PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Cinnamomum micranthum f. kanehirae
ERF Family
Species TF ID Description
RWR72295.1ERF family protein
RWR72332.1ERF family protein
RWR72484.1ERF family protein
RWR72636.1ERF family protein
RWR73728.1ERF family protein
RWR73780.1ERF family protein
RWR74375.1ERF family protein
RWR74442.1ERF family protein
RWR74810.1ERF family protein
RWR75486.1ERF family protein
RWR75504.1ERF family protein
RWR76202.1ERF family protein
RWR76283.1ERF family protein
RWR76887.1ERF family protein
RWR76924.1ERF family protein
RWR77385.1ERF family protein
RWR77537.1ERF family protein
RWR78282.1ERF family protein
RWR78465.1ERF family protein
RWR78581.1ERF family protein
RWR78698.1ERF family protein
RWR78891.1ERF family protein
RWR78897.1ERF family protein
RWR78932.1ERF family protein
RWR79076.1ERF family protein
RWR79367.1ERF family protein
RWR79403.1ERF family protein
RWR79404.1ERF family protein
RWR79405.1ERF family protein
RWR79466.1ERF family protein
RWR79731.1ERF family protein
RWR80131.1ERF family protein
RWR80248.1ERF family protein
RWR80619.1ERF family protein
RWR80620.1ERF family protein
RWR80637.1ERF family protein
RWR80729.1ERF family protein
RWR80731.1ERF family protein
RWR80946.1ERF family protein
RWR81238.1ERF family protein
RWR81418.1ERF family protein
RWR81514.1ERF family protein
RWR82268.1ERF family protein
RWR82366.1ERF family protein
RWR82367.1ERF family protein
RWR82368.1ERF family protein
RWR83100.1ERF family protein
RWR84164.1ERF family protein
RWR84215.1ERF family protein
RWR84707.1ERF family protein
RWR85285.1ERF family protein
RWR85386.1ERF family protein
RWR85387.1ERF family protein
RWR86627.1ERF family protein
RWR86629.1ERF family protein
RWR86704.1ERF family protein
RWR86876.1ERF family protein
RWR86908.1ERF family protein
RWR86926.1ERF family protein
RWR87125.1ERF family protein
RWR87425.1ERF family protein
RWR87426.1ERF family protein
RWR87445.1ERF family protein
RWR87890.1ERF family protein
RWR88435.1ERF family protein
RWR88690.1ERF family protein
RWR89341.1ERF family protein
RWR89343.1ERF family protein
RWR89346.1ERF family protein
RWR89347.1ERF family protein
RWR89348.1ERF family protein
RWR89349.1ERF family protein
RWR89350.1ERF family protein
RWR89351.1ERF family protein
RWR89352.1ERF family protein
RWR89355.1ERF family protein
RWR89406.1ERF family protein
RWR89638.1ERF family protein
RWR89639.1ERF family protein
RWR89762.1ERF family protein
RWR89780.1ERF family protein
RWR89852.1ERF family protein
RWR89888.1ERF family protein
RWR90069.1ERF family protein
RWR90070.1ERF family protein
RWR90071.1ERF family protein
RWR90072.1ERF family protein
RWR90073.1ERF family protein
RWR90076.1ERF family protein
RWR90077.1ERF family protein
RWR90078.1ERF family protein
RWR90127.1ERF family protein
RWR90308.1ERF family protein
RWR90313.1ERF family protein
RWR91088.1ERF family protein
RWR91427.1ERF family protein
RWR91632.1ERF family protein
RWR91633.1ERF family protein
RWR91634.1ERF family protein
RWR92558.1ERF family protein
RWR92718.1ERF family protein
RWR92860.1ERF family protein
RWR93008.1ERF family protein
RWR93212.1ERF family protein
RWR93890.1ERF family protein
RWR94131.1ERF family protein
RWR94195.1ERF family protein
RWR94196.1ERF family protein
RWR94625.1ERF family protein
RWR94626.1ERF family protein
RWR94674.1ERF family protein
RWR94889.1ERF family protein
RWR94927.1ERF family protein
RWR95847.1ERF family protein
RWR95864.1ERF family protein
RWR96073.1ERF family protein
RWR96383.1ERF family protein
RWR96387.1ERF family protein
RWR96433.1ERF family protein
RWR97489.1ERF family protein
ERF Family Introduction

The AP2/ERF superfamily is defined by the AP2/ERF domain, which consists of about 60 to 70 amino acids and is involved in DNA binding. These three families have been defined as follows. The AP2 family proteins contain two repeated AP2/ERF domains, the ERF family proteins contain a single AP2/ERF domain, and the RAV family proteins contain a B3 domain, which is a DNA-binding domain conserved in other plant-specific transcription factors, in addition to the single AP2/ERF domain.

It has been demonstrated that the AP2/ERF proteins have important functions in the transcriptional regulation of a variety of biological processes related to growth and development, as well as various responses to environmental stimuli.

After finding the tobacco ERFs, many proteins in the ERF family were identified and implicated in many diverse functions in cellular processes, such as hormonal signal transduction, response to biotic and abiotic stresses, regulation of metabolism, and in developmental processes in various plant species.

Toshitsugu Nakano, Kaoru Suzuki, Tatsuhito Fujimura, and Hideaki Shinshi.
Genome-wide analysis of the ERF gene family in Arabidopsis and rice.
Plant Physiol, 2006. 140(2): p. 411-32.
PMID: 16407444


The first class are proteins which bind to ethylene response elements (ERE) or GCC boxes (tobacco EREBPs, Arabidopsis AtEBP and AtERF1-5, and tomato Pti4-6) found in the promoters of ethylene-inducible pathogenesis related genes. The GCC box is an 11 bp sequence (TAAGAGCCGCC) with a core GCCGCC sequence that is required for binding.
The second class includes proteins that bind to the C-repeat or dehydration response element (DRE) in the promoters of genes that are turned on in response to low temperatures and/or water deficit (CBF1, CBF2, CBF3/DREB1A and DREB2A). The C-repeat/DREs contain the core sequence CCGAC.

Nole-Wilson S, Krizek BA.
DNA binding properties of the Arabidopsis floral development protein AINTEGUMENTA.
Nucleic Acids Res. 2000 Nov 1;28(21):4076-82. Erratum in: Nucleic Acids Res 2001 Mar 1;29(5):1261.
PMID: 11058102