Enzyme

Download
EC Tree
     1. Oxidoreductases
        1.14 Acting on paired donors, with incorporation or reduction of molecular oxygen
            1.14.13 With NADH or NADPH as one donor, and incorporation of one atom of oxygen into the other donor
ID:1.14.13.217
Description:Protodeoxyviolaceinate monooxygenase.
Alternative Name: Protoviolaceinate synthase.
Cath: 3.30.9.20; 3.50.50.60;

3D structure

Click one PDB to see exact 3D structure provided by NGL.

Note: Use your mouse to drag, rotate, and zoom in and out of the structure. Mouse-over to identify atoms and bonds. Mouse controls documentation.

References

External Links

UniProtKB Enzyme Link: UniProtKB 1.14.13.217
BRENDA Enzyme Link: BRENDA 1.14.13.217
KEGG Enzyme Link: KEGG1.14.13.217
BioCyc Enzyme Link: BioCyc 1.14.13.217
ExPASy Enzyme Link: ExPASy1.14.13.217
EC2PDB Enzyme Link: EC2PDB 1.14.13.217
ExplorEnz Enzyme Link: ExplorEnz 1.14.13.217
PRIAM enzyme-specific profiles Link: PRIAM 1.14.13.217
IntEnz Enzyme Link: IntEnz 1.14.13.217
MEDLINE Enzyme Link: MEDLINE 1.14.13.217
MSA:

1.14.13.217;

Phylogenetic Tree:

1.14.13.217;

Uniprot:
M-CSA:
RHEA:49124 H(+) + NADPH + O2 + protodeoxyviolaceinate = H2O + NADP(+) + protoviolaceinate
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]:[cH;+0:10]:[*:11].[H+;H0:12].[O;H0;+0:13]=[O;H0;+0:14]>>[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[*:9]:[c;H0;+0:10](:[*:11])-[OH;+0:13].[OH2;+0:14]
Reaction
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Violacein and related tryptophan metabolites produced by Chromobacterium violaceum: biosynthetic mechanism and pathway for construction of violacein core.Hoshino T2011 Sep21779844
Biosynthesis of violacein: a genuine intermediate, protoviolaceinic acid, produced by VioABDE, and insight into VioC function.Shinoda K, Hasegawa T, Sato H, Shinozaki M, Kuramoto H, Takamiya Y, Sato T, Nikaidou N, Watanabe T, Hoshino T2007 Oct 2817925955
In vitro biosynthesis of violacein from L-tryptophan by the enzymes VioA-E from Chromobacterium violaceum.Balibar CJ, Walsh CT2006 Dec 2617176066

RHEA:49372 H(+) + NADH + O2 + protodeoxyviolaceinate = H2O + NAD(+) + protoviolaceinate
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]:[cH;+0:10]:[*:11].[H+;H0:12].[O;H0;+0:13]=[O;H0;+0:14]>>[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[*:9]:[c;H0;+0:10](:[*:11])-[OH;+0:13].[OH2;+0:14]
Reaction
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Violacein and related tryptophan metabolites produced by Chromobacterium violaceum: biosynthetic mechanism and pathway for construction of violacein core.Hoshino T2011 Sep21779844
Biosynthesis of violacein: a genuine intermediate, protoviolaceinic acid, produced by VioABDE, and insight into VioC function.Shinoda K, Hasegawa T, Sato H, Shinozaki M, Kuramoto H, Takamiya Y, Sato T, Nikaidou N, Watanabe T, Hoshino T2007 Oct 2817925955
In vitro biosynthesis of violacein from L-tryptophan by the enzymes VioA-E from Chromobacterium violaceum.Balibar CJ, Walsh CT2006 Dec 2617176066

RHEA:49748 2 H(+) + NADPH + 2 O2 + protodeoxyviolaceinate = CO2 + 2 H2O + NADP(+) + proviolacein
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]=[C;H0;+0:10](-[OH;+0:11])-[c;H0;+0:12]1:[nH;+0:13]:[c;H0;+0:14](-[c;H0;+0:15](:[*:16]):[*:17]:[*:18]:[cH;+0:19]:[*:20]):[cH;+0:21]:[c;H0;+0:22]:1-[c;H0;+0:23](:[*:24]):[*:25].[H+;H0:26].[H+;H0:27].[O;H0;+0:28]=[O;H0;+0:29].[O;H0;+0:30]=[O;H0;+0:31]>>[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[*:24]:[c;H0;+0:23](:[*:25])-[C;H0;+0:22]1=[CH;+0:21]-[C;H0;+0:14](-[c;H0;+0:15](:[*:16]):[*:17]:[*:18]:[c;H0;+0:19](:[*:20])-[OH;+0:29])=[N;H0;+0:13]-[C;H0;+0:12]-1=[O;H0;+0:28].[*:9]=[C;H0;+0:10]=[O;H0;+0:11].[OH2;+0:30].[OH2;+0:31]
Reaction
Core-to-Core More
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Violacein and related tryptophan metabolites produced by Chromobacterium violaceum: biosynthetic mechanism and pathway for construction of violacein core.Hoshino T2011 Sep21779844
Biosynthesis of violacein: a genuine intermediate, protoviolaceinic acid, produced by VioABDE, and insight into VioC function.Shinoda K, Hasegawa T, Sato H, Shinozaki M, Kuramoto H, Takamiya Y, Sato T, Nikaidou N, Watanabe T, Hoshino T2007 Oct 2817925955
In vitro biosynthesis of violacein from L-tryptophan by the enzymes VioA-E from Chromobacterium violaceum.Balibar CJ, Walsh CT2006 Dec 2617176066

