Literature DB >> 18302007

Effect of low-complexity regions on protein structure determination.

Ryan M Bannen1, Craig A Bingman, George N Phillips.   

Abstract

It has been previously shown that protein sequences containing a quasi-repetitive assortment of amino acids are common in genomes and databases such as Swiss-Prot but are under-represented in the structure-based Protein Data Bank (PDB). Structural genomics groups have been using the absence of these "low-complexity" sequences for several years as a way to select proteins that have a good chance of successful structure determination. In this study, we examine the data deposited in the PDB as well as the available data from structural genomics groups in TargetDB and PepcDB to reveal interesting trends that could be taken into consideration when using low-complexity sequences as part of the target selection process.

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Year:  2008        PMID: 18302007     DOI: 10.1007/s10969-008-9039-6

Source DB:  PubMed          Journal:  J Struct Funct Genomics        ISSN: 1345-711X


  22 in total

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Authors:  H M Berman; J Westbrook; Z Feng; G Gilliland; T N Bhat; H Weissig; I N Shindyalov; P E Bourne
Journal:  Nucleic Acids Res       Date:  2000-01-01       Impact factor: 16.971

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Journal:  Proteins       Date:  2001-01-01

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Authors:  Chern-Sing Goh; Ning Lan; Shawn M Douglas; Baolin Wu; Nathaniel Echols; Andrew Smith; Duncan Milburn; Gaetano T Montelione; Hongyu Zhao; Mark Gerstein
Journal:  J Mol Biol       Date:  2004-02-06       Impact factor: 5.469

4.  A new algorithm for detecting low-complexity regions in protein sequences.

Authors:  Sung W Shin; Sam M Kim
Journal:  Bioinformatics       Date:  2004-08-27       Impact factor: 6.937

5.  The solution structure of an HMG-I(Y)-DNA complex defines a new architectural minor groove binding motif.

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Journal:  Nat Struct Biol       Date:  1997-08

6.  The C-terminal half of the anti-sigma factor, FlgM, becomes structured when bound to its target, sigma 28.

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Journal:  Nat Struct Biol       Date:  1997-04

7.  Simple sequence is abundant in eukaryotic proteins.

Authors:  G B Golding
Journal:  Protein Sci       Date:  1999-06       Impact factor: 6.725

8.  Sequence Data Analysis for Long Disordered Regions Prediction in the Calcineurin Family.

Authors: 
Journal:  Genome Inform Ser Workshop Genome Inform       Date:  1997

Review 9.  Intrinsically disordered protein.

Authors:  A K Dunker; J D Lawson; C J Brown; R M Williams; P Romero; J S Oh; C J Oldfield; A M Campen; C M Ratliff; K W Hipps; J Ausio; M S Nissen; R Reeves; C Kang; C R Kissinger; R W Bailey; M D Griswold; W Chiu; E C Garner; Z Obradovic
Journal:  J Mol Graph Model       Date:  2001       Impact factor: 2.518

10.  Protein disorder prediction: implications for structural proteomics.

Authors:  Rune Linding; Lars Juhl Jensen; Francesca Diella; Peer Bork; Toby J Gibson; Robert B Russell
Journal:  Structure       Date:  2003-11       Impact factor: 5.006

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  5 in total

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Authors:  Wilfried Haerty; G Brian Golding
Journal:  Genome Res       Date:  2010-01-07       Impact factor: 9.043

2.  The first missense mutation of NHS gene in a Tunisian family with clinical features of NHS syndrome including cardiac anomaly.

Authors:  Manèl Chograni; Imen Rejeb; Lamia Ben Jemaa; Myriam Châabouni; Habiba Chaabouni Bouhamed
Journal:  Eur J Hum Genet       Date:  2011-05-11       Impact factor: 4.246

3.  Structural biology of TRP channels.

Authors:  Minghui Li; Yong Yu; Jian Yang
Journal:  Adv Exp Med Biol       Date:  2011       Impact factor: 2.622

4.  The Center for Eukaryotic Structural Genomics.

Authors:  John L Markley; David J Aceti; Craig A Bingman; Brian G Fox; Ronnie O Frederick; Shin-ichi Makino; Karl W Nichols; George N Phillips; John G Primm; Sarata C Sahu; Frank C Vojtik; Brian F Volkman; Russell L Wrobel; Zsolt Zolnai
Journal:  J Struct Funct Genomics       Date:  2009-01-08

5.  Understanding and identifying amino acid repeats.

Authors:  Hong Luo; Harm Nijveen
Journal:  Brief Bioinform       Date:  2014-07       Impact factor: 11.622

  5 in total

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