Cargando…

Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response

The plant hormone auxin activates primary response genes by facilitating proteolytic removal of AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA)-inducible repressors, which directly bind to transcriptional AUXIN RESPONSE FACTORS (ARF). Most AUX/IAA and ARF proteins share highly conserved C-termini mediating hom...

Descripción completa

Detalles Bibliográficos
Autores principales: Dinesh, Dhurvas Chandrasekaran, Kovermann, Michael, Gopalswamy, Mohanraj, Hellmuth, Antje, Calderón Villalobos, Luz Irina A., Lilie, Hauke, Balbach, Jochen, Abel, Steffen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: National Academy of Sciences 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4434759/
https://www.ncbi.nlm.nih.gov/pubmed/25918389
http://dx.doi.org/10.1073/pnas.1424077112
_version_ 1782371794846482432
author Dinesh, Dhurvas Chandrasekaran
Kovermann, Michael
Gopalswamy, Mohanraj
Hellmuth, Antje
Calderón Villalobos, Luz Irina A.
Lilie, Hauke
Balbach, Jochen
Abel, Steffen
author_facet Dinesh, Dhurvas Chandrasekaran
Kovermann, Michael
Gopalswamy, Mohanraj
Hellmuth, Antje
Calderón Villalobos, Luz Irina A.
Lilie, Hauke
Balbach, Jochen
Abel, Steffen
author_sort Dinesh, Dhurvas Chandrasekaran
collection PubMed
description The plant hormone auxin activates primary response genes by facilitating proteolytic removal of AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA)-inducible repressors, which directly bind to transcriptional AUXIN RESPONSE FACTORS (ARF). Most AUX/IAA and ARF proteins share highly conserved C-termini mediating homotypic and heterotypic interactions within and between both protein families. The high-resolution NMR structure of C-terminal domains III and IV of the AUX/IAA protein PsIAA4 from pea (Pisum sativum) revealed a globular ubiquitin-like β-grasp fold with homologies to the Phox and Bem1p (PB1) domain. The PB1 domain of wild-type PsIAA4 features two distinct surface patches of oppositely charged amino acid residues, mediating front-to-back multimerization via electrostatic interactions. Mutations of conserved basic or acidic residues on either face suppressed PsIAA4 PB1 homo-oligomerization in vitro and confirmed directional interaction of full-length PsIAA4 in vivo (yeast two-hybrid system). Mixing of oppositely mutated PsIAA4 PB1 monomers enabled NMR mapping of the negatively charged interface of the reconstituted PsIAA4 PB1 homodimer variant, whose stoichiometry (1:1) and equilibrium binding constant (K(D) ∼6.4 μM) were determined by isothermal titration calorimetry. In silico protein–protein docking studies based on NMR and yeast interaction data derived a model of the PsIAA4 PB1 homodimer, which is comparable with other PB1 domain dimers, but indicated considerable differences between the homodimeric interfaces of AUX/IAA and ARF PB1 domains. Our study provides an impetus for elucidating the molecular determinants that confer specificity to complex protein–protein interaction circuits between members of the two central families of transcription factors important to the regulation of auxin-responsive gene expression.
format Online
Article
Text
id pubmed-4434759
institution National Center for Biotechnology Information
language English
publishDate 2015
publisher National Academy of Sciences
record_format MEDLINE/PubMed
spelling pubmed-44347592015-05-19 Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response Dinesh, Dhurvas Chandrasekaran Kovermann, Michael Gopalswamy, Mohanraj Hellmuth, Antje Calderón Villalobos, Luz Irina A. Lilie, Hauke Balbach, Jochen Abel, Steffen Proc Natl Acad Sci U S A Biological Sciences The plant hormone auxin activates primary response genes by facilitating proteolytic removal of AUXIN/INDOLE-3-ACETIC ACID (AUX/IAA)-inducible repressors, which directly bind to transcriptional AUXIN RESPONSE FACTORS (ARF). Most AUX/IAA and ARF proteins share highly conserved C-termini mediating homotypic and heterotypic interactions within and between both protein families. The high-resolution NMR structure of C-terminal domains III and IV of the AUX/IAA protein PsIAA4 from pea (Pisum sativum) revealed a globular ubiquitin-like β-grasp fold with homologies to the Phox and Bem1p (PB1) domain. The PB1 domain of wild-type PsIAA4 features two distinct surface patches of oppositely charged amino acid residues, mediating front-to-back multimerization via electrostatic interactions. Mutations of conserved basic or acidic residues on either face suppressed PsIAA4 PB1 homo-oligomerization in vitro and confirmed directional interaction of full-length PsIAA4 in vivo (yeast two-hybrid system). Mixing of oppositely mutated PsIAA4 PB1 monomers enabled NMR mapping of the negatively charged interface of the reconstituted PsIAA4 PB1 homodimer variant, whose stoichiometry (1:1) and equilibrium binding constant (K(D) ∼6.4 μM) were determined by isothermal titration calorimetry. In silico protein–protein docking studies based on NMR and yeast interaction data derived a model of the PsIAA4 PB1 homodimer, which is comparable with other PB1 domain dimers, but indicated considerable differences between the homodimeric interfaces of AUX/IAA and ARF PB1 domains. Our study provides an impetus for elucidating the molecular determinants that confer specificity to complex protein–protein interaction circuits between members of the two central families of transcription factors important to the regulation of auxin-responsive gene expression. National Academy of Sciences 2015-05-12 2015-04-27 /pmc/articles/PMC4434759/ /pubmed/25918389 http://dx.doi.org/10.1073/pnas.1424077112 Text en Freely available online through the PNAS open access option.
spellingShingle Biological Sciences
Dinesh, Dhurvas Chandrasekaran
Kovermann, Michael
Gopalswamy, Mohanraj
Hellmuth, Antje
Calderón Villalobos, Luz Irina A.
Lilie, Hauke
Balbach, Jochen
Abel, Steffen
Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title_full Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title_fullStr Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title_full_unstemmed Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title_short Solution structure of the PsIAA4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
title_sort solution structure of the psiaa4 oligomerization domain reveals interaction modes for transcription factors in early auxin response
topic Biological Sciences
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4434759/
https://www.ncbi.nlm.nih.gov/pubmed/25918389
http://dx.doi.org/10.1073/pnas.1424077112
work_keys_str_mv AT dineshdhurvaschandrasekaran solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT kovermannmichael solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT gopalswamymohanraj solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT hellmuthantje solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT calderonvillalobosluzirinaa solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT liliehauke solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT balbachjochen solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse
AT abelsteffen solutionstructureofthepsiaa4oligomerizationdomainrevealsinteractionmodesfortranscriptionfactorsinearlyauxinresponse