The cupin superfamily is extremely diverse and includes catalytically inactive seed storage proteins, sugar-binding metal-independent epimerases, and metal-dependent enzymes possessing dioxygenase, decarboxylase, and other activities. Although numerous proteins of this superfamily have been structurally characterized, the functions of many of them have not been experimentally determined. We report the first use of protein similarity networks (PSNs) to visualize trends of sequence and structure in order to make functional inferences in this remarkably diverse superfamily. PSNs provide a way to visualize relatedness of structure and sequence among a given set of proteins. Structure- and sequence-based clustering of cupin members reflects func...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Biology's entrance into the genomic age has meant dramatic changes. Biologists once carried out pain...
<div><p>The cupin superfamily is extremely diverse and includes catalytically inactive seed storage ...
The cupin superfamily is extremely diverse and includes catalytically inactive seed storage proteins...
The cupin superfamily is extremely diverse and includes catalytically inactive seed storage proteins...
Background: The members of cupin superfamily exhibit large variations in their sequences, functions,...
Background: The members of cupin superfamily exhibit large variations in their sequences, function...
The members of cupin superfamily exhibit large variations in their sequences, functions, organizatio...
Research in the recent decade has demonstrated the usefulness of protein network knowledge in furthe...
The cupin superfamily of proteins, named on the basis of a conserved β-barrel fold (‘cupa’ is the La...
The dramatic increase in heterogeneous types of biological data--in particular, the abundance of new...
The cupin superfamily is a group of functionally diverse proteins that are found in all three kingdo...
The cupin superfamily is a group of functionally diverse proteins that are found in all three kingdo...
AbstractA set of proteins is a complex system whose elements are interrelated on the concept of sequ...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Biology's entrance into the genomic age has meant dramatic changes. Biologists once carried out pain...
<div><p>The cupin superfamily is extremely diverse and includes catalytically inactive seed storage ...
The cupin superfamily is extremely diverse and includes catalytically inactive seed storage proteins...
The cupin superfamily is extremely diverse and includes catalytically inactive seed storage proteins...
Background: The members of cupin superfamily exhibit large variations in their sequences, functions,...
Background: The members of cupin superfamily exhibit large variations in their sequences, function...
The members of cupin superfamily exhibit large variations in their sequences, functions, organizatio...
Research in the recent decade has demonstrated the usefulness of protein network knowledge in furthe...
The cupin superfamily of proteins, named on the basis of a conserved β-barrel fold (‘cupa’ is the La...
The dramatic increase in heterogeneous types of biological data--in particular, the abundance of new...
The cupin superfamily is a group of functionally diverse proteins that are found in all three kingdo...
The cupin superfamily is a group of functionally diverse proteins that are found in all three kingdo...
AbstractA set of proteins is a complex system whose elements are interrelated on the concept of sequ...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Amino acids committed to a particular function correlate tightly along evolution and tend to form cl...
Biology's entrance into the genomic age has meant dramatic changes. Biologists once carried out pain...