isotypic specificity - определение. Что такое isotypic specificity
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Что (кто) такое isotypic specificity - определение

ABILITY OF BIOMOLECULES TO BIND SPECIFIC LIGANDS
Substrate specificity; Specificity (biochemistry); Enzyme specificity; Binding specificity
  • Sugars containing alpha-glycosidic linkages
  • A reaction that illustrates an enzyme cleaving a specific bond of the reactant in order to create two products

Sensitivity and specificity         
  • Sensitivity and specificity - The left half of the image with the solid dots represents individuals who have the condition, while the right half of the image with the hollow dots represents individuals who do not have the condition. The circle represents all individuals who tested positive.
STATISTICAL MEASURES OF THE PERFORMANCE OF A BINARY CLASSIFICATION TEST
Specificity (tests); Sensitivity (tests); Sensitivity (Tests); Sensitivity (test); Test sensitivity; Recall rate; Specificity (test); Specificity and sensitivity; Specificity (statistics); Se & sp; True Positive Rate; True Negative Rate; True positive rate; True negative rate; True-positive rate; False-positive rate; Sensitivity (statistics); Prevalence Threshold; Prevalence threshold; Test specificity; Assay specificity; Sensitivity and Specificity; Detection rate
Sensitivity and specificity mathematically describe the accuracy of a test which reports the presence or absence of a condition. Individuals for which the condition is satisfied are considered "positive" and those for which it is not are considered "negative".
specificity         
WIKIMEDIA DISAMBIGUATION PAGE
Specificity (disambiguation)
Chemical specificity         
Chemical specificity is the ability of binding site of a macromolecule (such as a protein) to bind specific ligands. The fewer ligands a protein can bind, the greater its specificity.

Википедия

Chemical specificity

Chemical specificity is the ability of binding site of a macromolecule (such as a protein) to bind specific ligands. The fewer ligands a protein can bind, the greater its specificity.

Specificity describes the strength of binding between a given protein and ligand. This relationship can be described by a dissociation constant, which characterizes the balance between bound and unbound states for the protein-ligand system. In the context of a single enzyme and a pair of binding molecules, the two ligands can be compared as stronger or weaker ligands (for the enzyme) on the basis of their dissociation constants. (A lower value corresponds to a stronger binding.)

Specificity for a set of ligands is unrelated to the ability of an enzyme to catalyze a given reaction, with the ligand as a substrate.

If a given enzyme has a high chemical specificity, this means that the set of ligands to which it binds is limited, such that neither binding events nor catalysis can occur at an appreciable rate with additional molecules.

An example of a protein-ligand pair whose binding activity can be highly specific is the antibody-antigen system. Affinity maturation typically leads to highly specific interactions, whereas naive antibodies are promiscuous and bind a larger number of ligands. Conversely, an example of a protein-ligand system that can bind substrates and catalyze multiple reactions effectively is the Cytochrome P450 system, which can be considered a promiscuous enzyme due to its broad specificity for multiple ligands. Proteases are a group of enzymes that show a broad range of cleavage specificities. Promiscuous proteases as digestive enzymes unspecifically degrade peptides, whereas highly specific proteases are involved in signaling cascades.