TopFIND 4.0

Q9H237: Protein-serine O-palmitoleoyltransferase porcupine {ECO:0000250|UniProtKB:Q9JJJ7}

General Information

Protein names
- Protein-serine O-palmitoleoyltransferase porcupine {ECO:0000250|UniProtKB:Q9JJJ7}
- 2.3.1.250 {ECO:0000250|UniProtKB:Q9JJJ7}
- Protein MG61 {ECO:0000303|PubMed:12034504}

Gene names PORCN
Organism Homo sapiens
Protease Family
Protease ID
Chromosome location
UniProt ID Q9H237

1

N-termini

1

C-termini

0

Cleavages

0

Substrates

Sequence

        10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G

Isoforms

- Isoform 2 of Protein-cysteine N-palmitoyltransferase porcupine - Isoform 3 of Protein-cysteine N-palmitoyltransferase porcupine - Isoform 4 of Protein-cysteine N-palmitoyltransferase porcupine - Isoform 2 of Protein-serine O-palmitoleoyltransferase porcupine - Isoform 3 of Protein-serine O-palmitoleoyltransferase porcupine - Isoform 4 of Protein-serine O-palmitoleoyltransferase porcupine - Isoform 5 of Protein-serine O-palmitoleoyltransferase porcupine

Sequence View

        10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G         10         20         30         40         50         60 
MATFSRQEFF QQLLQGCLLP TAQQGLDQIW LLLAICLACR LLWRLGLPSY LKHASTVAGG 
        70         80         90        100        110        120 
FFSLYHFFQL HMVWVVLLSL LCYLVLFLCR HSSHRGVFLS VTILIYLLMG EMHMVDTVTW 
       130        140        150        160        170        180 
HKMRGAQMIV AMKAVSLGFD LDRGEVGTVP SPVEFMGYLY FVGTIVFGPW ISFHSYLQAV 
       190        200        210        220        230        240 
QGRPLSCRWL QKVARSLALA LLCLVLSTCV GPYLFPYFIP LNGDRLLRNK KRKARGTMVR 
       250        260        270        280        290        300 
WLRAYESAVS FHFSNYFVGF LSEATATLAG AGFTEEKDHL EWDLTVSKPL NVELPRSMVE 
       310        320        330        340        350        360 
VVTSWNLPMS YWLNNYVFKN ALRLGTFSAV LVTYAASALL HGFSFHLAAV LLSLAFITYV 
       370        380        390        400        410        420 
EHVLRKRLAR ILSACVLSKR CPPDCSHQHR LGLGVRALNL LFGALAIFHL AYLGSLFDVD 
       430        440        450        460    
VDDTTEEQGY GMAYTVHKWS ELSWASHWVT FGCWIFYRLI G



Filter Information:


(REFRESH)

Directness:


Physiological Relevance:


Evidence Codes:


Methodology:


Perturbation of System:


Biological System:


Protease Assignment Confidence:


Evidence Names:


Database:


Lab:



Protein Neighborhood

Domains & Features

1 N-termini - 1 C-termini - 0 Cleavages - 0 Substrates

N-termini

C-termini

Cleavages

    Protease Position Sequence Evidence type Method Source (database) Source (Lab) Evidence name Publications (PMIDs)

Substrates

    Substrate Position Sequence Evidence type Method Source (database) Source (Lab) Evidence name Publications (PMIDs)