Literature DB >> 23054472

Basic pentacysteine proteins mediate MADS domain complex binding to the DNA for tissue-specific expression of target genes in Arabidopsis.

Sara Simonini1, Irma Roig-Villanova, Veronica Gregis, Bilitis Colombo, Lucia Colombo, Martin M Kater.   

Abstract

Basic pentacysteine (BPC) transcription factors have been identified in a large variety of plant species. In Arabidopsis thaliana there are seven BPC genes, which, except for BPC5, are expressed ubiquitously. BPC genes are functionally redundant in a wide range of developmental processes. Recently, we reported that BPC1 binds to guanine and adenine (GA)-rich consensus sequences in the seedstick (STK) promoter in vitro and induces conformational changes. Here we show by chromatin immunoprecipitation experiments that in vivo BPCs also bind to the consensus boxes, and when these were mutated, expression from the STK promoter was derepressed, resulting in ectopic expression in the inflorescence. We also reveal that short vegetative phase (SVP) is a direct regulator of STK. SVP is a floral meristem identity gene belonging to the MADS box gene family. The SVP-APETALA1 (AP1) dimer recruits the SEUSS (SEU)-LEUNIG (LUG) transcriptional cosuppressor to repress floral homeotic gene expression in the floral meristem. Interestingly, we found that GA consensus sequences in the STK promoter to which BPCs bind are essential for recruitment of the corepressor complex to this promoter. Our data suggest that we have identified a new regulatory mechanism controlling plant gene expression that is probably generally used, when considering BPCs' wide expression profile and the frequent presence of consensus binding sites in plant promoters.

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Year:  2012        PMID: 23054472      PMCID: PMC3517243          DOI: 10.1105/tpc.112.103952

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  33 in total

1.  Structure of a polycomb response element and in vitro binding of polycomb group complexes containing GAGA factor.

Authors:  B Horard; C Tatout; S Poux; V Pirrotta
Journal:  Mol Cell Biol       Date:  2000-05       Impact factor: 4.272

2.  Detection of in vivo protein interactions between Snf1-related kinase subunits with intron-tagged epitope-labelling in plants cells.

Authors:  A Ferrando; Z Koncz-Kálmán; R Farràs; A Tiburcio; J Schell; C Koncz
Journal:  Nucleic Acids Res       Date:  2001-09-01       Impact factor: 16.971

3.  Dual functions of largest NURF subunit NURF301 in nucleosome sliding and transcription factor interactions.

Authors:  H Xiao; R Sandaltzopoulos; H M Wang; A Hamiche; R Ranallo; K M Lee; D Fu; C Wu
Journal:  Mol Cell       Date:  2001-09       Impact factor: 17.970

4.  Establishment of Polycomb silencing requires a transient interaction between PC and ESC.

Authors:  S Poux; R Melfi; V Pirrotta
Journal:  Genes Dev       Date:  2001-10-01       Impact factor: 11.361

5.  Assessing the redundancy of MADS-box genes during carpel and ovule development.

Authors:  Anusak Pinyopich; Gary S Ditta; Beth Savidge; Sarah J Liljegren; Elvira Baumann; Ellen Wisman; Martin F Yanofsky
Journal:  Nature       Date:  2003-07-03       Impact factor: 49.962

Review 6.  Evolution goes GAGA: GAGA binding proteins across kingdoms.

Authors:  Nathalie Berger; Bertrand Dubreucq
Journal:  Biochim Biophys Acta       Date:  2012-03-08

7.  The GA octodinucleotide repeat binding factor BBR participates in the transcriptional regulation of the homeobox gene Bkn3.

Authors:  Luca Santi; Yamei Wang; Maria Rosaria Stile; Kenneth Berendzen; Dierk Wanke; Cristina Roig; Carlo Pozzi; Kai Müller; Judith Müller; Wolfgang Rohde; Francesco Salamini
Journal:  Plant J       Date:  2003-06       Impact factor: 6.417

8.  SHATTERPROOF MADS-box genes control seed dispersal in Arabidopsis.

Authors:  S J Liljegren; G S Ditta; Y Eshed; B Savidge; J L Bowman; M F Yanofsky
Journal:  Nature       Date:  2000-04-13       Impact factor: 49.962

9.  Identification of a soybean protein that interacts with GAGA element dinucleotide repeat DNA.

Authors:  Indu Sangwan; Mark R O'Brian
Journal:  Plant Physiol       Date:  2002-08       Impact factor: 8.340

