Gene Details:
- Gene ID: AT3G24340
- Gene Symbol: CHR40, CLSY4
- Gene Name: chromatin remodeling 40, CLASSY4
- Description: chromatin remodeling 40;(source:Araport11)
- TAIR Accession:
- Genome: Araport11_genome_release
- Species: Arabidopsis thaliana
Transcripts:
Plant Ontology Annotations:
- PO:0000037 — shoot axis apex — ápice del epiblasto (epiblastema) (Spanish, exact), シュート頂、茎頂 (Japanese, exact)
- PO:0009009 — plant embryo — embrión (Spanish, exact), 植物胚 (Japanese, exact), germ (related), embryo (broad)
- PO:0009025 — vascular leaf — foliage leaf (exact), hoja vascular (Spanish, exact), leaf, vascular (exact), vascular leaves (exact, plural), 維管束のある葉, または維管束植物の葉 (Japanese, exact), crozier (related), macrophyll (related), megaphyll (related), ascidia (narrow), ascidium (narrow), fiddlehead (narrow), frond (narrow), needle-like leaf (narrow), pitcher (narrow), pitcher blade (narrow), pitcher-blade (narrow), scale-like leaf (narrow), sterile frond (narrow), trophophyll (narrow)
- PO:0009031 — sepal — sépalo (Spanish, exact), がく片 (Japanese, exact)
- PO:0009046 — flower — flor (Spanish, exact), 花 (Japanese, exact), floret (related), Asteraceae floret (narrow), basal flower (narrow), double flower (narrow), hermaphrodite flower (narrow), monoclinous flower (narrow), perfect flower (narrow)
- PO:0009052 — inflorescence flower pedicel — 小花柄 (Japanese, related), pedicelo (Spanish, broad)
- PO:0020100 — hypocotyl — hipocótile (Spanish, exact), 胚軸 (Japanese, exact)
- PO:0025022 — collective leaf structure — estructura colectiva de hoja (Spanish, exact), leaf series (exact), 葉が集まった構造 (Japanese, exact), leaf whorl (narrow), rosette (narrow), cycle (broad), verticil (broad)
- PO:0025281 — pollen — polen (Spanish, exact), pollen grain (exact), 花粉 (Japanese, exact)
Function-related keywords:
- shoot axis apex , plant embryo , vascular leaf , sepal , flower , inflorescence flower pedicel , hypocotyl , collective leaf structure , pollen
Literature:
- Nuclear genes that encode mitochondrial proteins for DNA and RNA metabolism are clustered in the Arabidopsis genome. DOI: 10.1105/tpc.010009 ; PMID: 12837951
- A transcriptome-based characterization of habituation in plant tissue culture. DOI: 10.1104/pp.105.076059 ; PMID: 16489130
