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PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1

To better understand DNA recognition and transcription activity by SATB1, the T-lineage-enriched chromatin organizer and transcription factor, we have determined its optimal DNA-binding sequence by random oligonucleotide selection. The consensus SATB1-binding sequence (CSBS) comprises a palindromic...

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Autores principales: Purbey, Prabhat Kumar, Singh, Sunita, Kumar, P. Pavan, Mehta, Sameet, Ganesh, K. N., Mitra, Debashis, Galande, Sanjeev
Formato: Texto
Lenguaje:English
Publicado: Oxford University Press 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2367706/
https://www.ncbi.nlm.nih.gov/pubmed/18187506
http://dx.doi.org/10.1093/nar/gkm1151
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author Purbey, Prabhat Kumar
Singh, Sunita
Kumar, P. Pavan
Mehta, Sameet
Ganesh, K. N.
Mitra, Debashis
Galande, Sanjeev
author_facet Purbey, Prabhat Kumar
Singh, Sunita
Kumar, P. Pavan
Mehta, Sameet
Ganesh, K. N.
Mitra, Debashis
Galande, Sanjeev
author_sort Purbey, Prabhat Kumar
collection PubMed
description To better understand DNA recognition and transcription activity by SATB1, the T-lineage-enriched chromatin organizer and transcription factor, we have determined its optimal DNA-binding sequence by random oligonucleotide selection. The consensus SATB1-binding sequence (CSBS) comprises a palindromic sequence in which two identical AT-rich half-sites are arranged as inverted repeats flanking a central cytosine or guanine. Strikingly, the CSBS half-site is identical to the conserved element ‘TAATA’ bound by the known homeodomains (HDs). Furthermore, we show that the high-affinity binding of SATB1 to DNA is dimerization-dependent and the HD also binds in similar fashion. Binding studies using HD-lacking SATB1 and binding target with increased spacer between the two half-sites led us to propose a model for SATB1–DNA complex in which the HDs bind in an antiparallel fashion to the palindromic consensus element via minor groove, bridged by the PDZ-like dimerization domain. CSBS-driven in vivo reporter analysis indicated that SATB1 acts as a repressor upon binding to the CSBS and most of its derivatives and the extent of repression is proportional to SATB1's binding affinity to these sequences. These studies provide mechanistic insights into the mode of DNA binding and its effect on the regulation of transcription by SATB1.
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spelling pubmed-23677062008-05-07 PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1 Purbey, Prabhat Kumar Singh, Sunita Kumar, P. Pavan Mehta, Sameet Ganesh, K. N. Mitra, Debashis Galande, Sanjeev Nucleic Acids Res Molecular Biology To better understand DNA recognition and transcription activity by SATB1, the T-lineage-enriched chromatin organizer and transcription factor, we have determined its optimal DNA-binding sequence by random oligonucleotide selection. The consensus SATB1-binding sequence (CSBS) comprises a palindromic sequence in which two identical AT-rich half-sites are arranged as inverted repeats flanking a central cytosine or guanine. Strikingly, the CSBS half-site is identical to the conserved element ‘TAATA’ bound by the known homeodomains (HDs). Furthermore, we show that the high-affinity binding of SATB1 to DNA is dimerization-dependent and the HD also binds in similar fashion. Binding studies using HD-lacking SATB1 and binding target with increased spacer between the two half-sites led us to propose a model for SATB1–DNA complex in which the HDs bind in an antiparallel fashion to the palindromic consensus element via minor groove, bridged by the PDZ-like dimerization domain. CSBS-driven in vivo reporter analysis indicated that SATB1 acts as a repressor upon binding to the CSBS and most of its derivatives and the extent of repression is proportional to SATB1's binding affinity to these sequences. These studies provide mechanistic insights into the mode of DNA binding and its effect on the regulation of transcription by SATB1. Oxford University Press 2008-04 2008-01-10 /pmc/articles/PMC2367706/ /pubmed/18187506 http://dx.doi.org/10.1093/nar/gkm1151 Text en © 2008 The Author(s) http://creativecommons.org/licenses/by-nc/2.0/uk/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial License (http://creativecommons.org/licenses/by-nc/2.0/uk/) which permits unrestricted non-commercial use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Molecular Biology
Purbey, Prabhat Kumar
Singh, Sunita
Kumar, P. Pavan
Mehta, Sameet
Ganesh, K. N.
Mitra, Debashis
Galande, Sanjeev
PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title_full PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title_fullStr PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title_full_unstemmed PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title_short PDZ domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity DNA binding by SATB1
title_sort pdz domain-mediated dimerization and homeodomain-directed specificity are required for high-affinity dna binding by satb1
topic Molecular Biology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2367706/
https://www.ncbi.nlm.nih.gov/pubmed/18187506
http://dx.doi.org/10.1093/nar/gkm1151
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