10.  Drosophila FACT contributes to Hox gene expression through physical and functional interactions with GAGA factor.

Authors:  Tsukasa Shimojima; Masahiro Okada; Takahiro Nakayama; Hitoshi Ueda; Katsuya Okawa; Akihiro Iwamatsu; Hiroshi Handa; Susumu Hirose
Journal:  Genes Dev       Date:  2003-06-18       Impact factor: 11.361

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  21 in total

1.  Suppression of the D-class MADS-box AGL11 gene triggers seedlessness in fleshy fruits.

Authors:  Nallatt Ocarez; Nilo Mejía
Journal:  Plant Cell Rep       Date:  2015-11-13       Impact factor: 4.570

2.  Differences in DNA Binding Specificity of Floral Homeotic Protein Complexes Predict Organ-Specific Target Genes.

Authors:  Cezary Smaczniak; Jose M Muiño; Dijun Chen; Gerco C Angenent; Kerstin Kaufmann
Journal:  Plant Cell       Date:  2017-07-21       Impact factor: 11.277

3.  Molecular aspects of zygotic embryogenesis in sunflower (Helianthus annuus L.): correlation of positive histone marks with HaWUS expression and putative link HaWUS/HaL1L.

Authors:  Mariangela Salvini; Marco Fambrini; Lucia Giorgetti; Claudio Pugliesi
Journal:  Planta       Date:  2015-09-16       Impact factor: 4.116

4.  The Arabidopsis GAGA-Binding Factor BASIC PENTACYSTEINE6 Recruits the POLYCOMB-REPRESSIVE COMPLEX1 Component LIKE HETEROCHROMATIN PROTEIN1 to GAGA DNA Motifs.

Authors:  Andreas Hecker; Luise H Brand; Sébastien Peter; Nathalie Simoncello; Joachim Kilian; Klaus Harter; Valérie Gaudin; Dierk Wanke
Journal:  Plant Physiol       Date:  2015-05-29       Impact factor: 8.340

5.  Epigenomic features of DNA G-quadruplexes and their roles in regulating rice gene transcription.

Authors:  Yilong Feng; Shentong Tao; Pengyue Zhang; Francesco Rota Sperti; Guanqing Liu; Xuejiao Cheng; Tao Zhang; Hengxiu Yu; Xiu-E Wang; Caiyan Chen; David Monchaud; Wenli Zhang
Journal:  Plant Physiol       Date:  2022-03-04       Impact factor: 8.340

6.  Spatiotemporal Restriction of FUSCA3 Expression by Class I BPCs Promotes Ovule Development and Coordinates Embryo and Endosperm Growth.

Authors:  Jian Wu; Deka Mohamed; Sebastian Dowhanik; Rosanna Petrella; Veronica Gregis; Jingru Li; Lin Wu; Sonia Gazzarrini
Journal:  Plant Cell       Date:  2020-04-07       Impact factor: 11.277

7.  Class I BASIC PENTACYSTEINE factors regulate HOMEOBOX genes involved in meristem size maintenance.

Authors:  Sara Simonini; Martin M Kater
Journal:  J Exp Bot       Date:  2014-01-30       Impact factor: 6.992

8.  ZmSOC1, a MADS-box transcription factor from Zea mays, promotes flowering in Arabidopsis.

Authors:  Suzhou Zhao; Yanzhong Luo; Zhanlu Zhang; Miaoyun Xu; Weibu Wang; Yangmin Zhao; Lan Zhang; Yunliu Fan; Lei Wang
Journal:  Int J Mol Sci       Date:  2014-11-03       Impact factor: 5.923

9.  Identification of pathways directly regulated by SHORT VEGETATIVE PHASE during vegetative and reproductive development in Arabidopsis.

Authors:  Veronica Gregis; Fernando Andrés; Alice Sessa; Rosalinda F Guerra; Sara Simonini; Julieta L Mateos; Stefano Torti; Federico Zambelli; Gian Marco Prazzoli; Katrine N Bjerkan; Paul E Grini; Giulio Pavesi; Lucia Colombo; George Coupland; Martin M Kater
Journal:  Genome Biol       Date:  2013-06-11       Impact factor: 13.583

10.  Dynamics of chromatin accessibility and gene regulation by MADS-domain transcription factors in flower development.

Authors:  Alice Pajoro; Pedro Madrigal; Jose M Muiño; José Tomás Matus; Jian Jin; Martin A Mecchia; Juan M Debernardi; Javier F Palatnik; Salma Balazadeh; Muhammad Arif; Diarmuid S Ó'Maoiléidigh; Frank Wellmer; Pawel Krajewski; José-Luis Riechmann; Gerco C Angenent; Kerstin Kaufmann
Journal:  Genome Biol       Date:  2014-03-03       Impact factor: 13.583

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