PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Capsicum baccatum
HD-ZIP Family
Species TF ID Description
PHT28867.1HD-ZIP family protein
PHT30294.1HD-ZIP family protein
PHT31246.1HD-ZIP family protein
PHT32194.1HD-ZIP family protein
PHT33314.1HD-ZIP family protein
PHT33978.1HD-ZIP family protein
PHT34006.1HD-ZIP family protein
PHT35151.1HD-ZIP family protein
PHT35906.1HD-ZIP family protein
PHT37052.1HD-ZIP family protein
PHT37838.1HD-ZIP family protein
PHT40957.1HD-ZIP family protein
PHT43350.1HD-ZIP family protein
PHT43829.1HD-ZIP family protein
PHT45061.1HD-ZIP family protein
PHT45514.1HD-ZIP family protein
PHT47040.1HD-ZIP family protein
PHT47076.1HD-ZIP family protein
PHT47838.1HD-ZIP family protein
PHT48438.1HD-ZIP family protein
PHT49705.1HD-ZIP family protein
PHT49843.1HD-ZIP family protein
PHT50713.1HD-ZIP family protein
PHT50928.1HD-ZIP family protein
PHT51568.1HD-ZIP family protein
PHT53105.1HD-ZIP family protein
PHT53405.1HD-ZIP family protein
PHT53491.1HD-ZIP family protein
PHT54695.1HD-ZIP family protein
PHT54829.1HD-ZIP family protein
PHT55377.1HD-ZIP family protein
PHT55577.1HD-ZIP family protein
PHT55921.1HD-ZIP family protein
PHT56544.1HD-ZIP family protein
PHT56838.1HD-ZIP family protein
PHT57071.1HD-ZIP family protein
PHT57273.1HD-ZIP family protein
PHT57776.1HD-ZIP family protein
PHT58208.1HD-ZIP family protein
PHT58473.1HD-ZIP family protein
PHT58801.1HD-ZIP family protein
PHT59185.1HD-ZIP family protein
PHT59264.1HD-ZIP family protein
PHT60165.1HD-ZIP family protein
HD-ZIP Family Introduction

A homeobox (HB) encodes a protein domain, the homeodomain (HD), which is a conserved 60-amino acid motif present in transcription factors found in all the eukaryotic organisms. This 60-amino acid sequence folds into a characteristic three-helix structure that is able to interact specifically with DNA. Most HDs are able to bind DNA as monomers with high affinity, through interactions made by helix III (the so-called recognition helix) and a disordered N-terminal arm located beyond helix I. The high degree of conservation of this type of domain among diverse proteins from different kingdoms indicates that this structure is crucial to maintain the HD functionality and that the role played by this domain is vital.

Members of the HD-Zip family have a leucine zipper motif (LZ) immediately downstream of the HD. The two motifs are present in transcription factors found in species belonging to other eukaryotic kingdoms, but their association in a single protein is unique to plants. The HD is responsible for the specific binding to DNA, whereas LZ acts as a dimerization motif. HD-Zip proteins bind to DNA as dimers, and the absence of LZ absolutely abolishes their binding ability, which indicates that the relative orientation of the monomers, driven by this motif, is crucial for an efficient recognition of DNA.

Ariel FD, Manavella PA, Dezar CA, Chan RL.
The true story of the HD-Zip family.
Trends Plant Sci, 2007. 12(9): p. 419-26.
PMID: 17698401