PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Apostasia shenzhenica
Trihelix Family
Species TF ID Description
PKA46873.1Trihelix family protein
PKA47006.1Trihelix family protein
PKA47072.1Trihelix family protein
PKA47308.1Trihelix family protein
PKA50069.1Trihelix family protein
PKA50131.1Trihelix family protein
PKA50206.1Trihelix family protein
PKA50775.1Trihelix family protein
PKA50825.1Trihelix family protein
PKA52460.1Trihelix family protein
PKA52863.1Trihelix family protein
PKA53307.1Trihelix family protein
PKA54653.1Trihelix family protein
PKA54785.1Trihelix family protein
PKA56196.1Trihelix family protein
PKA56202.1Trihelix family protein
PKA56934.1Trihelix family protein
PKA59425.1Trihelix family protein
PKA60195.1Trihelix family protein
PKA60749.1Trihelix family protein
PKA61170.1Trihelix family protein
PKA62570.1Trihelix family protein
PKA64205.1Trihelix family protein
PKA64364.1Trihelix family protein
PKA64454.1Trihelix family protein
PKA66384.1Trihelix family protein
PKA67204.1Trihelix family protein
Trihelix Family Introduction

GT factors constitute a plant-specific transcription factor family with a DNA-binding domain that binds GT elements. The DNA-binding domain of GT factor, rich in basic and acidic amino acids and proline and glutamine residues, features a typical trihelix (helix-loop-helix-loop-helix) structure that determines the specific binding of GT elements; thus GT factors are also called trihelix transcription factors. GT elements are highly degenerate cis-elements with A/T-rich core sequences (Villain et al. 1996; Wang et al. 2004). Interaction between GT factors and GT elements has been implicated in the complex transcriptional regulation of many plant genes (Liu et al. 1999;Zhou 1999).

Fang Y, Xie K, Hou X, Hu H, Xiong L.
Systematic analysis of GT factor family of rice reveals a novel subfamily involved in stress responses.
Mol Genet Genomics, 2010. 283(2): p. 157-69.
PMID: 20039179