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PPAR-alpha (Peroxisome proliferator-activated receptor alpha )

Organism
Astatotilapia burtoni (Astatotilapia burtoni )
GO term(s)
Molecular Function: GO:0003677
Cellular Component: GO:0005634
Biological Process: GO:0035358
Paralogs
PPAR-alpha-1,
M_014335327.1
PPAR-alpha-2
XM_005915663.2
Sequencing Methods
PPAR-alpha-1: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_005179490.1) annotated using gene prediction method: Gnomon.

PPAR-alpha-2: MODEL REFSEQ: This record is predicted by automated computational analysis. This record is derived from a genomic sequence (NW_005179411.1) annotated using gene prediction method: Gnomon.
Sequence >XM_014335327.1 Astatotilapia (Haplochromis) burtoni ppar-alpha-1
CAACACAACGGCCTGTTTATTGTCCTGTTTGCACGGCCCATTTCTAAGATAGCGGTTGAAGAAGCAGAGATTGCTCCGGC
TGTCAGAGCAGTCCTTTATAAAGGCCTCTGGTCAGGTCTGGTCATCGCAGTGATGGGAAGAGTAATGCCAAAGGGTTAAT
GCTGTGTTCAATACTCAGCACAATGAAAGTTTGATGAGTGAGAGTGCCGCCAGCCTCCTCCCATCACCACAATGGTCGAC
ATGGAGACCCATTACCATCCCCCCTCTCCCCTGGAGGACTCGGTGCTGGGCAGTCCCCTGTGTGCTGATGACGATTTCAT
GGGTAGCATGGAGCAGCTCCAGGACATCTCCCAATCCATCAGCGACGACGCTCTTAGCTCATTTGGTGTCCCAAAATACC
AATCCTCCAGCAACGGCTCTGATGGGTCCACCGTCCTCGATGCGCTTACGCCAGCATCCAGCCCATCATCGGTTGTTTAT
GGCGTGGTGGCTGGCCAGGAGGAATTGTCATCTTCATCCACATCACTGAACCTGGAGTGCCGAGTGTGTTCTGACCGCGC
CTCGGGCTACCACTACGGAGTCCATGCCTGCGAGGGCTGCAAGGGTTTTTTTCGCCGGACCATCCGTCTGAAGCTGGAGT
ATGACAAGTGTGAACGTCGCTGCAAAATCCAAAAAAAGAACCGCAACAAGTGCCAATACTGCCGCTTCCAGAAGTGCCTG
TCAGTGGGAATGTCCCACAATGCCATCCGGTTTGGTCGGATGCCCCAGTCAGAGAAGCTCAAACTAAAGGCGGAGATGGT
GACGGTGGACAAAGAGGTGGAAAACCCCCAGCTAGCTGACCAGAAGACCCTGGCCAAGCACATTTATGAGGCTTACCTGA
AGAACTTCAACATGAACAAGGCCAAGGCTCGATCCATTCTCATGGGCAAGACCAACACTGCTCCTTTTGTCATTCACGAC
ATGGAGACCCTCCAGCTGGCAGAGCAGACACTGGCGGCCAAGATGGTCGGCTCCGTGGGAGCGATGAAGGACAAGGAGGT
GGAGGTTCGGATTTTCCACTGCTGCCAGTGCACGTCGGTGGAAACCGTCACGGAGCTCACAGAGTTTGCAAAGTCCGTCC
CCGGGTTCTCGAGCTTGGACCTCAACGATCAGGTGACTCTTTTGAAATACGGAGTGTACGAAGCCATTTTCGCCATGCTT
