Literature DB >> 21365221

Study of protein complexes via homology modeling, applied to cysteine proteases and their protein inhibitors.

Ozlem Tastan Bishop1, Matthys Kroon.   

Abstract

This paper develops and evaluates large-scale calculation of 3D structures of protein complexes by homology modeling as a promising new approach for protein docking. The complexes investigated were papain-like cysteine proteases and their protein inhibitors, which play numerous roles in human and parasitic metabolisms. The structural modeling was performed in two parts. For the first part (evaluation set), nine crystal structure complexes were selected, 1325 homology models of known complexes were rebuilt by various templates including hybrids, allowing an analysis of the factors influencing the accuracy of the models. The important considerations for modeling the interface were protease coverage and inhibitor sequence identity. In the second part (study set), the findings of the evaluation set were used to select appropriate templates to model novel cysteine protease-inhibitor complexes from human and malaria parasites Plasmodium falciparum and Plasmodium vivax. The energy scores, considering the evaluation set, indicate that the models are of high accuracy.

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Year:  2011        PMID: 21365221     DOI: 10.1007/s00894-011-0990-y

Source DB:  PubMed          Journal:  J Mol Model        ISSN: 0948-5023            Impact factor:   1.810


  26 in total

1.  The Protein Data Bank.

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

Review 2.  Human and parasitic papain-like cysteine proteases: their role in physiology and pathology and recent developments in inhibitor design.

Authors:  Fabien Lecaille; Jadwiga Kaleta; Dieter Brömme
Journal:  Chem Rev       Date:  2002-12       Impact factor: 60.622

3.  Scoring function for automated assessment of protein structure template quality.

Authors:  Yang Zhang; Jeffrey Skolnick
Journal:  Proteins       Date:  2004-12-01

4.  Predicting 3D structures of transient protein-protein complexes by homology.

Authors:  Petras J Kundrotas; Emil Alexov
Journal:  Biochim Biophys Acta       Date:  2006-08-10

5.  The structure of chagasin in complex with a cysteine protease clarifies the binding mode and evolution of an inhibitor family.

Authors:  Stephanie X Wang; Kailash C Pandey; Julio Scharfstein; James Whisstock; Rick K Huang; Jordan Jacobelli; Robert J Fletterick; Philip J Rosenthal; Magnus Abrahamson; Linda S Brinen; Andrea Rossi; Andrej Sali; James H McKerrow
Journal:  Structure       Date:  2007-05       Impact factor: 5.006

Review 6.  Hydrolysis of erythrocyte proteins by proteases of malaria parasites.

Authors:  Philip J Rosenthal
Journal:  Curr Opin Hematol       Date:  2002-03       Impact factor: 3.284

7.  A malarial cysteine proteinase is necessary for hemoglobin degradation by Plasmodium falciparum.

Authors:  P J Rosenthal; J H McKerrow; M Aikawa; H Nagasawa; J H Leech
Journal:  J Clin Invest       Date:  1988-11       Impact factor: 14.808

Review 8.  Cysteine peptidases as virulence factors of Leishmania.

Authors:  Jeremy C Mottram; Graham H Coombs; James Alexander
Journal:  Curr Opin Microbiol       Date:  2004-08       Impact factor: 7.934

Review 9.  The global cysteine peptidase landscape in parasites.

Authors:  Holly J Atkinson; Patricia C Babbitt; Mohammed Sajid
Journal:  Trends Parasitol       Date:  2009-10-24

10.  Falstatin, a cysteine protease inhibitor of Plasmodium falciparum, facilitates erythrocyte invasion.

Authors:  Kailash C Pandey; Naresh Singh; Shirin Arastu-Kapur; Matthew Bogyo; Philip J Rosenthal
Journal:  PLoS Pathog       Date:  2006-11       Impact factor: 6.823

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  5 in total

1.  Enhanced hybrid search algorithm for protein structure prediction using the 3D-HP lattice model.

Authors:  Changjun Zhou; Caixia Hou; Qiang Zhang; Xiaopeng Wei
Journal:  J Mol Model       Date:  2013-07-04       Impact factor: 1.810

2.  Protease-associated cellular networks in malaria parasite Plasmodium falciparum.

Authors:  Timothy G Lilburn; Hong Cai; Zhan Zhou; Yufeng Wang
Journal:  BMC Genomics       Date:  2011-12-23       Impact factor: 3.969

3.  PRIMO: An Interactive Homology Modeling Pipeline.

Authors:  Rowan Hatherley; David K Brown; Michael Glenister; Özlem Tastan Bishop
Journal:  PLoS One       Date:  2016-11-17       Impact factor: 3.240

4.  Aminoacyl tRNA synthetases as malarial drug targets: a comparative bioinformatics study.

Authors:  Dorothy Wavinya Nyamai; Özlem Tastan Bishop
Journal:  Malar J       Date:  2019-02-06       Impact factor: 2.979

5.  Comparing sequence and structure of falcipains and human homologs at prodomain and catalytic active site for malarial peptide based inhibitor design.

Authors:  Thommas Mutemi Musyoka; Joyce Njoki Njuguna; Özlem Tastan Bishop
Journal:  Malar J       Date:  2019-05-03       Impact factor: 2.979

  5 in total

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