Examples of 'substrate specificity' in a sentence

Meaning of "substrate specificity"

Substrate specificity refers to the selectivity of an enzyme or protein for a specific substrate. It describes the ability of the enzyme to recognize and bind to its preferred substrate, leading to a specific chemical reaction. Substrate specificity is crucial for the proper functioning of enzymatic reactions in biological systems and plays a vital role in various processes, including metabolism, signaling, and DNA replication

How to use "substrate specificity" in a sentence

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substrate specificity
The substrate specificity of these bands was investigated.
Alternative dimerization could modulate substrate specificity.
They vary in substrate specificity and subcellular localization.
Fusion molecules are useful in altering substrate specificity.
Explaining substrate specificity and the evolution of function.
The enzyme exhibits a narrow substrate specificity.
Substrate specificity and mechanism of action.
Influence of pH on substrate specificity and chemosensitivity.
Substrate specificity of the enzyme were changed.
Identification of prohormone convertase substrate specificity.
These include substrate specificity and expression control.
Known nucleoside kinases have a limited substrate specificity.
Substrate specificity of the amylase.
Another important property of proteases is their substrate specificity.
Variations in substrate specificity profiles of different enzymes have been identified.

See also

Collagenases also have a very narrow substrate specificity.
The substrate specificity is broad for the amino terminal residue.
Enzymatic action and substrate specificity.
Substrate specificity and inhibitor sensitivity of the enzymes were used to classify esterases.
It is now known that isomerases have broad substrate specificity.
These enzymes have substrate specificity and catalyze specific reactions.
The enzymes display overlapping but distinct substrate specificity.
These enzymes or proteins have substrate specificity and catalyze specific reactions.
Phosphatases can be subdivided based upon their substrate specificity.
These proteases have a broad substrate specificity and work in a wide pH range.
Neither of these additions destroyed enzyme activity or substrate specificity.
Subtilisin proteases are enzymes with substrate specificity similar to that of subtilisin.
A modelling study has been performed to understand the AspAT substrate specificity.
Substrate specificity is generally illustrated by the action of an enzyme on two synthetic substrates.
This method is useful for determining substrate specificity of a given protease.
Thus substrate specificity of the aminopeptidase is important to satisfy the above conditions.
The increased activity is not accompanied by changes in the substrate specificity.
The substrate specificity using natural substrates in the yeast was further investigated.
Such differences can include differences in substrate specificity or level of activity.
The function or substrate specificity these cleavage sites impart has yet to be determined.
The evolved enzymes are screened for their substrate specificity on acetolactate.
Substrate specificity and cleavage activity typically are increased compared with a template protease.
Each isoform of human sirtuin is known to have different substrate specificity.
Two examples for changing the substrate specificity of the polypeptides are shown below.
As such they can be considered to have relatively low substrate specificity.
Generating mutants with high substrate specificity and further enhanced thermo stability.
The two classes of collagenases have similar but complementary substrate specificity.
All three have broad substrate specificity and remain active at a variable pH range.
At present there are limited studies for the hNEU substrate specificity.
The purified enzyme was tested for substrate specificity with various hydantoins as substrate.
The enzyme can be added by selecting appropriately in light of its substrate specificity.
Caspase substrate specificity has been widely used in caspase based inhibitor and drug design.
Hence other parameters than the xylanases substrate specificity might be of importance.
Various specific residues have been identified as being important with regard to substrate specificity.
Each phospholipase subclass has different substrate specificity based on its target cleavage site.

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