Gene Details:
- Gene ID: EcC054233.50
- Gene Family: Trihelix Family
- Description: Trihelix Family protein
- Species: Eucalyptus camaldulensis
- Source: Trihelix family gene from PlantTFDB
Protein Features:
Annotation Proteins:
- Refseq: XP_010044755.1 — PREDICTED: trihelix transcription factor GT-1
- Swissprot: Q9FX53 — TGT1_ARATH; Trihelix transcription factor GT-1
- TrEMBL: A0A059D8Y4 — A0A059D8Y4_EUCGR; Uncharacterized protein
- STRING: XP_010044755.1 — (Eucalyptus grandis)
Gene Ontology:
- GO:0006260 — Biological Process — DNA replication
- GO:0006508 — Biological Process — proteolysis
- GO:0006614 — Biological Process — SRP-dependent cotranslational protein targeting to membrane
- GO:0006633 — Biological Process — fatty acid biosynthetic process
- GO:0055114 — Biological Process — oxidation-reduction process
- GO:0005739 — Cellular Component — mitochondrion
- GO:0048500 — Cellular Component — signal recognition particle
- GO:0003677 — Molecular Function — DNA binding
- GO:0003887 — Molecular Function — DNA-directed DNA polymerase activity
- GO:0004222 — Molecular Function — metalloendopeptidase activity
- GO:0004316 — Molecular Function — 3-oxoacyl-[acyl-carrier-protein] reductase (NADPH) activity
- GO:0005515 — Molecular Function — protein binding
- GO:0008312 — Molecular Function — 7S RNA binding
- GO:0051287 — Molecular Function — NAD binding
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.
Literature:
- Systematic analysis of GT factor family of rice reveals a novel subfamily involved in stress responses. DOI: 10.1007/s00438-009-0507-x ; PMID: 20039179
Sequences:
CDS Sequence:
- >EcC054233.50|Eucalyptus_camaldulensis|Trihelix|EcC054233.50
CCAGCACCAGCACCCGCACCAGCACCCGCACCAGCACCAGGCGCCGCCCGCGCCGCCGCCGCCGCCGCCGCCCCAGCCGCCCCACCAGATGATCCTTGGCGAGAGCAGCGGGGAGGACCTCGAGGTCAAGGCCCCGAAGAAGCGCGCCGAGACCTGGGTGCAGGACGAGACCCGGTGCCTCATCGCGCTCCGCCGCGAGATGGACTCGCTGTTCAATACCTCCAAGTCGAACAAGCACCTCTGGGAGCAGATCTCGTCCAAGATGAGAGAGAAAGGGTTCGATCGTTCCCCGACCATGTGCACGGACAAGTGGAGGAACCTGCTGAAGGAGTATAAGAAGGCCAAGTACCAGGATAGAGGGTCCGCGAAGATGTCGTATTACAAGGAGATTGAGGAGATTCTGAGGGAGAGGAGCAAGCATAATCAGTATAAGAGTCCGACGGCCTCGGCTTTGAAGGTCGATCCCTACATGCAGTTTTCTGACAAAGGCATTGAGGATGCTGGGATGACTTTCGGACCTGTAGAAGCAAGTGGTAGGCCGACTCTCAACCTTGAAAGACGTTTGGATCATGATGGGCATCCTTTGGCCATAACTACAGCTGAAGCAGTCGCAGCTAATGGAGTTCCACCTTGGAATTGGAGGGAAACCCCTGGAAATGGTGAGAGTCAGTCATATGGTGGGAGGGTCATCTCAGTGAAGTGGGGTGACTATACCAGAAGGGTTGGTATTGATGGCACTGCCGATTCCATTAAAGAGGCGATCAAATCTGCTTTTAGATTGAGAACCAAACGAGCATTTTGGTTGGAGGATGAAGACCAGGTAATACGAAGTCTTGACAGAGATATGCCTTTGGGAAATTACACTCTCCAGCTTGATGAAGGACTGGCCATAAAAGTTTGCCTATATGATGAGTCAGGGCATATTTCAGTTCATCCAGAAGATAAGATTTTCTACACGGAAGATGATTATCGTGATTTTCTTGCCCGAAGAGGGTGGACGTGTTTGAGGGAGCTTGATGGTTACAGAAACATTGATAATATGGATGACCTACGGCCAGGTGGAATCTACCGCGGTGTGACA
Protein Sequence:
- >EcC054233.50|Eucalyptus_camaldulensis|Trihelix|EcC054233.50
QHQHPHQHPHQHQAPPAPPPPPPPQPPHQMILGESSGEDLEVKAPKKRAETWVQDETRCLIALRREMDSLFNTSKSNKHLWEQISSKMREKGFDRSPTMCTDKWRNLLKEYKKAKYQDRGSAKMSYYKEIEEILRERSKHNQYKSPTASALKVDPYMQFSDKGIEDAGMTFGPVEASGRPTLNLERRLDHDGHPLAITTAEAVAANGVPPWNWRETPGNGESQSYGGRVISVKWGDYTRRVGIDGTADSIKEAIKSAFRLRTKRAFWLEDEDQVIRSLDRDMPLGNYTLQLDEGLAIKVCLYDESGHISVHPEDKIFYTEDDYRDFLARRGWTCLRELDGYRNIDNMDDLRPGGIYRGVT