DELLA protein functions as a transcriptional activator through the DNA binding of the INDETERMINATE DOMAIN family proteins

DELLA protein is a key negative regulator of gibberellin (GA) signaling. Although how DELLA regulates downstream gene expression remains unclear, DELLA has been proposed to function as a transcriptional activator. However, because DELLA lacks a DNA-binding domain, intermediate protein(s) mediating t...

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Published inProceedings of the National Academy of Sciences - PNAS Vol. 111; no. 21; pp. 7861 - 7866
Main Authors Yoshida, Hideki, Hirano, Ko, Sato, Tomomi, Mitsuda, Nobutaka, Nomoto, Mika, Maeo, Kenichiro, Koketsu, Eriko, Mitani, Rie, Kawamura, Mayuko, Ishiguro, Sumie, Tada, Yasuomi, Ohme-Takagi, Masaru, Matsuoka, Makoto, Ueguchi-Tanaka, Miyako
Format Journal Article
LanguageEnglish
Published United States National Academy of Sciences 27.05.2014
National Acad Sciences
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Summary:DELLA protein is a key negative regulator of gibberellin (GA) signaling. Although how DELLA regulates downstream gene expression remains unclear, DELLA has been proposed to function as a transcriptional activator. However, because DELLA lacks a DNA-binding domain, intermediate protein(s) mediating the DELLA/DNA interaction are believed to be necessary for activating DELLA target genes. Here, using yeast hybrid screenings, we identified five members of INDETERMINATE DOMAIN (IDD) protein family which bind physically to both DELLA and the promoter sequence of the GA-positive regulator SCARECROW-LIKE 3 (SCL3), which previously was characterized as a DELLA direct target gene. Transient assays using Arabidopsis protoplasts demonstrated that a luciferase reporter controlled by the SCL3 promoter was additively transactivated by REPRESSOR of ga1-3 (RGA) and IDDs. Phenotypic analysis of transgenic plants expressing AtIDD3 (one of the 16 IDDs in the Arabidopsis genome) fused with the plant-specific repression domain (SRDX) supported the possibility that AtIDD3 is positively involved in GA signaling. In addition, we found that SCL3 protein also interacts with IDDs, resulting in the suppression of its target gene expression. In this context, DELLA and SCL3 interact competitively with IDD proteins to regulate downstream gene expression. These results suggest that the coregulators DELLA and SCL3, using IDDs as transcriptional scaffolds for DNA binding, antagonistically regulate the expression of their downstream targets to control the GA signaling pathway.
Bibliography:http://dx.doi.org/10.1073/pnas.1321669111
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Author contributions: H.Y., K.H., M.M., and M.U.-T. designed research; H.Y., K.H., T.S., N.M., M.N., K.M., E.K., R.M., and M.K. performed research; N.M., M.N., K.M., S.I., Y.T., and M.O.-T. contributed new reagents/analytic tools; H.Y., K.H., T.S., N.M., and M.U.-T. analyzed data; and H.Y., T.S., M.M., and M.U.-T. wrote the paper.
Edited by Mark Estelle, University of California, San Diego, La Jolla, CA, and approved April 17, 2014 (received for review November 20, 2013)
ISSN:0027-8424
1091-6490
DOI:10.1073/pnas.1321669111