A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins

<p>Abstract</p> <p>Background</p> <p>It has been previously shown that palindromic sequences are frequently observed in proteins. However, our knowledge about their evolutionary origin and their possible importance is incomplete.</p> <p>Results</p> <...

Full description

Bibliographic Details
Main Authors: Pezeshk Hamid, Sadeghi Mehdi, Arab Shahriar, Katanforoush Ali, Kargar Mehdi, Sheari Armita, Eslahchi Changiz, Marashi Sayed-Amir
Format: Article
Language:English
Published: BMC 2008-06-01
Series:BMC Bioinformatics
Online Access:http://www.biomedcentral.com/1471-2105/9/274
id doaj-3d48a37a60584680955e37532e011c00
record_format Article
spelling doaj-3d48a37a60584680955e37532e011c002020-11-25T00:25:35ZengBMCBMC Bioinformatics1471-21052008-06-019127410.1186/1471-2105-9-274A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteinsPezeshk HamidSadeghi MehdiArab ShahriarKatanforoush AliKargar MehdiSheari ArmitaEslahchi ChangizMarashi Sayed-Amir<p>Abstract</p> <p>Background</p> <p>It has been previously shown that palindromic sequences are frequently observed in proteins. However, our knowledge about their evolutionary origin and their possible importance is incomplete.</p> <p>Results</p> <p>In this work, we tried to revisit this relatively neglected phenomenon. Several questions are addressed in this work. (1) It is known that there is a large chance of finding a palindrome in low complexity sequences (i.e. sequences with extreme amino acid usage bias). What is the role of sequence complexity in the evolution of palindromic sequences in proteins? (2) Do palindromes coincide with conserved protein sequences? If yes, what are the functions of these conserved segments? (3) In case of conserved palindromes, is it always the case that the whole conserved pattern is also symmetrical? (4) Do palindromic protein sequences form regular secondary structures? (5) Does sequence similarity of the two "sides" of a palindrome imply structural similarity? For the first question, we showed that the complexity of palindromic peptides is significantly lower than randomly generated palindromes. Therefore, one can say that palindromes occur frequently in low complexity protein segments, without necessarily having a defined function or forming a special structure. Nevertheless, this does not rule out the possibility of finding palindromes which play some roles in protein structure and function. In fact, we found several palindromes that overlap with conserved protein Blocks of different functions. However, in many cases we failed to find any symmetry in the conserved regions of corresponding Blocks. Furthermore, to answer the last two questions, the structural characteristics of palindromes were studied. It is shown that palindromes may have a great propensity to form α-helical structures. Finally, we demonstrated that the two sides of a palindrome generally do not show significant structural similarities.</p> <p>Conclusion</p> <p>We suggest that the puzzling abundance of palindromic sequences in proteins is mainly due to their frequent concurrence with low-complexity protein regions, rather than a global role in the protein function. In addition, palindromic sequences show a relatively high tendency to form helices, which might play an important role in the evolution of proteins that contain palindromes. Moreover, reverse similarity in peptides does not necessarily imply significant structural similarity. This observation rules out the importance of palindromes for forming symmetrical structures. Although palindromes frequently overlap with conserved Blocks, we suggest that palindromes overlap with Blocks only by coincidence, rather than being involved with a certain structural fold or protein domain.</p> http://www.biomedcentral.com/1471-2105/9/274
collection DOAJ
language English
format Article
sources DOAJ
author Pezeshk Hamid
Sadeghi Mehdi
Arab Shahriar
Katanforoush Ali
Kargar Mehdi
Sheari Armita
Eslahchi Changiz
Marashi Sayed-Amir
spellingShingle Pezeshk Hamid
Sadeghi Mehdi
Arab Shahriar
Katanforoush Ali
Kargar Mehdi
Sheari Armita
Eslahchi Changiz
Marashi Sayed-Amir
A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
BMC Bioinformatics
author_facet Pezeshk Hamid
Sadeghi Mehdi
Arab Shahriar
Katanforoush Ali
Kargar Mehdi
Sheari Armita
Eslahchi Changiz
Marashi Sayed-Amir
author_sort Pezeshk Hamid
title A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
title_short A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
title_full A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
title_fullStr A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
title_full_unstemmed A tale of two symmetrical tails: Structural and functional characteristics of palindromes in proteins
title_sort tale of two symmetrical tails: structural and functional characteristics of palindromes in proteins
publisher BMC
series BMC Bioinformatics
issn 1471-2105
publishDate 2008-06-01
description <p>Abstract</p> <p>Background</p> <p>It has been previously shown that palindromic sequences are frequently observed in proteins. However, our knowledge about their evolutionary origin and their possible importance is incomplete.</p> <p>Results</p> <p>In this work, we tried to revisit this relatively neglected phenomenon. Several questions are addressed in this work. (1) It is known that there is a large chance of finding a palindrome in low complexity sequences (i.e. sequences with extreme amino acid usage bias). What is the role of sequence complexity in the evolution of palindromic sequences in proteins? (2) Do palindromes coincide with conserved protein sequences? If yes, what are the functions of these conserved segments? (3) In case of conserved palindromes, is it always the case that the whole conserved pattern is also symmetrical? (4) Do palindromic protein sequences form regular secondary structures? (5) Does sequence similarity of the two "sides" of a palindrome imply structural similarity? For the first question, we showed that the complexity of palindromic peptides is significantly lower than randomly generated palindromes. Therefore, one can say that palindromes occur frequently in low complexity protein segments, without necessarily having a defined function or forming a special structure. Nevertheless, this does not rule out the possibility of finding palindromes which play some roles in protein structure and function. In fact, we found several palindromes that overlap with conserved protein Blocks of different functions. However, in many cases we failed to find any symmetry in the conserved regions of corresponding Blocks. Furthermore, to answer the last two questions, the structural characteristics of palindromes were studied. It is shown that palindromes may have a great propensity to form α-helical structures. Finally, we demonstrated that the two sides of a palindrome generally do not show significant structural similarities.</p> <p>Conclusion</p> <p>We suggest that the puzzling abundance of palindromic sequences in proteins is mainly due to their frequent concurrence with low-complexity protein regions, rather than a global role in the protein function. In addition, palindromic sequences show a relatively high tendency to form helices, which might play an important role in the evolution of proteins that contain palindromes. Moreover, reverse similarity in peptides does not necessarily imply significant structural similarity. This observation rules out the importance of palindromes for forming symmetrical structures. Although palindromes frequently overlap with conserved Blocks, we suggest that palindromes overlap with Blocks only by coincidence, rather than being involved with a certain structural fold or protein domain.</p>
url http://www.biomedcentral.com/1471-2105/9/274
work_keys_str_mv AT pezeshkhamid ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT sadeghimehdi ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT arabshahriar ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT katanforoushali ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT kargarmehdi ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT sheariarmita ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT eslahchichangiz ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT marashisayedamir ataleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT pezeshkhamid taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT sadeghimehdi taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT arabshahriar taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT katanforoushali taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT kargarmehdi taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT sheariarmita taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT eslahchichangiz taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
AT marashisayedamir taleoftwosymmetricaltailsstructuralandfunctionalcharacteristicsofpalindromesinproteins
_version_ 1725348173844578304