RHEA:49752 2 H(+) + NADH + 2 O2 + protodeoxyviolaceinate = CO2 + 2 H2O + NAD(+) + proviolacein
RULE(radius=1) [*:1]-[N;H0;+0:2]1-[CH;+0:3]=[C;H0;+0:4](-[*:5])-[CH2;+0:6]-[CH;+0:7]=[CH;+0:8]-1.[*:9]=[C;H0;+0:10](-[OH;+0:11])-[c;H0;+0:12]1:[nH;+0:13]:[c;H0;+0:14](-[c;H0;+0:15](:[*:16]):[*:17]:[*:18]:[cH;+0:19]:[*:20]):[cH;+0:21]:[c;H0;+0:22]:1-[c;H0;+0:23](:[*:24]):[*:25].[H+;H0:26].[H+;H0:27].[O;H0;+0:28]=[O;H0;+0:29].[O;H0;+0:30]=[O;H0;+0:31]>>[*:1]-[n+;H0:2]1:[cH;+0:3]:[c;H0;+0:4](-[*:5]):[cH;+0:6]:[cH;+0:7]:[cH;+0:8]:1.[*:24]:[c;H0;+0:23](:[*:25])-[C;H0;+0:22]1=[CH;+0:21]-[C;H0;+0:14](-[c;H0;+0:15](:[*:16]):[*:17]:[*:18]:[c;H0;+0:19](:[*:20])-[OH;+0:29])=[N;H0;+0:13]-[C;H0;+0:12]-1=[O;H0;+0:28].[*:9]=[C;H0;+0:10]=[O;H0;+0:11].[OH2;+0:30].[OH2;+0:31]
Reaction
Core-to-Core More
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Violacein and related tryptophan metabolites produced by Chromobacterium violaceum: biosynthetic mechanism and pathway for construction of violacein core.Hoshino T2011 Sep21779844
Biosynthesis of violacein: a genuine intermediate, protoviolaceinic acid, produced by VioABDE, and insight into VioC function.Shinoda K, Hasegawa T, Sato H, Shinozaki M, Kuramoto H, Takamiya Y, Sato T, Nikaidou N, Watanabe T, Hoshino T2007 Oct 2817925955
In vitro biosynthesis of violacein from L-tryptophan by the enzymes VioA-E from Chromobacterium violaceum.Balibar CJ, Walsh CT2006 Dec 2617176066

RHEA:49756 H(+) + O2 + protoviolaceinate = CO2 + H2O + proviolacein
RULE(radius=1) [*:1]:[c;H0;+0:2](:[*:3])-[c;H0;+0:4]1:[cH;+0:5]:[c;H0;+0:6](-[c;H0;+0:7](:[*:8]):[*:9]):[nH;+0:10]:[c;H0;+0:11]:1-[C;H0;+0:12](=[*:13])-[OH;+0:14].[H+;H0:15].[O;H0;+0:16]=[O;H0;+0:17]>>[*:1]:[c;H0;+0:2](:[*:3])-[C;H0;+0:4]1=[CH;+0:5]-[C;H0;+0:6](-[c;H0;+0:7](:[*:8]):[*:9])=[N;H0;+0:10]-[C;H0;+0:11]-1=[O;H0;+0:16].[*:13]=[C;H0;+0:12]=[O;H0;+0:14].[OH2;+0:17]
Reaction
Core-to-Core More

References

TitleAuthorsDatePubMed ID
Violacein and related tryptophan metabolites produced by Chromobacterium violaceum: biosynthetic mechanism and pathway for construction of violacein core.Hoshino T2011 Sep21779844
Biosynthesis of violacein: a genuine intermediate, protoviolaceinic acid, produced by VioABDE, and insight into VioC function.Shinoda K, Hasegawa T, Sato H, Shinozaki M, Kuramoto H, Takamiya Y, Sato T, Nikaidou N, Watanabe T, Hoshino T2007 Oct 2817925955
In vitro biosynthesis of violacein from L-tryptophan by the enzymes VioA-E from Chromobacterium violaceum.Balibar CJ, Walsh CT2006 Dec 2617176066