K04812

RIKEN rice full-length cDNA overexpressed Arabidopsis lines

Original: K04812

Phenotypes

Morphological phenotypes

Specific phenotypess were NOT observed.

Invisible phenotypes

Specific phenotypes were NOT observed.

Original: K04812

Determination of introduced cDNA(s)

  • J013066C15 - Rice Full-length cDNAs - Original: J013066C15

    full reading [+] show sequence

    Nucleotide sequence: J013066C15 - full reading
    GGGAGGAATC CAGAAGCGGG GGGCTCCCAC CTTGTTGGCG ACGATGCTGC 
    GCGCGGGAGG GAGGCGGCTC TTGGCCCCCG GGCTCCGGCG GGTCCTCGGC
    GGCGGGGCGG CCGCTCCGGT GGCCGTGGGC GGGGCGAAGG CGTACCACGA
    GCGGGTGGTG GACCACTACG AGAACCCGCG GAACGTGGGG TCGTTCGAGA
    ACGACGACCC CAGCGTCGGG ACGGGGCTGG TGGGGGCGCC GGCCTGCGGC
    GACGTGATGA AGCTGCAGAT CCGCGTCGAC GAGAGCTCCG GCAAGATCGT
    CGACGCATGC TTCAAGACCT TTGGGTGCGG ATCCGCCATC GCGTCCTCCT
    CCGTCGGTGA GCCCCCCAAC CCCAACTATT CCCCTACCTG TTCCCCCCCA
    CCTTCCCTTG GATGATATGG TTTAGGCTTC GTTTTCGTCT TCGTGAGGTT
    TTCTGTATTT TTCAATTGTT GGGCCATTTG CCAACGATGA GAAATTGTCG
    GAACGTACGA GGAAGGATTG TGATTTGCTT TGTAGTATGA TAGGGAAATT
    CCGGGGGCCA ATTCTGAGTG TGAGATATAG CTACATGAGA TGCTTGTTGA
    AACAGGAAGG CTGTTTGGAT CAGTGTAGGA ATTATAGTAC TAACAGCAAT
    ATTTTTTGTG TCTGTGTCCA ATAGCTGCCT GTGTTTTTTC ACCTTAGAAA
    TCATGTTCAA TTCAAATATA TTCAATGTAA TGTTATCTTG ATTTGGTGCA
    GAGAGTATTA ATACTATGTG TATGTTGTAA ACCTGTGGAG GCAGATGTGG
    TTGATTAATC CTGGGTTTAA TTTGATTGAG TTATGTTAAT TTGGTGGTCT
    AGGGTAGATT TGGTTGATTA ATCCTGGGTT TAATTTGATT TGAGTTATGT
    TAATTTGGTG GTCTAGGGTA GATGTGGTTG ATTAGTCCTG GGTTTAATTT
    GATAAGTATG TTGTTTTGGT GGTCTAGGGC TAAGGTGCTC GTTCTGCTTG
    TCTGGTACAA GCGGTTACTG TTTTCAGATG CTCCCCTCCC CCTAATGATT
    TTCTGTTTTG GTGAGCTTAT ACTTATGGAT TATTTGTCCT AATTAGTAGC
    ATTGAAAGTT TTTACATTTC CCAAGTTGTA TGTCCTAAAC GAAATTTGAC
    ATGATTGGGC CCCACCACTG AACAAACAAC TTGAGAAAGG TGTATTATCG
    GTGAAATACT TTTGATAGTC AGCAGCTCAA ACTGTTCTCA AGATGATCGC
    AATTTTGTGG AAGAAAACAG AAGAGTCTTT ACAGAATTGC TATTTATGTT
    ATGTGCATTA TTCTGTTGTG AGGCGAATTC CTGTATGTAA CTTTATTCAT
    GTTATGTTAC GGCAAATGTC GCCATGATAT GATGCATACT GTATGTATTG
    TTTGCTAGTT ATAAGCCAAA AACTAGAACC AATTGCAGCT TGAGGTTAAT
    ATTAACTTAC TTTAATGCAT TTGCATATTT TCCACATGAA AATCATCATG
    TTCAGATGCC TGGAGTTCAC CCCTGTTCTC AACCAATAGA GTTAACAACA
    TCAGTTGCCC AGCTGGTGGA TTAACTCTTA TGATTGTTCT CTAGAATCTC
    TTTACTATGG AAGATTGTTT GTGCTGAGAA AATTTGGGTC CCAACAACAA
    ATTCAATTCC TGATCCGGCT TTTGTCCTTG CAGCTACTGA ATGGGTAAAG
    GGCAAGCAAA TGGAGGAAGT AGTGACTATA AAAAACACGT AAGCTATTCC
    CCTTCCTGGT TGTTTGCACT GCAATACTCT CAGTGGTTAC ATTAACATGC
    TATGCTTATA TGGCCTTTTG GATGTCATTG AACTACTGTG GTTCGTTATT
    ACCTTGTGGT AATTAAGTTT CTGGCTGGTA TGTGCAATTT CCTTTTCAGA
    CCATACTTTT TCATCAAAAT TTTCAATACT AAATGTCGGT AAAGGGGTTC
    CATCTGTGAG ATTTTCTTTG TCATTCGTTG TCGTAATGAT GACCGTCTTT
    CAGTTAATGC TTCAGCATTT GGACATGTCT GAAGCACTTT GGTAAAATTA
    TTTGATATGC ACTTGACTAA CATGATGTTT CCAGAACTGT TTTGTATAGA
    TCATATTGGT TTTTCTGTAG TTCCTTGGCA GTGGAGTGTG TCATGTGTTT
    GCATTGATTC ATGAACTTAT TTGTGTTTAA TGGATGCATT TTCATTCAGA
    GACTTGATTT GCCTGTTTGC TAAGAGTTGT TTGGCTGCTC ATATTTTCTT
    ATGAATGTAG ATGGTAATCC CATCAGGATA ACCATGCAGC ATACAGTTTA
    GCTTATGCCC TTTGCTTGCA TGGAAGACTA ATATACTTTC CCTTTATTTT
    TACTAATTTT GTATTTTGTC TATCAATAAG TTTGTGTGTG AGGATGCTGT
    CAAATGCTTT CAATCAAGTT CTGTAAGGCT GTAACAGGGT TTTGTGCTCT
    GCTTTGCAGT GAGATTGCCA AGCACTTGTC ACTTCCACCA GTAAAGCTCC
    ATTGTAGCAT GCTTGCTGAG GATGCAATTA AAGCTGCCGT GAAAGACTAT
    GAAGCAAAGA AGGCGAAGCT AGCACAAAAG GGTGAAGAGA AGGCTGCCGA
    AGCATGAGTG CCAGAGGTTC TGTCATGAAG AATGTTGCAG TGCCCTGCGT
    ACTCGTAGTA AAGAACCTGT CATGAAGAAG TCTCTGCTCT GCTTCTTGCT
    GGCGGGAAAT AGTGTGTAAC GCTCACAAAC TCTATGCAGC ATGTATCATA
    AGGATGAAGG CAAACATTTT TGAATAAATG TGCTGTCATC TTGAAAGAAA
    AAAAAAAGGT GTATGCGTGT GTATGGCCTA GTAATGAACA TATGGTACGG
    AATTACGGTC GCGAGATAAG GCACATTGTT TCTCTTTGGT TGTTTCAATT
    AGTCTTAGGT TGAGTTGGTA GATGCTCATG AACTTGAGTT GCCTGGTCAC
    TTGCATCATT TTTCTTTTTT TTTAAAAAAA TAACTGTTTA GTAGTTCTCC
    GTGTTTCTCC ATCCAACAGG AATGCAGAAT AGTTATTGTT TTGAGAGTTC
    TCCT

