Cargando…

Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)

Integrase Interactor 1 (INI1/hSNF5) is a component of the hSWI/SNF chromatin remodeling complex. The INI1 gene is either deleted or mutated in rhabdoid cancers like ATRT (Atypical terratoid and rhabdoid tumor). INI1 is also a host factor for HIV-1 replication. INI1 binds DNA non-specifically. Howeve...

Descripción completa

Detalles Bibliográficos
Autores principales: Das, Supratik, Banerjee, Baisakhi, Hossain, Maidul, Thangamuniyandi, Muruganandan, Dasgupta, Saumya, Chongdar, Nipa, Kumar, Gopinatha Suresh, Basu, Gautam
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3701577/
https://www.ncbi.nlm.nih.gov/pubmed/23861745
http://dx.doi.org/10.1371/journal.pone.0066581
_version_ 1782275669139390464
author Das, Supratik
Banerjee, Baisakhi
Hossain, Maidul
Thangamuniyandi, Muruganandan
Dasgupta, Saumya
Chongdar, Nipa
Kumar, Gopinatha Suresh
Basu, Gautam
author_facet Das, Supratik
Banerjee, Baisakhi
Hossain, Maidul
Thangamuniyandi, Muruganandan
Dasgupta, Saumya
Chongdar, Nipa
Kumar, Gopinatha Suresh
Basu, Gautam
author_sort Das, Supratik
collection PubMed
description Integrase Interactor 1 (INI1/hSNF5) is a component of the hSWI/SNF chromatin remodeling complex. The INI1 gene is either deleted or mutated in rhabdoid cancers like ATRT (Atypical terratoid and rhabdoid tumor). INI1 is also a host factor for HIV-1 replication. INI1 binds DNA non-specifically. However, the mechanism of DNA binding and its biological role are unknown. From agarose gel retardation assay (AGRA), Ni-NTA pull-down and atomic force microscopy (AFM) studies we show that amino acids 105–183 of INI1 comprise the minimal DNA binding domain (DBD). The INI1 DBD is absent in plants and in yeast SNF5. It is present in Caenorhabditis elegans SNF5, Drosophila melanogaster homologue SNR1 and is a highly conserved domain in vertebrates. The DNA binding property of this domain in SNR1, that is only 58% identical to INI1/hSNF5, is conserved. Analytical ultracentrifugation studies of INI1 DBD and INI1 DBD:DNA complexes at different concentrations show that the DBD exists as a monomer at low protein concentration and two molecules of monomer binds one molecule of DNA. At high protein concentration, it exists as a dimer and binds two DNA molecules. Furthermore, isothermal calorimetry (ITC) experiments demonstrate that the DBD monomer binds DNA with a stoichiometry (N) of ∼0.5 and K(d)  = 0.94 µM whereas the DBD dimer binds two DNA molecules sequentially with K’(d1) = 222 µM and K’(d2) = 1.16 µM. Monomeric DBD binding to DNA is enthalpy driven (ΔH = –29.9 KJ/mole). Dimeric DBD binding to DNA is sequential with the first binding event driven by positive entropy (ΔH’(1) = 115.7 KJ/mole, TΔS’(1) = 136.8 KJ/mole) and the second binding event driven by negative enthalpy (ΔH’(2) = –106.3 KJ/mole, TΔS’(2) = –75.7 KJ/mole). Our model for INI1 DBD binding to DNA provides new insights into the mechanism of DNA binding by INI1.
format Online
Article
Text
id pubmed-3701577
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-37015772013-07-16 Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5) Das, Supratik Banerjee, Baisakhi Hossain, Maidul Thangamuniyandi, Muruganandan Dasgupta, Saumya Chongdar, Nipa Kumar, Gopinatha Suresh Basu, Gautam PLoS One Research Article Integrase Interactor 1 (INI1/hSNF5) is a component of the hSWI/SNF chromatin remodeling complex. The INI1 gene is either deleted or mutated in rhabdoid cancers like ATRT (Atypical terratoid and rhabdoid tumor). INI1 is also a host factor for HIV-1 replication. INI1 binds DNA non-specifically. However, the mechanism of DNA binding and its biological role are unknown. From agarose gel retardation assay (AGRA), Ni-NTA pull-down and atomic force microscopy (AFM) studies we show that amino acids 105–183 of INI1 comprise the minimal DNA binding domain (DBD). The INI1 DBD is absent in plants and in yeast SNF5. It is present in Caenorhabditis elegans SNF5, Drosophila melanogaster homologue SNR1 and is a highly conserved domain in vertebrates. The DNA binding property of this domain in SNR1, that is only 58% identical to INI1/hSNF5, is conserved. Analytical ultracentrifugation studies of INI1 DBD and INI1 DBD:DNA complexes at different concentrations show that the DBD exists as a monomer at low protein concentration and two molecules of monomer binds one molecule of DNA. At high protein concentration, it exists as a dimer and binds two DNA molecules. Furthermore, isothermal calorimetry (ITC) experiments demonstrate that the DBD monomer binds DNA with a stoichiometry (N) of ∼0.5 and K(d)  = 0.94 µM whereas the DBD dimer binds two DNA molecules sequentially with K’(d1) = 222 µM and K’(d2) = 1.16 µM. Monomeric DBD binding to DNA is enthalpy driven (ΔH = –29.9 KJ/mole). Dimeric DBD binding to DNA is sequential with the first binding event driven by positive entropy (ΔH’(1) = 115.7 KJ/mole, TΔS’(1) = 136.8 KJ/mole) and the second binding event driven by negative enthalpy (ΔH’(2) = –106.3 KJ/mole, TΔS’(2) = –75.7 KJ/mole). Our model for INI1 DBD binding to DNA provides new insights into the mechanism of DNA binding by INI1. Public Library of Science 2013-07-04 /pmc/articles/PMC3701577/ /pubmed/23861745 http://dx.doi.org/10.1371/journal.pone.0066581 Text en © 2013 Das et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Das, Supratik
Banerjee, Baisakhi
Hossain, Maidul
Thangamuniyandi, Muruganandan
Dasgupta, Saumya
Chongdar, Nipa
Kumar, Gopinatha Suresh
Basu, Gautam
Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title_full Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title_fullStr Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title_full_unstemmed Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title_short Characterization of DNA Binding Property of the HIV-1 Host Factor and Tumor Suppressor Protein Integrase Interactor 1 (INI1/hSNF5)
title_sort characterization of dna binding property of the hiv-1 host factor and tumor suppressor protein integrase interactor 1 (ini1/hsnf5)
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3701577/
https://www.ncbi.nlm.nih.gov/pubmed/23861745
http://dx.doi.org/10.1371/journal.pone.0066581
work_keys_str_mv AT dassupratik characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT banerjeebaisakhi characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT hossainmaidul characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT thangamuniyandimuruganandan characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT dasguptasaumya characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT chongdarnipa characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT kumargopinathasuresh characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5
AT basugautam characterizationofdnabindingpropertyofthehiv1hostfactorandtumorsuppressorproteinintegraseinteractor1ini1hsnf5