GCCTCCAGTATGAACAAGGATGGGCTTCTTGTAGCGTACGGCTCAGGCTTCATCACCCGGGAATTCCTCAAGAGCCTGCG
TCGACCGTTCAGCGACATGATGGAGCCAAAGTTCCAGTTTGCCATGAAGTTTAATGCGCTGGAGTTGGACGACAGTGATC
TGGCTCTCTTTGTGGCTGCCATCATCTGCTGTGGCGACCGGCCAGGCCTGGTGAATGTGGCACACATCGAGGTGATGCAG
GAGAGCATCGTCCAGGTCCTGCAGCTCCATCTGCTGGCCAATCACCCCGATGACACTTTCCTCTTCCCCAAGCTGCTGCA
GAAACTAGCTGACCTGAGGCAGTTAGTCACTGAGCACGCACAGCTTGTGCAGGAGATCAAAAAGACAGAGGACACCTCAC
TGCATCCGCTCCTGCAGGAGATCTACAGAGACATGTACTGAAGACTTTGGAGGTATAACCACAGTAGGAAAACAAGAAAC
CATCTCCTTCTGAGCGGGGACTTGAAAAGAAGAGGAGACGTCCACATACTGGGTTTGAACCACTTAACCTCTGACCCTAA
AGGGTTAGCTTTGGTGTCTGTCCAGTGTAAGGGAACCTAAAGGTGAAGAAAAAGGAGGCTGATGATTCATTTGATTTGAC
AAAGTGCTTTCCACTTCATTGTGTGTGAATCTTATCAGGCAGAAGAATCATGTATGCTAAGATACTTTGTACAGCTGATT
GAGCCCCTGTCCAGACACCACTGAATGCAATCTCTGACCAAACTCTAAATGTTCTTTTTTCCATATTTTTTTTAAAACGT
CTGTAAGGTCACCTCCTTGGTGGAACCCTGAGGTAACCCTAATTTGAAGAACAAAAGTGAACTTTATAATTGCCACTCCA
GCCGATTGTTTTACAGCAACGAGCCATATGCCCGAATAACTTAATAACAGCAGCAATTATGCAGTTTAAATCAAGGCAGC
TTCTCCTCAATTGGCTACCAAAATGTGGCCGGTTGAGGAGCCAGTGGTTATGAGCACGCCAGCCCGCCACCGTGATTCTC
AAGCTTTTCTGTGGAGTCACGTCCTGAACATAACCATTTTATCTGTACGTCATGTCCCCGAAGTCATACTTCTTAATGAC
ACAGTAGAAATTGCCATCATCATTATTATTATTATTTTATTTTATTTTAATATTCTTAACAAGAAATACGACTTAGTGCT
TAAGTTGTCCACAAACTGTACTGGGAATGCTATTTTTTTTTTTCTTCAAATTAGGTAGCAGTGCCCAAAGTTCAGACTCA
CTGTGTACATGCACCACAATGCACTGAAGCACAAGCATGCCTGTGATATGTTAATGTGACACTTTTCTAATGGAGGTTTC
AAAGGACAAAAAAGACATACACAGGTGTTTAGCACTCCCTCCTGATGTGTGTTCTGGTATTAAAGGGCTAACACTGTTAT
TAACCACAATACAACTCTGACACGGGCGACACATGAATTCACTCAGCGAATCTCTCTCTCTCTCTCTCTGTTATTGTGTT
TAACTGTCTGTTTGGTCCTCATAACACACGTGTTAGTTAAGATTTAACAATCTTATGTGCACATTTTTCCCTGATGAAAA
TGTAATTGTTTTTATTTTTCCCAGCTAAGAGAAAACCACAGTGATGAGGCCTCATTGGTGAAACATCTAGTTTGTTAGTT
GAAAGGTTGTCACACTTTCATTTGTTTAGTTTTCTCTGTGAAATCACTTGGCCAGTTATAGAAGACCGTCAATCTGGACG
TATGCAGGTAAAAGAAAAATGAGTCCGTAGCCCTTTTCCTACTCAGTTATTCTCTGGCTTTGGTGTTTTTTGCTATCTAA
CAAAATAGGGACATTTCCATGTGAAAGTGCCGCTCCTGCATTTTGTTGTCACACTGCCTTTAATATAAAATACATACGGT
GGACATCAGAGGACCTATGTTAAGGGAATGCTGAAAACATGCATAGTTTTCTGATAGTTCGGATCATACACATCTGACTC
