PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Chrysanthemum seticuspe
HSF Family
Species TF ID Description
Cse_sc000102.1_g010.1HSF family protein
Cse_sc000431.1_g060.1HSF family protein
Cse_sc000572.1_g090.1HSF family protein
Cse_sc000877.1_g050.1HSF family protein
Cse_sc000907.1_g050.1HSF family protein
Cse_sc001488.1_g050.1HSF family protein
Cse_sc001488.1_g080.1HSF family protein
Cse_sc001884.1_g090.1HSF family protein
Cse_sc001994.1_g030.1HSF family protein
Cse_sc002071.1_g010.1HSF family protein
Cse_sc002189.1_g040.1HSF family protein
Cse_sc002766.1_g060.1HSF family protein
Cse_sc003084.1_g060.1HSF family protein
Cse_sc003457.1_g070.1HSF family protein
Cse_sc004131.1_g030.1HSF family protein
Cse_sc004131.1_g050.1HSF family protein
Cse_sc004182.1_g010.1HSF family protein
Cse_sc004429.1_g020.1HSF family protein
Cse_sc004914.1_g060.1HSF family protein
Cse_sc005590.1_g020.1HSF family protein
Cse_sc005776.1_g040.1HSF family protein
Cse_sc006097.1_g050.1HSF family protein
Cse_sc006456.1_g050.1HSF family protein
Cse_sc007477.1_g060.1HSF family protein
Cse_sc008911.1_g010.1HSF family protein
Cse_sc009203.1_g040.1HSF family protein
Cse_sc010503.1_g020.1HSF family protein
Cse_sc011366.1_g030.1HSF family protein
Cse_sc011589.1_g010.1HSF family protein
Cse_sc013324.1_g040.1HSF family protein
Cse_sc014753.1_g040.1HSF family protein
Cse_sc015331.1_g030.1HSF family protein
Cse_sc019275.1_g020.1HSF family protein
Cse_sc019542.1_g010.1HSF family protein
Cse_sc020573.1_g030.1HSF family protein
Cse_sc020992.1_g030.1HSF family protein
Cse_sc033342.1_g010.1HSF family protein
Cse_sc038998.1_g010.1HSF family protein
Cse_sc047919.1_g010.1HSF family protein
Cse_sc060488.1_g010.1HSF 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