PlantTFDB
PlantRegMap/PlantTFDB v5.0
Plant Transcription Factor Database
Cinnamomum micranthum f. kanehirae
bZIP Family
Species TF ID Description
RWR72701.1bZIP family protein
RWR72759.1bZIP family protein
RWR73805.1bZIP family protein
RWR74804.1bZIP family protein
RWR74894.1bZIP family protein
RWR74981.1bZIP family protein
RWR75097.1bZIP family protein
RWR75804.1bZIP family protein
RWR75931.1bZIP family protein
RWR76451.1bZIP family protein
RWR77024.1bZIP family protein
RWR77941.1bZIP family protein
RWR78443.1bZIP family protein
RWR79254.1bZIP family protein
RWR79561.1bZIP family protein
RWR79737.1bZIP family protein
RWR79789.1bZIP family protein
RWR80479.1bZIP family protein
RWR80964.1bZIP family protein
RWR81366.1bZIP family protein
RWR81698.1bZIP family protein
RWR81702.1bZIP family protein
RWR81754.1bZIP family protein
RWR82453.1bZIP family protein
RWR82911.1bZIP family protein
RWR83083.1bZIP family protein
RWR83358.1bZIP family protein
RWR83527.1bZIP family protein
RWR83528.1bZIP family protein
RWR83532.1bZIP family protein
RWR83879.1bZIP family protein
RWR83881.1bZIP family protein
RWR84742.1bZIP family protein
RWR85924.1bZIP family protein
RWR85980.1bZIP family protein
RWR86225.1bZIP family protein
RWR86851.1bZIP family protein
RWR86868.1bZIP family protein
RWR87296.1bZIP family protein
RWR87803.1bZIP family protein
RWR87929.1bZIP family protein
RWR89459.1bZIP family protein
RWR89644.1bZIP family protein
RWR89862.1bZIP family protein
RWR89865.1bZIP family protein
RWR91530.1bZIP family protein
RWR92568.1bZIP family protein
RWR94286.1bZIP family protein
RWR94571.1bZIP family protein
RWR94957.1bZIP family protein
RWR95217.1bZIP family protein
RWR95692.1bZIP family protein
RWR96507.1bZIP family protein
RWR96777.1bZIP family protein
RWR97131.1bZIP family protein
RWR97480.1bZIP family protein
RWR97954.1bZIP family protein
bZIP Family Introduction

The bZIP domain consists of two structural features located on a contiguous alpha-helix: first, a basic region of ~ 16 amino acid residues containing a nuclear localization signal followed by an invariant N-x7-R/K motif that contacts the DNA; and, second, a heptad repeat of leucines or other bulky hydrophobic amino acids positioned exactly nine amino acids towards the C-terminus, creating an amphipathic helix. To bind DNA, two subunits adhere via interactions between the hydrophobic sides of their helices, which creates a superimposing coiled-coil structure. The ability to form homo- and heterodimers is influenced by the electrostatic attraction and repulsion of polar residues flanking the hydrophobic interaction surface of the helices.

Plant bZIP proteins preferentially bind to DNA sequences with an ACGT core. Binding specificity is regulated by flanking nucleotides. Plant bZIPs preferentially bind to the A-box (TACGTA), C-box (GACGTC) and G-box (CACGTG), but there are also examples of nonpalindromic binding sites.

Jakoby M, Weisshaar B, Droge-Laser W, Vicente-Carbajosa J, Tiedemann J, Kroj T, Parcy F
bZIP transcription factors in Arabidopsis.
Trends Plant Sci, 2002. 7(3): p. 106-11.
PMID: 11906833