STIFDB - Entry Name : AT5G56290

Stress Signals involved in

 NACL 

STIFDB Provides Data in 2 levels:



Gene Description : AT5G56290

Locus IdentifierGene Model NameGene Model DescriptionGene Model Type
AT5G56290AT5G56290.1Encodes the peroxisomal targeting signal type 1 receptor that facilitates peroxisomal protein translocation. It recognizes proteins with the PTS1 consensus sequence (tripeptide SKL or a conserved variant) at the extreme C terminus. The protein has several domains, including C-terminal tetratricopeptide repeat motifs which act in binding the C-terminal "SKL" targeting signal. The mechanism of transport has been worked out in other organisms: The receptor recognizes and binds cytosolic PTS1-containing proteins. The PEX5-PTS1 complex binds a PEX14/PEX13 receptor complex at the peroxisome membrane and is translocated into the peroxisome matrix in a process dependent on PEX2,PEX10, and PEX12. In the peroxisome matrix, PEX5 releases its cargo and is recycled to the cytosol in a process dependent on PEX1, PEX4, PEX6 and PEX22. It is also involved, in conjunction with PEX7, in PTS1- and PTS2-dependent peroxisomal protein import. RNAi experiments suggest that PEX5 is necessary for the maintenance of both glyoxysomal and leaf peroxisomal functions.


Gene Ontology Data from TAIR : AT5G56290

GO Category GO Annotation Type GO ID GO Evidence Type References
Biological Processprotein targeting to peroxisomeGO:0006625 IGIPublication:501714612|PMID:15548601
Molecular Functionprotein bindingGO:0005515 IPIPublication:501717822|PMID:16256065
Molecular Functionperoxisome matrix targeting signal-1 bindingGO:0005052 ISSCommunication:501714663
Biological Processprotein targeting to peroxisomeGO:0006625 ISSCommunication:501714663
Biological Processresponse to auxin stimulusGO:0009733 IMPPublication:5909|PMID:11063705
Molecular Functionprotein bindingGO:0005515 IPIPublication:501681308|PMID:11978862
    Biological Process     Molecular Function     Cellular Compartment

Click here for Guide to GO Evidence Codes



Orthologs

Gene IdSorghum bicolorZea maysGlycine Max
AT5G56290Sb07g028340GRMZM2G080775--

 
 
           

Contact :

Prof. R. Sowdhamini

STIFDB TEAM :

Prof. R. Sowdhamini | Shameer Khader
Mahantesha Naika B. N. | Oommen K. M.

Last Updated :

15th Oct, 2012