fusogenic protein; globular protein; hapten-liganded protein; heat shock proteins; helix-destabilizing proteins; high protein; ice-nucleation protein; immunologically relevant protein; iron protein; marker protein; methyl-accepting chemotaxis protein; minor protein; multidomain protein; native protein; photooxidized protein; pore-forming proteins; priming protein; recombinant protein; red protein; reduced protein; repressor protein; reserve protein; retiaric protein; sensor protein; serum protein; simple protein; single-strand binding protein; structural protein; tolerated protein; transacting protein; truncated protein; vegetable protein; viral capsid protein; whey protein; whole-cell-lysate protein; protein nitrogen; regenerated protein

существительное

общая лексика

белок

протеин

химия

протеин, белок

Definición

вирус кори
В. рода парамиксовирусов; возбудитель одноименной болезни человека.

Wikipedia

Structural alignment

Structural alignment attempts to establish homology between two or more polymer structures based on their shape and three-dimensional conformation. This process is usually applied to protein tertiary structures but can also be used for large RNA molecules. In contrast to simple structural superposition, where at least some equivalent residues of the two structures are known, structural alignment requires no a priori knowledge of equivalent positions. Structural alignment is a valuable tool for the comparison of proteins with low sequence similarity, where evolutionary relationships between proteins cannot be easily detected by standard sequence alignment techniques. Structural alignment can therefore be used to imply evolutionary relationships between proteins that share very little common sequence. However, caution should be used in using the results as evidence for shared evolutionary ancestry because of the possible confounding effects of convergent evolution by which multiple unrelated amino acid sequences converge on a common tertiary structure.

Structural alignments can compare two sequences or multiple sequences. Because these alignments rely on information about all the query sequences' three-dimensional conformations, the method can only be used on sequences where these structures are known. These are usually found by X-ray crystallography or NMR spectroscopy. It is possible to perform a structural alignment on structures produced by structure prediction methods. Indeed, evaluating such predictions often requires a structural alignment between the model and the true known structure to assess the model's quality. Structural alignments are especially useful in analyzing data from structural genomics and proteomics efforts, and they can be used as comparison points to evaluate alignments produced by purely sequence-based bioinformatics methods.

The outputs of a structural alignment are a superposition of the atomic coordinate sets and a minimal root mean square deviation (RMSD) between the structures. The RMSD of two aligned structures indicates their divergence from one another. Structural alignment can be complicated by the existence of multiple protein domains within one or more of the input structures, because changes in relative orientation of the domains between two structures to be aligned can artificially inflate the RMSD.

¿Cómo se dice virus structural protein en Ruso? Traducción de &#39virus structural protein&#39 al Ru