Gene Details:
- Gene ID: AT5G11160
- Gene Symbol: APT5
- Gene Name: adenine phosphoribosyltransferase 5
- Description: adenine phosphoribosyltransferase 5;(source:Araport11)
- TAIR Accession: locus:2147967
- 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)
- PO:0000084 — plant sperm cell — célula espermática o esperma (Spanish, exact), male gamete (exact), microgamete (exact), 植物精子細胞 (Japanese, exact), sperm nucleus (related), sperm cell (broad)
Gene Ontology:
- GO:0009908 — acts upstream of or within — flower development
- GO:0044255 — acts upstream of or within — cellular lipid metabolic process
- GO:0044209 — involved in — AMP salvage
- GO:0009266 — acts upstream of or within — response to temperature stimulus
- GO:0003999 — enables — adenine phosphoribosyltransferase activity
- GO:0006168 — involved in — adenine salvage
- GO:0005737 — located in — cytoplasm
- GO:0040007 — acts upstream of or within — growth
- GO:0048827 — acts upstream of or within — phyllome development
- GO:0010073 — acts upstream of or within — meristem maintenance
- GO:0005829 — is active in — cytosol
- GO:0007049 — acts upstream of or within — cell cycle
Function-related keywords:
Literature:
- Adenine phosphoribosyltransferase isoforms of Arabidopsis and their potential contributions to adenine and cytokinin metabolism. DOI: 10.1034/j.1399-3054.2002.1150106.x ; PMID: 12010467
- The relationship of drought-related gene expression in Arabidopsis thaliana to hormonal and environmental factors. DOI: 10.1093/jxb/ern155 ; PMID: 18552355
Sequences:
cDNA Sequence
- >AT5G11160.1
AAGAGCTAAAGGCCAAAAGATTCTCTCGAAGATCCATAAGATTTTCTTTTCTTCTTCGGATCTTTCTTCACTCTCTTTAATACAGTATCCATTAACGCTTGTGATTGTGATTTTATTGCGGTTCATAAAAACCTGTGTGCCGACCCAGTTCGCGCGTGTGGTACACACACTCTTCTCCACTACTATTAAATATTAAATGCTCTCTCACCCACTTTCTATACAACTGGTGGTGAACAGAGGAACAGAGCGAGACAGAGACATAGAGAGAGAGAGAGAAGAGAGAAGATCTGATCTCATTTCATTTCATTTCCTTCTTCTGCGAGGGAAATTTATTTGTTTCCTACTTTGAATTCTTCCCCATTTACTCTCTCAAGAGAGAGAGAGAGTGCGAGAGATTAATACACACAAGTGAAGACGCTCCTTAACTCTCTCAGAATTGAAACTTTAGTGAGAAAGAGAAGAGAGAGAGAAAAGATGTTTGCGGCGGAGAATGGTCTCAAAGGAGATCCAAGGCTTGAAGCTATATCAGCAGCCATTAGGGTTGTCCCTAATTTCCCTAAGAAAGGGATTATGTTTCAGGACATAACTACGTTGTTACTGGATCACAAGGCGTTTAAACACACAATTGATATCTTCGTAGATCGTTACAAAGACATGCAAATCTCTGTCGTTGCTGGAGTTGAAGCAAGAGGTTTCTTGTTTGGTCCTTCCATTGCATTAGCCATCGGCGCAAAGTTTATCCCTTTGCGTAAACCAGGAAAATTACCAGGGAAAGTGATATCGGAGTCTTATGAGCTCGAGTATGGGCATGACCGTTTAGAGATGCATGTTGGCGCTGTTGAGCCACGCGAACGCGTCATTATCATTGATGATCTTGTTGCTACTGGCGGCACTCTTTCTGCCGCAATGAGCCTATTGGAGAGCCAAGGAGCTGAAGTTGTTGAGTGTGCTTGTGTTATTGGCTTGCCTGAAGTCAAGGGGCAACACAAGCTCAAAGGGAAGCCGCTTTATGTGTTGGTGGAGCCTAGTGGATTAGATGAGTTCTGTTAGGATACATACCGGTTACTTCCGGTTCAGTTTTCTTTCCCTGCAGAGTTCATGTTCTTTTTTTCAAAATTTCTAGGGTTCCAACTTCTTGTATTCGTTCTCGTTTATTGATCTCTGTAGATTTTGAATTTTGATGTGTACTTTCCACGGCAGTGGTTGGTAAAAAACCGAGATACTGAAAAGAGTCTTTACATTTCCCGGTTTGGTGGAATTTCTGATGGATCACTAACTCATGTTAATCAGTTTATAATAACTGTAATCATTAAAAGGGT - >AT5G11160.2
AAGAGCTAAAGGCCAAAAGATTCTCTCGAAGATCCATAAGATTTTCTTTTCTTCTTCGGATCTTTCTTCACTCTCTTTAATACAGTATCCATTAACGCTTGTGATTGTGATTTTATTGCGGTTCATAAAAACCTGTGTGCCGACCCAGTTCGCGCGTGTGGTACACACACTCTTCTCCACTACTATTAAATATTAAATGCTCTCTCACCCACTTTCTATACAACTGGTGGTGAACAGAGGAACAGAGCGAGACAGAGACATAGAGAGAGAGAGAGAAGAGAGAAGATCTGATCTCATTTCATTTCATTTCCTTCTTCTGCGAGGGAAATTTATTTGTTTCCTACTTTGAATTCTTCCCCATTTACTCTCTCAAGAGAGAGAGAGAGTGCGAGAGATTAATACACACAAGTGAAGACGCTCCTTAACTCTCTCAGAATTGAAACTTTAGTGAGAAAGAGAAGAGAGAGAGAAAAGATGTTTGCGGCGGAGAATGGTCTCAAAGGAGATCCAAGGCTTGAAGCTATATCAGCAGCCATTAGGGTTGTCCCTAATTTCCCTAAGAAAGGGATTATGTTTCAGGACATAACTACGTTGTTACTGGATCACAAGGCGTTTAAACACACAATTGATATCTTCGTAGATCGTTACAAAGACATGCAAATCTCTGTCGTTGCTGGAGTTGAAGCAAGAGGTTTCTTGTTTGGTCCTTCCATTGCATTAGCCATCGGCGCAAAGTTTATCCCTTTGCGTAAACCAGGAAAATTACCAGGGAAAGTGATATCGGAGTCTTATGAGCTCGAGTATGGGCATGACCGTTTAGAGATGCATGTTGGCGCTGTTGAGCCACGCGAACGCGTCATTATCATTGATGATCTTGTTGCTACTGGCGGCACTCTTTCTGCCGCAATGAGCCTATTGGAGAGCCAAGGAGCTGAAGTTGTTGAGTGTGCTTGTGTTATTGGCTTGCCTGAAGTCAAGGGGCAACACAAGCTCAAAGGGAAGCCGCTTTATGTGTTGGTGGAGCCTAGTGGATTAGATGAGTTCTGTTAGGATACATACCGGTTACTTCCGGTTCAGTTTTCTTTCCCTGCAGAGTTCATGTTCTTTTTTTCAAAATTTCTAGGGTTCCAACTTCTTGTATTCGTTCTCGTTTATTGATCTCTGTAGATTTTGAATTTTGATGTGTACTTTCCACGGCAGTGGTTGGTAAAAAACCGAGATACTGAAAAGAGTCTTTACATTTCCCGGTTTGGTGGAATTTCTGATGGATCACTAACTCATGTTAATCAGTTTATAATAACTGTAATCATTAAAAGGGT
CDS Sequence
Protein Sequence