TCTGTGAGAGGGCGCTACTCCTTTTCTGCCTCATCACTCACACTGTCCTGAAATGATCATTGAATTCAGAGAAATGTTCC
TTATGTTTGTAACACATCGCAACATCAGAGCGGGCTTTACATAACTGAAGCTTTCACACTGACTGCTCACCCCAGCTTTT
AACTCTCGTGGTAAACAAGGTACTAATGATGATTGACTTTTGTATTCGTAAGTTGGGTGAATACTTTCAGATGTTTGAAT
ATTTACAGTAAATGTTGTTATCTACTGTTTTGTTTTGTTCTTGGTCTAAATGCGTCATGCTTGTCTTTGAATCGAATCGT
ATTTTTATACTGAAGTATGAATATATAATATATATATAACAAAATCTCACATGTGTTTAGTTGAAATGGCACAGCTGAAG
AGTACATTGTAAATAGACTTAAGGTGTAACAGGGCAACTGGTAATCTGCATATCCATAGATCTGAATTTTTGAAATGGAG
AGTCATCTAGACCATAATGTGCATTCAGTTCCTTCAAGTTGCACTTCGTTTATCTGTCGAATTAAGCACTAGAATTTTAA
ACTGTAAGCATGCATGGTCTGCGCAGGGCTACACTAGCTTACATGTTTGAGTGGTTAGTTATAAACTTGACCTCTGTGAC
CTTTTGATTACCATGAAGAGTAAAAAGGAACAAAACATTTCATAGGAAATGTGAAGGCACAGCTTAGCACTGATCATCCA
GTACTAATCCCTTCTTCTAATGCTTCTATCTCAGGTTGTACATAAGAAAACAAAGGGGGTAATATATGCACAGATTGGGG
GGGTGGGGGGGGTCACATAATATCTCTGTTGGTTTATAGAGAAACTGAATGCACTCGTAATGTAATTTGCCATTAAATCA
CATGCTATAGCAGTAAATGTGTTGCAGTAATGAGAAAAACACGTATATTGTTTTACAATTCTGATCTCATCGTGCTTTTT
CTCTTTGTTTTTGTCTGACTTTTCTCACTCGCTGCTATATTGTACTAACTTACCAAGCATTTCTTATGCCATAAGTAGAT
TACTGATCTTTAAACTGCCTCTACTTGCATATATCTGGTCACAGAATGTCAGACCCACTTCAGCGCAGCTCAGTTTTTAA
CCTTGCAGATTTCCTGGGACTCGCTCATCCCAGGTGTGCTCGGGGAAAAAACCACAAACCTGTGTGTGCCTTAGTGTGTG
CCATAAAACACCAGATTTAAAAAAAATAAATAAAATAAAAAAAGTTTCTTGCACACACACTTGTAAACTGTTGGCATCTT
CAGCTAGATTTAGCTGTTTGTGACACAAAAGGGTCCCACAGGCTGGAAAATAATGTCACTGTACATTCTATACAATGTGC
ACCCTTCTGGGCAGTAACAGTGAAGGATTTGCTTTTCAAAAATACAGACTTTTTAAATGTTAAACATAAAAAAAAAACTG
CTAGAAACTTTATCAACAAGGCAACTCAAAATGTCAACAAGATGTCATGTAAATTTGCAAAGTCAGCTTTCCCTTAAGAA
TGTCTTTTTTGTGTGTTGAACTGTCAAGGGACTTTTAAACTTTTATCAGGGAATCGTAGTCTTCCTTTGTTGAACTAGCT
CAGGATATAGGACAGTACTGTTTTCCCTTCCTCATTCACTCTGGAGTGAGTATAGAGTGCTCTGCCTTACAATACGCATA
CACCAACAACAATACAGATTAAGATTACCTTTATTTTTGTTTTTCCTGAACTGAAAGAAAGAAAAGAAAAACTTGGGCTT
ACTTGGGGCAGCAGTTATAGGATTTAGAAACGTGATTTTTTTTCTCTCCTGAGTTAAACTTGTTTCTGTGGCTGTAGTGT
CATGCAAAGAGACCATGGAGTCTCCCTTTCGATGTGTCGTTAATGTGTACTGTGGCTTGATAACAATACTGTAAATGTTT
GATGAATGTATATTTAGTCATTTAAACGATGAAACAAATTGAGATTGAATGGATTTAAAAATAAAGTGATTTTAAAATCT
G