- Involvement of the Arabidopsis SWI2/SNF2 chromatin remodeling gene family in DNA damage response and recombination. DOI: 10.1534/genetics.105.051664 ; PMID: 16547115
- An SNF2 protein associated with nuclear RNA silencing and the spread of a silencing signal between cells in Arabidopsis. DOI: 10.1105/tpc.107.051540 ; PMID: 17526749
- Locus-specific control of the de novo DNA methylation pathway in Arabidopsis by the CLASSY family. DOI: 10.1038/s41588-018-0115-y ; PMID: 29736015
- Four putative SWI2/SNF2 chromatin remodelers have dual roles in regulating DNA methylation in Arabidopsis. DOI: 10.1038/s41421-018-0056-8 ; PMID: 30345072
- The CLASSY family controls tissue-specific DNA methylation patterns in Arabidopsis. DOI: 10.1038/s41467-021-27690-x ; PMID: 35017514
Sequences:
cDNA Sequence
- >AT3G24340.1
GGCAAAAAAAAAAAAATTTGCAGAGACAACAGAGGAGAGAGGACATGAGCTTTCTTCCTTCTTCGTCAAATCCACTATTCTAGGGTTTTCGATTTCTCTCTTCAGCCATGGATATGACTAGTTGTGTTGCTAGAAGAACTCGTTCGAGGACTGAATCTTACTTGAACTCGATTCTCAATAAATCAAAGGGGATTTCTGGAGAAGAAGAAGATCAGTCTCTGGGTTGTGTAAATTCGAGGACTGAGAAGAGGAGAGTTAACATGCGTGATGCTTGTTCACCTTCTCCGAGGAAGAAGAAACGACGGCGGAGGAAGGATGATGACGACGATGTTGTATTTGTTAGAACTGAATATCCTGAAGGTAAGCGAGATGATGAGAATGTTGGTTCTACTTCTGGGAATTTACAATCGAAATCGTTTGATTTTGGTGATAGGGTTTGTGATTTTGATGCTGATGATCGTAATTTGGGATGTGAAGAGAAAGCTTCTAATTTTAACCCTATAGATGATGATGATGATGTTGTTTTCGTTGGAACTGTTCAGAGAGAGAATGATCATGTAGAGGATGATGACAATGTTGGTTCTGCTTCGGTGATTTCTCCTAGGGTTTGTGATTTTGATGAGGATGATGCTAAAGTGAGTGGTAAAGAGAACCCTTTATCTCCGGATGATGATGATGATGTTGTTTTCCTTGGAACTATCGCGGGAGAGAATCAGCATGTCGAGGATGTCAATGCTGGTTCTGAGGTTTGTGATATTCTTCTGGATGATGCTAATTTGAGGGGTGAGGAGAAGACTTATGTGTCTGATGAGGTTGTAAGTCTAAGTTCTAGTTCTGATGATGAGGAAGACCCTTTAGAGGAATTAGGGACTGATTCAAGAGAGGAAGTTAGTGGCGAAGATAGAGATTCTGGTGAGAGTGATATGGATGAAGATGCTAATGATTCTGACTCATCTGATTACGTGGGGGAAAGTTCAGATTCTTCTGATGTAGAGAGCTCTGATAGTGATTTCGTTTGTTCTGAGGATGAAGAGGGTGGTACCAGAGACGATGCTACATGCGAAAAGAACCCAAGTGAAAAAGTATACCATCATAAGAAGTCGAGGACTTTTCGTAGGAAGCATAACTTCGATGTAATTAACCTGCTAGCTAAATCTATGTTGGAGAGCAAAGACGTTTTCAAGGAAGATATTTTCTCCTGGGACAAAATAGCAGAGGTTGATTCTAGAGAAGATCCTGTAGTTAGGGAGAGCTCAAGTGAGAAGGTAAATGAACATGGGAAACCAAGGGAACGGAGGAGTTTCCATAGGGTGAGGGAGAAGAACCACTTGAATGGTGAGAGTTTTTATGGTGGCGAAAAACTCTGTGATGGAGAAGAGACAATAAACTACTCGACAGAAGATTCACCTCCTTTAAACTTGAGATTTGGCTGCGAGGAGCCTGTGCTTATCGAGAAAACAGAAGAGGAGAAAGAATTAGACAGCTTGTGGGAAGATATGAACGTTGCTCTAACATTGGAAGGAATGCACTCATCTACCCCTGATAAAAATGGAGATATGCTATGTAGCAAAGGGACACACGACTTTGTCCTGGATGATGAAATCGGTTTGAAATGCGTCCACTGTGCGTATGTGGCTGTCGAGATCAAAGACATCTCACCAGCCATGGACAAGTATCGTCCTAGTGTTAATGACAATAAGAAATGTAGTGATAGAAAGGGTGACCCTTTACCTAACAGGCTTGAGTTTGATGCTTCAGATCCCAGCAGTTTTGTCGCCCCTTTGGATAATATAGAAGGAACTGTCTGGCAATACGTCCCTGGCATCAAAGATACTTTGTACCCACACCAACAAGAAGGGTTTGAATTTATTTGGAAGAATTTAGCTGGGACAACAAAAATTAATGAGTTGAACAGCGTAGGGGTTAAGGGAAGTGGCGGATGCATTATTTCGCATAAGGCTGGAACTGGTAAGACACGTTTGACCGTCGTTTTTCTTCAGTCATACTTAAAACGGTTTCCAAATAGCCATCCTATGGTCATAGCTCCTGCAACTCTAATGCGTACTTGGGAAGACGAAGTCAGGAAATGGAACGTAAACATTCCATTTTATAACATGAATAGTCTGCAGTTATCAGGGTATGAGGATGCTGAAGCTGTCTCACGTTTAGAGGGAAATAGGCATCATAATTCCATCCGTATGGTTAAGCTAGTTTCGTGGTGGAAGCAGAAAAGCATTCTTGGAATTAGCTACCCTCTGTATGAGAAGCTCGCGGCAAATAAGAACACTGAAGGAATGCAAGTGTTTAGGAGGATGTTGGTAGAATTGCCGGGGTTGCTGGTCCTTGACGAGGGCCACACCCCGAGAAACCAGAGTAGTCTCATTTGGAAAGTGCTTACTGAAGTCAGAACAGAAAAGCGTATCTTTCTTTCAGGGACACTGTTCCAGAATAATTTCAAGGAACTTTCTAACGTCTTATGCCTGGCAAGACCAGCTGATAAAGATACGATTTCTTCGAGGATACATGAACTTAGCAAGTGTAGCCAAGAAGGAGAACACGGAAGGGTGAATGAGGAAAACAGAATTGTGGATCTTAAGGCTATGATTGCTCATTTTGTGCATGTCCATGAAGGAACCATCCTTCAAGAAAGCCTTCCAGGTCTAAGAGACTGTGTTGTCGTGTTGAACCCGCCTTTTCAACAGAAGAAAATTCTTGACAGAATTGACACTTCTCAAAACACATTTGAATTTGAGCACAAGCTTTCAGCTGTTTCAGTACACCCATCTCTGTATTTGTGCTGCAATCCGACCAAGAAGGAAGACTTGGTTATTGGGCCAGCAACATTAGGAACTCTCAAGAGGCTTAGACTTAAATACGAGGAAGGTGTGAAAACAAAGTTCCTTATCGACTTCATCCGCATCAGTGGAACCGTGAAAGAGAAAGTGTTGGTGTATAGCCAATATATTGACACTCTGAAGCTGATCATGGAGCAGCTCATTGCAGAATGTGACTGGACTGAAGGGGAACAAATTCTCTTGATGCATGGTAAAGTTGAACAAAGAGACAGGCAGCATATGATCGACAACTTCAACAAACCAGACAGTGGATCTAAAGTTCTACTGGCATCAACAAAAGCATGTTCTGAGGGTATCAGTCTTGTTGGCGCTTCAAGAGTTGTGATTCTTGATGTTGTTTGGAACCCTTCTGTTGAAAGCCAAGCCATAAGTCGAGCTTTCAGAATTGGTCAAAAGCGTGCTGTGTTCATTTACCATCTCATGGTCAAAGACACATCTGAGTGGAACAAGTACTGTAAGCAAAGTGAGAAACATCGCATATCCGAACTGGTCTTCTCTTCTACCAATGAGAAGGACAAGCCGATTAACAACGAAGTTGTTTCCAAAGATAGAATCCTCGACGAGATGGTTCGGCACGAGAAGCTGAAACACATATTTGAGAAGATACTTTATCACCCAAAGAAATCTGACATGAATACCAGCTTCTTCTGATTGAAATATCATTTCTCTCTGTTAATCCCACTCTGAGACTCTAGGTGTTTATATTACTTAACTTCCAGCTTTGGAACAGATCACTCTAGTAATATGTAATTCTGTGATTCAATTTCTTCTAGTTAATGAAGTTGTGTATTTTCCAAGGCT
CDS Sequence
- >AT3G24340.1
