Citrus Sinensis ID: 017873


Local Sequence Feature Prediction

Prediction and MethodResult
Residue Number Marker
Protein Sequence ?
Secondary Structure (Consensus) ?
Disordered Region (Consensus) ?
Transmembrane Helix (Consensus) ?
Signal Peptide (Consensus) ?
Coiled Coil (COILS) ?
 
--------10--------20--------30--------40--------50--------60--------70--------80--------90-------100-------110-------120-------130-------140-------150-------160-------170-------180-------190-------200-------210-------220-------230-------240-------250-------260-------270-------280-------290-------300-------310-------320-------330-------340-------350-------360-----
MTEEDQDQDQELEIPEGSVRNILEQDSLKWVFVGGKGGVGKTTCSSILSILLAEVRPSVLIISTDPAHNLSDAFQQRFTKTPTLVNGFSNLYAMEVDPSVEEETGSTEGMDSLFSELANAIPGIDEAMSFAEMLKLVQTMDYSCIVFDTAPTGHTLRLLQFPSTLEKGLDKMMSLKNKFGGMINQMTRLFGIDDEFGEDALLGRLEGMKDVIERVNKQFKDPDLTTFVCVCIPEFLSLYETERLVQELTKFEIDTHNIIINQVLYDDEDVESKLLRARMRMQQKYLDQFYMLYDDFHITKLPLLPEEVTGIEALKAFSQHFVTPYQPSTSRDTVEDLERRVSTLRQQLQEAEAELERLRKGKQVA
ccccccccccccccccccHHHHHcccccEEEEEEccccccHHHHHHHHHHHHHHccccEEEEEccccccHHHHHccccccccEEEccccccEEEEcccHHHHHccccccHHHHHHHHHHccccHHHHHHHHHHHHHHHcccccEEEEccccccHHHHccccHHHHHHHHHHHHHHHHHHHHHHHHHHHcccccccccHHHHHHHHHHHHHHHHHHHHHHcccccCEEEEEEcccccHHHHHHHHHHHHHHccccccEEEEcccccccccccHHHHHHHHHHHHHHHHHHHHHcccccEEECcccccccccHHHHHHHHHHHcccccccccccccHHHHHHHHHHHHHHHHHHHHHHHHccccccc
****************GSVRNILEQDSLKWVFVGGKGGVGKTTCSSILSILLAEVRPSVLIISTDPAHNLSDAFQQRFTKTPTLVNGFSNLYAMEVDPSVEEETGSTEGMDSLFSELANAIPGIDEAMSFAEMLKLVQTMDYSCIVFDTAPTGHTLRLLQFPSTLEKGLDKMMSLKNKFGGMINQMTRLFGIDDEFGEDALLGRLEGMKDVIERVNKQFKDPDLTTFVCVCIPEFLSLYETERLVQELTKFEIDTHNIIINQVLYDDEDVESKLLRARMRMQQKYLDQFYMLYDDFHITKLPLLPEEVTGIEALKAFSQHFVTPYQP*********LERRVSTLRQQLQEAEAEL****K*****
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MTEEDQDQDQELEIPEGSVRNILEQDSLKWVFVGGKGGVGKTTCSSILSILLAEVRPSVLIISTDPAHNLSDAFQQRFTKTPTLVNGFSNLYAMEVDPSVEEETGSTEGMDSLFSELANAIPGIDEAMSFAEMLKLVQTMDYSCIVFDTAPTGHTLRLLQFPSTLEKGLDKMMSLKNKFGGMINQMTRLFGIDDEFGEDALLGRLEGMKDVIERVNKQFKDPDLTTFVCVCIPEFLSLYETERLVQELTKFEIDTHNIIINQVLYDDEDVESKLLRARMRMQQKYLDQFYMLYDDFHITKLPLLPEEVTGIEALKAFSQHFVTPYQPSTSRDTxxxxxxxxxxxxxxxxxxxxxxxxxxxxKQVA

Function Prediction

Annotation transfered from Closely Related SWISS-PROT Entries ?

Annotation ?Function Description ?Confidence Level ?Reference Protein ?
ATPase GET3 ATPase required for the post-translational delivery of tail-anchored (TA) proteins to the endoplasmic reticulum. Recognizes and selectively binds the transmembrane domain of TA proteins in the cytosol. This complex then targets to the endoplasmic reticulum by membrane-bound receptors, where the tail-anchored protein is released for insertion. This process is regulated by ATP binding and hydrolysis. ATP binding drives the homodimer towards the closed dimer state, facilitating recognition of newly synthesized TA membrane proteins. ATP hydolysis is required for insertion. Subsequently, the homodimer reverts towards the open dimer state, lowering its affinity for the membrane-bound receptor, and returning it to the cytosol to initiate a new round of targeting.probableP0CM24
ATPase ASNA1 ATPase required for the post-translational delivery of tail-anchored (TA) proteins to the endoplasmic reticulum. Recognizes and selectively binds the transmembrane domain of TA proteins in the cytosol. This complex then targets to the endoplasmic reticulum by membrane-bound receptors, where the tail-anchored protein is released for insertion. This process is regulated by ATP binding and hydrolysis. ATP binding drives the homodimer towards the closed dimer state, facilitating recognition of newly synthesized TA membrane proteins. ATP hydolysis is required for insertion. Subsequently, the homodimer reverts towards the open dimer state, lowering its affinity for the membrane-bound receptor, and returning it to the cytosol to initiate a new round of targeting (By similarity). May be involved in insulin signaling.probableO43681
ATPase ASNA1 homolog ATPase required for the post-translational delivery of tail-anchored (TA) proteins to the endoplasmic reticulum. Recognizes and selectively binds the transmembrane domain of TA proteins in the cytosol. This complex then targets to the endoplasmic reticulum by membrane-bound receptors, where the tail-anchored protein is released for insertion. This process is regulated by ATP binding and hydrolysis. ATP binding drives the homodimer towards the closed dimer state, facilitating recognition of newly synthesized TA membrane proteins. ATP hydolysis is required for insertion. Subsequently, the homodimer reverts towards the open dimer state, lowering its affinity for the membrane-bound receptor, and returning it to the cytosol to initiate a new round of targeting.probableQ8T662

Prediction of Enzyme Commission Number ?

No confident prediction of EC number!


Spatial Structural Prediction

Structural Models Based on Templates

Template: 3IO3, chain A
Confidence level:very confident
Coverage over the Query: 138-160,213-338
View the alignment between query and template
View the model in PyMOL