PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Phalaenopsis equestris
Trihelix Family
Species TF ID Description
PEQU_01799Trihelix family protein
PEQU_03310Trihelix family protein
PEQU_03421Trihelix family protein
PEQU_03778Trihelix family protein
PEQU_07802Trihelix family protein
PEQU_08687Trihelix family protein
PEQU_08788Trihelix family protein
PEQU_09565Trihelix family protein
PEQU_10341Trihelix family protein
PEQU_11207Trihelix family protein
PEQU_13333Trihelix family protein
PEQU_14314Trihelix family protein
PEQU_14704Trihelix family protein
PEQU_14723Trihelix family protein
PEQU_14758Trihelix family protein
PEQU_15419Trihelix family protein
PEQU_15512Trihelix family protein
PEQU_15519Trihelix family protein
PEQU_18264Trihelix family protein
PEQU_18957Trihelix family protein
PEQU_20559Trihelix family protein
PEQU_21024Trihelix family protein
PEQU_23740Trihelix family protein
PEQU_31285Trihelix family protein
PEQU_32626Trihelix family protein
PEQU_33998Trihelix family protein
PEQU_35640Trihelix family protein
PEQU_37236Trihelix family protein
PEQU_39742Trihelix family protein
PEQU_40826Trihelix family protein
PEQU_42075Trihelix 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