Late Embryogenesis Abundant Proteins (LEAPs) are ubiquitous proteins expected to play major roles in desiccation tolerance. Little is known about their structure - function relationships because of the scarcity of 3-D structures for LEAPs. The previous building of LEAPdb, a database dedicated to LEAPs from plants and other organisms, led to the classification of 710 LEAPs into 12 non-overlapping classes with distinct properties. Using this resource, numerous physico-chemical properties of LEAPs and amino acid usage by LEAPs have been computed and statistically analyzed, revealing distinctive features for each class. This unprecedented analysis allowed a rigorous characterization of the 12 LEAP classes, which differed also in multiple struct...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
To investigate how the properties of individual amino acids result in proteins with particular struc...
Late embryogenesis abundant (LEA) proteins play a protective role during desiccation and oxidation s...
<div><p>Late Embryogenesis Abundant Proteins (LEAPs) are ubiquitous proteins expected to play major ...
Late Embryogenesis Abundant Proteins (LEAPs) are ubiquitous proteins expected to play major roles in...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Desiccation or extreme water loss leads to protein denaturation, aggregation, and degradation and im...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Abstract Background The late embryogenesis abundant (LEA) proteins cover a number of loosely related...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is a resurrection plant that can survive long desiccation periods (extreme los...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
To investigate how the properties of individual amino acids result in proteins with particular struc...
Late embryogenesis abundant (LEA) proteins play a protective role during desiccation and oxidation s...
<div><p>Late Embryogenesis Abundant Proteins (LEAPs) are ubiquitous proteins expected to play major ...
Late Embryogenesis Abundant Proteins (LEAPs) are ubiquitous proteins expected to play major roles in...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Desiccation or extreme water loss leads to protein denaturation, aggregation, and degradation and im...
Late Embryogenesis Abundant proteins (LEAPs) comprise several diverse protein families and are mostl...
Abstract Background The late embryogenesis abundant (LEA) proteins cover a number of loosely related...
RIGHTS : This article is licensed under the BioMed Central licence at http://www.biomedcentral.com/...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is a resurrection plant that can survive long desiccation periods (extreme los...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
To investigate how the properties of individual amino acids result in proteins with particular struc...
Late embryogenesis abundant (LEA) proteins play a protective role during desiccation and oxidation s...