<div><p>Calculation of cleavage entropies allows to quantify, map and compare protease substrate specificity by an information entropy based approach. The metric intrinsically depends on the number of experimentally determined substrates (data points). Thus a statistical analysis of its numerical stability is crucial to estimate the systematic error made by estimating specificity based on a limited number of substrates. In this contribution, we show the mathematical basis for estimating the uncertainty in cleavage entropies. Sets of cleavage entropies are calculated using experimental cleavage data and modeled extreme cases. By analyzing the underlying mathematics and applying statistical tools, a linear dependence of the metric in respect ...
Specific molecular recognition of substrates by enzymes, e.g., proteases, is critical for maintainin...
<p>Based on experimental substrate data the specificity A is calculated. Through bootstrapping a sub...
<div><p>Sequence logos are frequently used to illustrate substrate preferences and specificity of pr...
<div><p>A purely information theory-guided approach to quantitatively characterize protease specific...
A purely information theory-guided approach to quantitatively characterize protease specificity is e...
<p>Ranking of 49 proteases with respective MEROPS clan (including the added 2 glutamic proteases) in...
Characterizing the specificity of proteases is important to illuminate their role as signaling moiet...
Proteases are ubiquitous and significant to both normal cellular functioning and disease states. Th...
Abstract Background The mechanism of action of proteases has been widely studied based on substrate ...
Proteases are among the largest protein families and critical regulators of biochemical processes li...
Background: Proteases are key drivers in many biological processes, in part due to their specificity...
Proteases are among the largest protein families and critical regulators of biochemical processes li...
Many important experiments in proteomics including protein digestion, enzyme substrate screening, en...
Specific molecular recognition of substrates by enzymes, e.g., proteases, is critical for maintainin...
<p>Serine proteases and associated MEROPS clans sorted according to the number of known substrates n...
Specific molecular recognition of substrates by enzymes, e.g., proteases, is critical for maintainin...
<p>Based on experimental substrate data the specificity A is calculated. Through bootstrapping a sub...
<div><p>Sequence logos are frequently used to illustrate substrate preferences and specificity of pr...
<div><p>A purely information theory-guided approach to quantitatively characterize protease specific...
A purely information theory-guided approach to quantitatively characterize protease specificity is e...
<p>Ranking of 49 proteases with respective MEROPS clan (including the added 2 glutamic proteases) in...
Characterizing the specificity of proteases is important to illuminate their role as signaling moiet...
Proteases are ubiquitous and significant to both normal cellular functioning and disease states. Th...
Abstract Background The mechanism of action of proteases has been widely studied based on substrate ...
Proteases are among the largest protein families and critical regulators of biochemical processes li...
Background: Proteases are key drivers in many biological processes, in part due to their specificity...
Proteases are among the largest protein families and critical regulators of biochemical processes li...
Many important experiments in proteomics including protein digestion, enzyme substrate screening, en...
Specific molecular recognition of substrates by enzymes, e.g., proteases, is critical for maintainin...
<p>Serine proteases and associated MEROPS clans sorted according to the number of known substrates n...
Specific molecular recognition of substrates by enzymes, e.g., proteases, is critical for maintainin...
<p>Based on experimental substrate data the specificity A is calculated. Through bootstrapping a sub...
<div><p>Sequence logos are frequently used to illustrate substrate preferences and specificity of pr...