Gene Details:
- Gene ID: AT5G05820
- Gene Symbol: UUAT3
- Gene Name: UDP-uronic acid transporter 3
- Description: Nucleotide-sugar transporter family protein;(source:Araport11)
- TAIR Accession: locus:2166384
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0009005 — root — raíz (Spanish, exact), radices (exact, plural), radix (exact), 根 (Japanese, exact), aerial root (narrow), climbing root (narrow)
Gene Ontology:
- GO:0008514 — enables — organic anion transmembrane transporter activity
- GO:0006810 — acts upstream of or within — transport
- GO:0030154 — acts upstream of or within — cell differentiation
- GO:0034654 — acts upstream of or within — nucleobase-containing compound biosynthetic process
- GO:0042546 — acts upstream of or within — cell wall biogenesis
- GO:0015297 — enables — antiporter activity
- GO:0016049 — acts upstream of or within — cell growth
- GO:0043170 — acts upstream of or within — macromolecule metabolic process
- GO:0009059 — acts upstream of or within — macromolecule biosynthetic process
- GO:0009888 — acts upstream of or within — tissue development
- GO:0005794 — is active in — Golgi apparatus
- GO:1901615 — acts upstream of or within — organic hydroxy compound metabolic process
- GO:0044281 — acts upstream of or within — small molecule metabolic process
- GO:0005794 — located in — Golgi apparatus
- GO:0048589 — acts upstream of or within — developmental growth
- GO:0005886 — located in — plasma membrane
Function-related keywords:
Literature:
- Analysis of the plastidic phosphate translocator gene family in Arabidopsis and identification of new phosphate translocator-homologous transporters, classified by their putative substrate-binding site. DOI: 10.1104/pp.016519 ; PMID: 12644669
- Molecular cloning of two Arabidopsis UDP-galactose transporters by complementation of a deficient Chinese hamster ovary cell line. DOI: 10.1093/glycob/cwh159 ; PMID: 15456736
- Biosynthesis of cellulose-enriched tension wood in Populus: global analysis of transcripts and metabolites identifies biochemical and developmental regulators in secondary wall biosynthesis. DOI: 10.1111/j.1365-313X.2005.02584.x ; PMID: 16367961
- New steps in mucilage biosynthesis revealed by analysis of the transcriptome of the UDP-rhamnose/UDP-galactose transporter 2 mutant. DOI: 10.1093/jxb/erz262 ; PMID: 31145803
Sequences:
cDNA Sequence
- >AT5G05820.1
TTCGGTAATAACCAATAACAAAGTCAATGGCTCCTTTCCTTCATTGTTACACATCTTCACACTTTGATTTTTCAAGTAACCAAACAAAAAAAACTTTAGCCCAAAGAAACATTACATAACGCACCAATTATAATATCATGAAACTGAAAGAAAAAATAAATTAGTTAAAAAAGGAAAGAGAAGTGTTGTTGCAGCTTTAGCCCAAAGATCTCTCCTTTTTGCAGAGCTTCTTCTTCTTCTTCTCCAAAAATCCCAACTTTCTTCTCTTTCCCGGTTTCTTCGTCTCCAGCATTTTCGCGTGTTGTAACCTAATCCAAATCTTACCCATTGATGGAATAACATCATCACGACGCGTCAAAATTCTGTATCGGAGGACCGAGAGATCTCCATCTCCTGTCCAGATTCGATTCCCACCAATCCCAATTTCGTGAAATTCGTTAGGGTTTTAGTTTGAATCTCATCTCATCAGATCGAGTCGACCCAGGATTAGGAAGAAGAAAAGCGATGAAGATGGCGACGAATGGCCGGTTTTTCACAATCGGGCTAGTCGCGTCTTGGTACTCATCGAACATTGGTGTATTGTTGCTGAACAAGTACTTGCTTAGCAATTACGGATTCAAGTACCCGATCTTTCTCACCATGTGTCACATGACGGCTTGTTCGTTACTCAGCTACGTCGCCATTGCTTGGTTGAAGATGGTTCCGATGCAGACGATTCGATCCAGAGTTCAGTTCTTTAAGATCGCAGCTCTAAGTCTCGTTTTTTGTGTGTCGGTGGTCTTTGGTAACATCTCTCTCCGCTTTCTTCCTGTTTCGTTTAACCAAGCCATTGGTGCTACGACGCCGTTTTTCACCGCCGTGTTTGCTTACCTGATGACGCGTAAGAAAGAGGCTTGGTTGACTTACTTCACTCTCGTCCCTGTCGTCACCGGAGTTGTTATTGCTAGTGGGGGTGAGCCAAGCTTTCACCTGTTTGGATTCCTTATGTGCATTGCAGCAACAGCTGCGAGAGCACTTAAATCAGTGCTTCAAGGAATTTTGCTTTCTTCTGAAGGGGAAAAGCTGAACTCCATGAATCTCCTCCTTTACATGGCTCCAATAGCTGTCGTGCTCCTTCTGCCTGCTACTCTTATCATGGAGAAAAATGTTGTCGGCATTACAATTGCACTTGCAAGAGATGATTTCAGAATCGTTTGGTATCTTCTATTCAATTCAGCGCTCGCCTATTTAGTCAACTTGACAAATTTCTTAGTCACAAACCACACTAGCGCCCTGACTTTACAGGTGCTAGGAAACGCCAAAGGAGCAGTAGCAGTGGTGGTCTCTATTCTAATCTTCAAGAATCCGGTGTCAGTGACCGGAATGCTGGGTTACTCCCTCACCGTCTGTGGAGTTATCCTGTACAGCGAAGCCAAGAAACGAAACAAAAATTAGAACACTAAACACACACAAAGCTTTTACTTCTTCTTCATCATTCCCCCCTATATATATGTTTTATATTTTCTCCCCTATGGATATACAGGCAAGTAGTCTCTTTTGCTGGGCCAAACTGACTCTTGTCTTAATGAAAAGCTGGGCCAAAAACATCTCTTTTTTTTGGCAGAAACAGAGAAGCAAAGCCACACAAAGATTGATTACCAAAGGCAAGAATTTAGAGAACTTCCTCCTATGAATAAGTAACCTTTTTGTTTTTCATTTTTGTTCTTTCTTCTCGGATTCTCTTGCCTTTCCTCTGTAGGTTGTTTGTTGAATTAGGTTTGTTTCTTCGATTCTTTACATTTTAGTTTTGTGATGTCAACATTTTACAACAACACGGATTGATTCATTTAATCGAAAGAGAGAAAGTTCCTTCTA
CDS Sequence
Protein Sequence