Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.

The analyses of 3967 representative proteins selected from the Protein Data Bank revealed the presence of 2803 pentapeptide and large palindrome sequences with known secondary structure conformation. These represent 2014 unique palindrome sequences. 60% palindromes are not associated with any regula...

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Main Authors: Settu Sridhar, Mallapragada Nagamruta, Kunchur Guruprasad
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2015-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4605511?pdf=render
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spelling doaj-21825f37ca364fdbab364478fc458de62020-11-25T01:24:10ZengPublic Library of Science (PLoS)PLoS ONE1932-62032015-01-011010e013956810.1371/journal.pone.0139568Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.Settu SridharMallapragada NagamrutaKunchur GuruprasadThe analyses of 3967 representative proteins selected from the Protein Data Bank revealed the presence of 2803 pentapeptide and large palindrome sequences with known secondary structure conformation. These represent 2014 unique palindrome sequences. 60% palindromes are not associated with any regular secondary structure and 28% are in helix conformation, 11% in strand conformation and 1% in the coil conformation. The average solvent accessibility values are in the range between 0-155.28 Å2 suggesting that the palindromes in proteins can be either buried, exposed to the solvent or share an intermittent property. The number of residue neighborhood contacts defined by interactions ≤ 3.2 Ǻ is in the range between 0-29 residues. Palindromes of the same length in helix, strand and coil conformation are associated with different amino acid residue preferences at the individual positions. Nearly, 20% palindromes interact with catalytic/active site residues, ligand or metal ions in proteins and may therefore be important for function in the corresponding protein. The average hydrophobicity values for the pentapeptide and large palindromes range between -4.3 to +4.32 and the number of palindromes is almost equally distributed between the negative and positive hydrophobicity values. The palindromes represent 107 different protein families and the hydrolases, transferases, oxidoreductases and lyases contain relatively large number of palindromes.http://europepmc.org/articles/PMC4605511?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Settu Sridhar
Mallapragada Nagamruta
Kunchur Guruprasad
spellingShingle Settu Sridhar
Mallapragada Nagamruta
Kunchur Guruprasad
Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
PLoS ONE
author_facet Settu Sridhar
Mallapragada Nagamruta
Kunchur Guruprasad
author_sort Settu Sridhar
title Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
title_short Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
title_full Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
title_fullStr Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
title_full_unstemmed Analyses of the Sequence and Structural Properties Corresponding to Pentapeptide and Large Palindromes in Proteins.
title_sort analyses of the sequence and structural properties corresponding to pentapeptide and large palindromes in proteins.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2015-01-01
description The analyses of 3967 representative proteins selected from the Protein Data Bank revealed the presence of 2803 pentapeptide and large palindrome sequences with known secondary structure conformation. These represent 2014 unique palindrome sequences. 60% palindromes are not associated with any regular secondary structure and 28% are in helix conformation, 11% in strand conformation and 1% in the coil conformation. The average solvent accessibility values are in the range between 0-155.28 Å2 suggesting that the palindromes in proteins can be either buried, exposed to the solvent or share an intermittent property. The number of residue neighborhood contacts defined by interactions ≤ 3.2 Ǻ is in the range between 0-29 residues. Palindromes of the same length in helix, strand and coil conformation are associated with different amino acid residue preferences at the individual positions. Nearly, 20% palindromes interact with catalytic/active site residues, ligand or metal ions in proteins and may therefore be important for function in the corresponding protein. The average hydrophobicity values for the pentapeptide and large palindromes range between -4.3 to +4.32 and the number of palindromes is almost equally distributed between the negative and positive hydrophobicity values. The palindromes represent 107 different protein families and the hydrolases, transferases, oxidoreductases and lyases contain relatively large number of palindromes.
url http://europepmc.org/articles/PMC4605511?pdf=render
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AT mallapragadanagamruta analysesofthesequenceandstructuralpropertiescorrespondingtopentapeptideandlargepalindromesinproteins
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