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>XM_005915663.2 Astatotilapia (Haplochromis) burtoni ppar-alpha-2
ACCATAGGTGTGTCAGGAGGTGTGTGCGCCATGTTGCGGTCCCTCTCTACGTTATTTCCTGCTGAGGATGACGTTTTTGA
CGGCAGGGAGGGAGGCAGCAGAGCCGATCAGCAGGCGCATCCGTGAGCGTCCCAGGCCCGAAGCAGCTCTCTCCTCCTCC
TCCTCTGATAAAGCACAGGCGTCCATTCCGGCAGCGAGAGCTTGAAATGCTCCGGATAGCAGACTCCGAGCTGAGTCTGG
TGAGTGAGGGTTTGAATCCCTGATCTCTACCATGGCAGGGGATCACTACAGCCCCCCATCCCCACTGGGGGATTCCCTCC
TGGGAAGTCCACTATGTGGAGACCTGATGGAGGATCTTCGTGATATCTCCCAGTCTATAGGAGATGACGCACTGGGGTTT
GATTTTCCAGAGTACCAGAGCACTGGTTCGGGGTCCAACAGCTCTGTCGCACTGGAGACCTTGACCCCAGCCTCGAGTCC
ATCATCAGGAGTGTGCGGAGCAGCGGCTGGCCAAGATGAGAGCGGCAGCACCCTCAACCTCGAGTGCCGGGTGTGCTCTG
ACAAAGCTTCGGGCTTCCACTACGGGGTGCACGCATGCGAAGGCTGCAAGGGTTTCTTTAGGAGGACCATCAGGCTGAAG
CTGGAGTATGATAAGTGTGAGCGGAACTGCAAAATCCAAAAGAAGAACCGAAACAAGTGCCAGTACTGCAGATTCCACAA
GTGCCTCTCTGTGGGCATGTCCCACAACGCCATCCGGTTTGGTCGTATGCCCCAGGCAGAAAAACTGAAGCTGAAGGAGG
AAAGCAAGATGGTTGAGAAAGATGTGGAAAGTCCCTTAATGTCTGACCACAAGTTTCTGGTCAGGCAGATCCATGATGCC
TACATGAAGAACTTCAACATGAACAAGGCAAAAGCACGGCTCATACTCACTGGAAAAACTAGCAAGCCGCCTCTCATCAT
CCACGACATGGAGACGTTCCAGCTGGCGGAGAGAACGTTAGCGGTCCATATGACAAACAGCGACTATCCGGAGTCTGACA
GCGTCCTCGGACAAGTGAGTCCGGCTGTGTCGTGCGGGGAGCTTCGGCAGAGGGAGGCCGAAGCCAGGCTCTTCCACTGC
TGCCAGAGCACCTCAGTGGAGACTGTCACAGAGCTAACGGAATTTGCCAAGGCTATGCCGGGTTTCCAGAGTCTGGATTT
GAATGATCAGGTGACTCTCTTGAAGTACGGTGTTTACGAAGCCCTCTTCACACTCTTGGCCTCGTGCATGAACAAGGACG
GCCTCCTGGTGGCCCGTGGTGGAGGCTTTATCACCCGTGAGTTCCTCAAGAGTCTCCGCCGACCATTCAGTGACATGATG
GAGCCCAAATTCCAGTTTGCCACACGCTTCAACTCTCTGGAGCTGGACGACAGCGACCTAGCTCTTTTTGTGGCTGCTAT
TATCTGCTGTGGAGATCGTCCAGGCCTGGTAGACGTACCTGTAGTAGAGCAGTTGCAGGAAAGCATTGTTCAGGCGCTGC
GGCTCCACCTGCTGGCCAATCACCCAGATGACACCTTCCTTTTCCCCAGGCTGCTGCAGAAGTTGGCTGACCTCCGGGAG
CTGGTCACTGAGCATGCTCAGCTGGTGCAAGAAATCAAGACGACAGAGGATACTTCCCTGCACCCGCTGCTGCAAGAAAT
ATACAGGGACATGTACTGAGTATATGAACTGAGAAATGCATATGAATGTACAGGAAGGAACAGCAATGCAGCTTCTGAGG
CTGCTGCACAAACCGGAGCAAAACAAAAATCTTTTTTTAAGGAGGGGGGAGGCAGCTTTTGTTGGGAAAGTGACTGCTTC
CACTTCATTAAGAGGTCGCACAGTGGAAAGGGAGCGTTTTTTTTAAACCATAGATGTGCAGAGGTATCATTAAAGGGTTA
ATTTTGTTGACCAGCAGCACCAGAATGTCTTGGAGCTGAGTGCCTTGGATGCCAGCTTTTACACATGTGAAGAAAAGTGA
CTCTGAAGCAGGCTGTGCATATTAGCATATTGTGCAAAGAAATTTATGTACACATATCAAAAATATACCTGGGTATGACT
GCTGACCTCATGCGTGCGTACACTGAGGATAACTATGCCTGTGAACATAACAGATTAGGGCCCTCTGGATGTGGTTTATG
TCATTTTCTTGTTCTGTTACTGCGTACTTGTGGCACGTTTGCTTTGACTACCTTGACAACTCGCAGAGAACTGATCAAGT
GTCATCGTTACTTGCTGCACGAGTTCAGGTTTCTCCTGTTTTGGGCACAGCTTCTGCCTCCAACACATAACAGATAATTA
GCCTTACTTCTCCCGCAGGCAATAATCTGTTATTTGATGTGTCATTTTTTTATTCATCCTCTGCCCTGCTGTTAAAAGCC
AACACAGCGTGATAGCTCACTTTTTTTTTCTTTTAATTCCGATTTTCAGTGTTACAGAGTACATGTTTATGTACAAATCC
TGCCATTATGTAAAACTAAATCTCAAGGAGAAAAATGTGCTAACAGCCAGTACTTTATATTTCCAATACAAACAAAATAA
TCTGTTAATTAGCTTGTGTTGTGTTTTGGAAATATAACAAGACTACCTTAACCTCGGTGTAAGGGACGTGTGTATTTGCA
GGCCTCAAAAAGAGGAGCTGATCACCTTATTTTTCTGTACTTGGACTCTGAACCGCGATGTAGCATTGCGAAGTTGTTGT
AGGTCATAATGAAACATTTTATCTTTTATATATATATGTGTAAACATGCTGTTGATGTTAAATGTGTTGTAGTCTGAAAT
AAACTAATCTATTTAACATCA

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Organism

GO term(s)

Paralogs

Sequencing Methods

Sequence


Data input by E. Kaitetzidou

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