    Gene models with high sequence identity

    1. AT4G22220.1 [+] show detail - SufE/NifU family protein
      E-value: 7e-30; Score: 130.00

     

    InterPro Scan Digest

    Program Description E-value
    HMMPanther NIF system FeS cluster assembly, NifU, N-terminal 7.1e-42
    HMMPanther NIF system FeS cluster assembly, NifU, N-terminal 1.9e-08
    Coil coiled-coil 0
    HMMPfam NIF system FeS cluster assembly, NifU, N-terminal 5.7e-10
    HMMPfam NIF system FeS cluster assembly, NifU, N-terminal 2.1e-30
    superfamily SufE/NifU 3.4e-06
    superfamily SufE/NifU 1.2e-24
    Gene3D no description 5.9e-23

    See the detailed result >

    AT4G22220.1

    Model type
    Protein coding
    Short Description
    SufE/NifU family protein
    Curator Summary
    Encodes a mitochondrial protein similar to E.coli IscU. In bacteria, IscU is a scaffold protein accepting sulfur and iron to build a transient Fe-S cluster,which is subsequently transferred to a target apoprotein.
    Computational Description
    ISU1; CONTAINS InterPro DOMAIN/s: NIF system FeS cluster assembly, NifU, N-terminal (InterPro:IPR002871), ISC system FeS cluster assembly, IscU scaffold (InterPro:IPR011339); BEST Arabidopsis thaliana protein match is: ISCU-like 3 (TAIR:AT4G04080.1); Has 5453 Blast hits to 5453 proteins in 1998 species: Archae - 110; Bacteria - 3654; Metazoa - 148; Fungi - 154; Plants - 89; Viruses - 0; Other Eukaryotes - 1298 (source: NCBI BLink).
    Link
    InterPro Scan - TAIR