ATGGATATGACTAGTTGTGTTGCTAGAAGAACTCGTTCGAGGACTGAATCTTACTTGAACTCGATTCTCAATAAATCAAAGGGGATTTCTGGAGAAGAAGAAGATCAGTCTCTGGGTTGTGTAAATTCGAGGACTGAGAAGAGGAGAGTTAACATGCGTGATGCTTGTTCACCTTCTCCGAGGAAGAAGAAACGACGGCGGAGGAAGGATGATGACGACGATGTTGTATTTGTTAGAACTGAATATCCTGAAGGTAAGCGAGATGATGAGAATGTTGGTTCTACTTCTGGGAATTTACAATCGAAATCGTTTGATTTTGGTGATAGGGTTTGTGATTTTGATGCTGATGATCGTAATTTGGGATGTGAAGAGAAAGCTTCTAATTTTAACCCTATAGATGATGATGATGATGTTGTTTTCGTTGGAACTGTTCAGAGAGAGAATGATCATGTAGAGGATGATGACAATGTTGGTTCTGCTTCGGTGATTTCTCCTAGGGTTTGTGATTTTGATGAGGATGATGCTAAAGTGAGTGGTAAAGAGAACCCTTTATCTCCGGATGATGATGATGATGTTGTTTTCCTTGGAACTATCGCGGGAGAGAATCAGCATGTCGAGGATGTCAATGCTGGTTCTGAGGTTTGTGATATTCTTCTGGATGATGCTAATTTGAGGGGTGAGGAGAAGACTTATGTGTCTGATGAGGTTGTAAGTCTAAGTTCTAGTTCTGATGATGAGGAAGACCCTTTAGAGGAATTAGGGACTGATTCAAGAGAGGAAGTTAGTGGCGAAGATAGAGATTCTGGTGAGAGTGATATGGATGAAGATGCTAATGATTCTGACTCATCTGATTACGTGGGGGAAAGTTCAGATTCTTCTGATGTAGAGAGCTCTGATAGTGATTTCGTTTGTTCTGAGGATGAAGAGGGTGGTACCAGAGACGATGCTACATGCGAAAAGAACCCAAGTGAAAAAGTATACCATCATAAGAAGTCGAGGACTTTTCGTAGGAAGCATAACTTCGATGTAATTAACCTGCTAGCTAAATCTATGTTGGAGAGCAAAGACGTTTTCAAGGAAGATATTTTCTCCTGGGACAAAATAGCAGAGGTTGATTCTAGAGAAGATCCTGTAGTTAGGGAGAGCTCAAGTGAGAAGGTAAATGAACATGGGAAACCAAGGGAACGGAGGAGTTTCCATAGGGTGAGGGAGAAGAACCACTTGAATGGTGAGAGTTTTTATGGTGGCGAAAAACTCTGTGATGGAGAAGAGACAATAAACTACTCGACAGAAGATTCACCTCCTTTAAACTTGAGATTTGGCTGCGAGGAGCCTGTGCTTATCGAGAAAACAGAAGAGGAGAAAGAATTAGACAGCTTGTGGGAAGATATGAACGTTGCTCTAACATTGGAAGGAATGCACTCATCTACCCCTGATAAAAATGGAGATATGCTATGTAGCAAAGGGACACACGACTTTGTCCTGGATGATGAAATCGGTTTGAAATGCGTCCACTGTGCGTATGTGGCTGTCGAGATCAAAGACATCTCACCAGCCATGGACAAGTATCGTCCTAGTGTTAATGACAATAAGAAATGTAGTGATAGAAAGGGTGACCCTTTACCTAACAGGCTTGAGTTTGATGCTTCAGATCCCAGCAGTTTTGTCGCCCCTTTGGATAATATAGAAGGAACTGTCTGGCAATACGTCCCTGGCATCAAAGATACTTTGTACCCACACCAACAAGAAGGGTTTGAATTTATTTGGAAGAATTTAGCTGGGACAACAAAAATTAATGAGTTGAACAGCGTAGGGGTTAAGGGAAGTGGCGGATGCATTATTTCGCATAAGGCTGGAACTGGTAAGACACGTTTGACCGTCGTTTTTCTTCAGTCATACTTAAAACGGTTTCCAAATAGCCATCCTATGGTCATAGCTCCTGCAACTCTAATGCGTACTTGGGAAGACGAAGTCAGGAAATGGAACGTAAACATTCCATTTTATAACATGAATAGTCTGCAGTTATCAGGGTATGAGGATGCTGAAGCTGTCTCACGTTTAGAGGGAAATAGGCATCATAATTCCATCCGTATGGTTAAGCTAGTTTCGTGGTGGAAGCAGAAAAGCATTCTTGGAATTAGCTACCCTCTGTATGAGAAGCTCGCGGCAAATAAGAACACTGAAGGAATGCAAGTGTTTAGGAGGATGTTGGTAGAATTGCCGGGGTTGCTGGTCCTTGACGAGGGCCACACCCCGAGAAACCAGAGTAGTCTCATTTGGAAAGTGCTTACTGAAGTCAGAACAGAAAAGCGTATCTTTCTTTCAGGGACACTGTTCCAGAATAATTTCAAGGAACTTTCTAACGTCTTATGCCTGGCAAGACCAGCTGATAAAGATACGATTTCTTCGAGGATACATGAACTTAGCAAGTGTAGCCAAGAAGGAGAACACGGAAGGGTGAATGAGGAAAACAGAATTGTGGATCTTAAGGCTATGATTGCTCATTTTGTGCATGTCCATGAAGGAACCATCCTTCAAGAAAGCCTTCCAGGTCTAAGAGACTGTGTTGTCGTGTTGAACCCGCCTTTTCAACAGAAGAAAATTCTTGACAGAATTGACACTTCTCAAAACACATTTGAATTTGAGCACAAGCTTTCAGCTGTTTCAGTACACCCATCTCTGTATTTGTGCTGCAATCCGACCAAGAAGGAAGACTTGGTTATTGGGCCAGCAACATTAGGAACTCTCAAGAGGCTTAGACTTAAATACGAGGAAGGTGTGAAAACAAAGTTCCTTATCGACTTCATCCGCATCAGTGGAACCGTGAAAGAGAAAGTGTTGGTGTATAGCCAATATATTGACACTCTGAAGCTGATCATGGAGCAGCTCATTGCAGAATGTGACTGGACTGAAGGGGAACAAATTCTCTTGATGCATGGTAAAGTTGAACAAAGAGACAGGCAGCATATGATCGACAACTTCAACAAACCAGACAGTGGATCTAAAGTTCTACTGGCATCAACAAAAGCATGTTCTGAGGGTATCAGTCTTGTTGGCGCTTCAAGAGTTGTGATTCTTGATGTTGTTTGGAACCCTTCTGTTGAAAGCCAAGCCATAAGTCGAGCTTTCAGAATTGGTCAAAAGCGTGCTGTGTTCATTTACCATCTCATGGTCAAAGACACATCTGAGTGGAACAAGTACTGTAAGCAAAGTGAGAAACATCGCATATCCGAACTGGTCTTCTCTTCTACCAATGAGAAGGACAAGCCGATTAACAACGAAGTTGTTTCCAAAGATAGAATCCTCGACGAGATGGTTCGGCACGAGAAGCTGAAACACATATTTGAGAAGATACTTTATCACCCAAAGAAATCTGACATGAATACCAGCTTCTTCTGA
Protein Sequence
- >AT3G24340.1
MDMTSCVARRTRSRTESYLNSILNKSKGISGEEEDQSLGCVNSRTEKRRVNMRDACSPSPRKKKRRRRKDDDDDVVFVRTEYPEGKRDDENVGSTSGNLQSKSFDFGDRVCDFDADDRNLGCEEKASNFNPIDDDDDVVFVGTVQRENDHVEDDDNVGSASVISPRVCDFDEDDAKVSGKENPLSPDDDDDVVFLGTIAGENQHVEDVNAGSEVCDILLDDANLRGEEKTYVSDEVVSLSSSSDDEEDPLEELGTDSREEVSGEDRDSGESDMDEDANDSDSSDYVGESSDSSDVESSDSDFVCSEDEEGGTRDDATCEKNPSEKVYHHKKSRTFRRKHNFDVINLLAKSMLESKDVFKEDIFSWDKIAEVDSREDPVVRESSSEKVNEHGKPRERRSFHRVREKNHLNGESFYGGEKLCDGEETINYSTEDSPPLNLRFGCEEPVLIEKTEEEKELDSLWEDMNVALTLEGMHSSTPDKNGDMLCSKGTHDFVLDDEIGLKCVHCAYVAVEIKDISPAMDKYRPSVNDNKKCSDRKGDPLPNRLEFDASDPSSFVAPLDNIEGTVWQYVPGIKDTLYPHQQEGFEFIWKNLAGTTKINELNSVGVKGSGGCIISHKAGTGKTRLTVVFLQSYLKRFPNSHPMVIAPATLMRTWEDEVRKWNVNIPFYNMNSLQLSGYEDAEAVSRLEGNRHHNSIRMVKLVSWWKQKSILGISYPLYEKLAANKNTEGMQVFRRMLVELPGLLVLDEGHTPRNQSSLIWKVLTEVRTEKRIFLSGTLFQNNFKELSNVLCLARPADKDTISSRIHELSKCSQEGEHGRVNEENRIVDLKAMIAHFVHVHEGTILQESLPGLRDCVVVLNPPFQQKKILDRIDTSQNTFEFEHKLSAVSVHPSLYLCCNPTKKEDLVIGPATLGTLKRLRLKYEEGVKTKFLIDFIRISGTVKEKVLVYSQYIDTLKLIMEQLIAECDWTEGEQILLMHGKVEQRDRQHMIDNFNKPDSGSKVLLASTKACSEGISLVGASRVVILDVVWNPSVESQAISRAFRIGQKRAVFIYHLMVKDTSEWNKYCKQSEKHRISELVFSSTNEKDKPINNEVVSKDRILDEMVRHEKLKHIFEKILYHPKKSDMNTSFF