PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Olea europaea var. sylvestris
HSF Family
Species TF ID Description
Oeu000316.1HSF family protein
Oeu000318.1HSF family protein
Oeu001069.1HSF family protein
Oeu001190.1HSF family protein
Oeu004203.1HSF family protein
Oeu005076.1HSF family protein
Oeu008041.1HSF family protein
Oeu008333.1HSF family protein
Oeu009778.1HSF family protein
Oeu011062.1HSF family protein
Oeu012429.1HSF family protein
Oeu013997.1HSF family protein
Oeu014710.1HSF family protein
Oeu016098.1HSF family protein
Oeu017607.1HSF family protein
Oeu018633.1HSF family protein
Oeu018956.1HSF family protein
Oeu019321.1HSF family protein
Oeu022578.1HSF family protein
Oeu028662.1HSF family protein
Oeu029782.1HSF family protein
Oeu031518.1HSF family protein
Oeu032128.1HSF family protein
Oeu033018.1HSF family protein
Oeu033119.2HSF family protein
Oeu036327.2HSF family protein
Oeu036476.1HSF family protein
Oeu038090.1HSF family protein
Oeu038213.1HSF family protein
Oeu039603.1HSF family protein
Oeu039829.1HSF family protein
Oeu039870.1HSF family protein
Oeu041707.1HSF family protein
Oeu041708.1HSF family protein
Oeu041897.1HSF family protein
Oeu042430.1HSF family protein
Oeu043584.1HSF family protein
Oeu048788.1HSF family protein
Oeu048789.1HSF family protein
Oeu049052.1HSF family protein
Oeu049990.1HSF family protein
Oeu050712.1HSF family protein
Oeu050784.1HSF family protein
Oeu056236.1HSF family protein
Oeu058958.1HSF family protein
Oeu060393.1HSF family protein
Oeu062764.1HSF family protein
Oeu063368.1HSF family protein
Oeu064777.1HSF family protein
HSF Family Introduction

Heat stress transcription factors (Hsfs) are the major regulators of the plant heat stress (hs) response. Sequencing of the Arabidopsis genome revealed the existence of 21 open-reading frames (ORFs) encoding putative Hsfs assigned to classes A-C. Here we present results of a functional genomics approach to the Arabidopsis Hsf family focused on the analysis of their C-terminal domains (CTDs) harboring conserved modules for their function as transcription factors and their intracellular localization. Using reporter assays in tobacco protoplasts and yeast as well as glutathione-S-transferase (GST) pull-down assays, we demonstrate that short peptide motifs enriched with aromatic and large hydrophobic amino acid (aa) residues embedded in an acidic surrounding (AHA motifs) are essential for transcriptional activity of class A Hsfs. In contrast to this, class B and C Hsfs lack AHA motifs and have no activator function on their own. We also provide evidence for the function of a leucine (Leu)-rich region centered around a conserved QMGΦL motif at the very C-terminus as a nuclear export signal (NES) of class A Hsfs. Sequence comparison indicates that the combination of a C-terminal AHA motif with the consensus sequence FWxxF/L,F/I/L as well as the adjacent NES represents a signature domain for plant class A Hsfs, which allowed to identify more than 60 new Hsfs from the expressed sequence tag (EST) database.

Kotak S, Port M, Ganguli A, Bicker F, von Koskull-Doring P.
Characterization of C-terminal domains of Arabidopsis heat stress transcription factors (Hsfs) and identification of a new signature combination of plant class A Hsfs with AHA and NES motifs essential for activator function and intracellular localization.
Plant J, 2004. 39(1): p. 98-112.
PMID: 15200645