Citrus Sinensis ID: 014132


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-------370-------380-------390-------400-------410-------420-------430
MSNELYNTIARVTDGIYEGIAIGGDVFPGSTLSDHILRFNNIPQVKMMVVLGELGGRDEYSLVEALKQGKVNKPVVAWVSGTCARLFKSEVQFGHAGAKSGGEMESAQAKNQALRDAGAVVPTSYEAFESAIKETFEKLVEEGKIPPVKEVTPPQIPEDLNTAIKSGKVRAPTHIISTISDDRGEEPCYAGVPMSSIVEQGYGVGDVISLLWFKRSLPRYCTQFIEICIMLCADHGPCVSGAHNTIVTARAGKDLVSSLVSGLLTIGPRFGGAIDDAARYFKDAYDRGLSAYEFVESMKKKGIRVPGIGHRIKRGDNRDKRVELLQKFARTHFPSVKYMEYAVQVETYTLSKANNLVLNVDGAIGSLFLDLLAGSGMFSKQEIDEIVEIGYLNGLFVLARSIGLIGHTFDQKRLKQPLYRHPWEDVLYTK
cHHHHHHHHHHccccEEEEEEEcccccccccHHHHHHHHcccccccEEEEEEccccHHHHHHHHHHHcccccccEEEEEEccccccccccccccccccccccccccHHHHHHHHHHccccccccHHHHHHHHHHHHHHHHHccccccccccccccccccHHHHHHcccccccccEEEECccccccccccccccccHHHccccccHHHHHHHHccccccHHHHHHHHHHHHHHcccccccccHHHHHHHHHccccHHHHHHHcccccccccccHHHHHHHHHHHHHHccccHHHHHHHHHHccccccccccccccccccHHHHHHHHHHHHHcccccHHHHHHHHHHHHHHHHccccccccccHHHHHHHHHHcccccccHHHHHHHHHHcccccEEEEcccccHHHHHHHHHHccccccccccccccccc
MSNELYNTIARVTDGIYEGIAIGGDVFPGSTLSDHILRFNNIPQVKMMVVLGELGGRDEYSLVEALKQGKVNKPVVAWVSGTCARLFKSEVQFGHAGAKS**E**SAQAKNQALRDAGAVVPTSYEAFESAIKETFEKL*********************NTAIKSGKVRAPTHIISTISDDRGEEPCYAGVPMSSIVEQGYGVGDVISLLWFKRSLPRYCTQFIEICIMLCADHGPCVSGAHNTIVTARAGKDLVSSLVSGLLTIGPRFGGAIDDAARYFKDAYDRGLSAYEFVESMKKKGIRVPGIGHRIKRGDNRDKRVELLQKFARTHFPSVKYMEYAVQVETYTLSKANNLVLNVDGAIGSLFLDLLAGSGMFSKQEIDEIVEIGYLNGLFVLARSIGLIGHTFDQKRLKQPLYRHPWEDVLYTK
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MSNELYNTIARVTDGIYEGIAIGGDVFPGSTLSDHILRFNNIPQVKMMVVLGELGGRDEYSLVEALKQGKVNKPVVAWVSGTCARLFKSEVQFGHAGAKSGGEMESAQAKNQALRDAGAVVPTSYEAFESAIKETFEKLVEEGKIPPVKEVTPPQIPEDLNTAIKSGKVRAPTHIISTISDDRGEEPCYAGVPMSSIVEQGYGVGDVISLLWFKRSLPRYCTQFIEICIMLCADHGPCVSGAHNTIVTARAGKDLVSSLVSGLLTIGPRFGGAIDDAARYFKDAYDRGLSAYEFVESMKKKGIRVPGIGHRIKRGDNRDKRVELLQKFARTHFPSVKYMEYAVQVETYTLSKANNLVLNVDGAIGSLFLDLLAGSGMFSKQEIDEIVEIGYLNGLFVLARSIGLIGHTFDQKRLKQPLYRHPWEDVLYTK

Function Prediction

Annotation transfered from Closely Related SWISS-PROT Entries ?

Annotation ?Function Description ?Confidence Level ?Reference Protein ?
ATP-citrate synthase beta chain protein 2 ATP citrate-lyase is the primary enzyme responsible for the synthesis of cytosolic acetyl-CoA, used for the elongation of fatty acids and biosynthesis of isoprenoids, flavonoids and malonated derivatives. May supply substrate to the cytosolic acetyl-CoA carboxylase, which generates the malonyl-CoA used for the synthesis of a multitude of compounds, including very long chain fatty acids and flavonoids. Required for normal growth and development and elongation of C18 fatty acids to C20 to C24 fatty acids in seeds. n contrast to all known animal ACL enzymes having a homomeric structure, plant ACLs are composed of alpha and beta chains.confidentQ9FGX1
ATP-citrate synthase beta chain protein 1 ATP citrate-lyase is the primary enzyme responsible for the synthesis of cytosolic acetyl-CoA, used for the elongation of fatty acids and biosynthesis of isoprenoids, flavonoids and malonated derivatives. May supply substrate to the cytosolic acetyl-CoA carboxylase, which generates the malonyl-CoA used for the synthesis of a multitude of compounds, including very long chain fatty acids and flavonoids. Required for normal growth and development and elongation of C18 fatty acids to C20 to C24 fatty acids in seeds. In contrast to all known animal ACL enzymes having a homomeric structure, plant ACLs are composed of alpha and beta chains.confidentQ9C522
ATP-citrate synthase beta chain protein 1 ATP citrate-lyase is the primary enzyme responsible for the synthesis of cytosolic acetyl-CoA, used for the elongation of fatty acids and biosynthesis of isoprenoids, flavonoids and malonated derivatives. May supply substrate to the cytosolic acetyl-CoA carboxylase, which generates the malonyl-CoA used for the synthesis of a multitude of compounds, including very long chain fatty acids and flavonoids. In contrast to all known animal ACL enzymes having a homomeric structure, plant ACLs are composed of alpha and beta chains.confidentQ93VT8

Prediction of Enzyme Commission Number ?

EC Number ?Description ?Confidence Level ?
2.-.-.-Transferases.probable
2.3.-.-Acyltransferases.probable
2.3.3.-Acyl groups converted into alkyl on transfer.probable
2.3.3.8ATP citrate synthase.probable

Spatial Structural Prediction

Structural Models Based on Templates

Template: 3MWD, chain B
Confidence level:very confident
Coverage over the Query: 2-85,102-154
View the alignment between query and template
View the model in PyMOL
Template: 1IOM, chain A
Confidence level:very confident
Coverage over the Query: 16-97,127-380,395-421
View the alignment between query and template
View the model in PyMOL