The three-dimensional structures of leucine-rich repeat (LRR) -containing proteins from five different families were previously predicted based on the crystal structure of the ribonuclease inhibitor. using an approach that combined homology-based modeling, structure-based sequence alignment of LRRs, and several rational assumptions. The structural models have been produced based on very limited sequence similarity, which, in general. cannot yield trustworthy predictions. Recently, the protein structures from three of these five families have been determined. In this report we estimate the quality of the modeling approach by comparing the models with the experimentally determined structures. The comparison suggests that the general architect...
Tandem repeats (TR) in proteins are common in nature and have several unique functions. They come in...
The three-dimensional structure of protein is encoded in its amino acid sequence. Modern structure p...
An ambitious goal of modern biology is to understand the structure(s), interaction(s) and function(s...
BACKGROUND: Leucine-rich repeats (LRRs) are present in proteins with diverse functions. The horsesho...
AbstractBackground: Leucine-rich repeats (LRRs) are present in proteins with diverse functions. The ...
Leucine-rich repeats (LRRs) are 20-29-residue sequence motifs present in a number of proteins with d...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Structure-based protein design offers a possibility of optimizing the overall shape of engineered bi...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
THE leucine-rich repeat is a recently characterized structural motif(1) used in molecular recognitio...
Leucine-rich repeats are short sequence motifs present in a number of proteins with diverse function...
Leucine-rich repeats are short sequence motifs present in over sixty proteins, all of which appear t...
Tandem repeats (TR) in proteins are common in nature and have several unique functions. They come in...
The three-dimensional structure of protein is encoded in its amino acid sequence. Modern structure p...
An ambitious goal of modern biology is to understand the structure(s), interaction(s) and function(s...
BACKGROUND: Leucine-rich repeats (LRRs) are present in proteins with diverse functions. The horsesho...
AbstractBackground: Leucine-rich repeats (LRRs) are present in proteins with diverse functions. The ...
Leucine-rich repeats (LRRs) are 20-29-residue sequence motifs present in a number of proteins with d...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
Structure-based protein design offers a possibility of optimizing the overall shape of engineered bi...
Background: Leucine-rich repeats (LRRs) are present in more than 6000 proteins. They are found in or...
THE leucine-rich repeat is a recently characterized structural motif(1) used in molecular recognitio...
Leucine-rich repeats are short sequence motifs present in a number of proteins with diverse function...
Leucine-rich repeats are short sequence motifs present in over sixty proteins, all of which appear t...
Tandem repeats (TR) in proteins are common in nature and have several unique functions. They come in...
The three-dimensional structure of protein is encoded in its amino acid sequence. Modern structure p...
An ambitious goal of modern biology is to understand the structure(s), interaction(s) and function(s...