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IUBMB Comments The enzyme, characterized from the bacterium Pseudomonas putida SQ1, participates in a sulfoquinovose degradation pathway. Activity with NADP+ is only 4% of that with NAD+ .
The expected taxonomic range for this enzyme is: Bacteria, Archaea
Synonyms sq dehydrogenase, more
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PpSQ1_00405
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SQ dehydrogenase
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SQ-dehydrogenase
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SQD
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sulfoquinovose + NAD+ = 6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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MetaCyc
sulfoquinovose degradation II
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6-deoxy-6-sulfo-D-glucopyranose:NAD+ 1-oxidoreductase
The enzyme, characterized from the bacterium Pseudomonas putida SQ1, participates in a sulfoquinovose degradation pathway. Activity with NADP+ is only 4% of that with NAD+.
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
sulfoquinovose + NADP+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
additional information
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
Substrates: - Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: sulfoquinovose is 6-deoxy-6-sulfoglucose Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: sulfoquinovose is 6-deoxy-6-sulfoglucose Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
Substrates: - Products: -
r
sulfoquinovose + NADP+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: when NADP+ is used as an electron acceptor, the enzyme activity is 4% of the activity with NAD+ Products: -
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sulfoquinovose + NADP+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: when NADP+ is used as an electron acceptor, the enzyme activity is 4% of the activity with NAD+ Products: -
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additional information
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Substrates: the enzyme shows no activity with D-glucose-6-phosphate Products: -
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additional information
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Substrates: the enzyme shows no activity with D-glucose-6-phosphate Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
additional information
?
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
Substrates: - Products: -
r
sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: sulfoquinovose is 6-deoxy-6-sulfoglucose Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
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Substrates: sulfoquinovose is 6-deoxy-6-sulfoglucose Products: -
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sulfoquinovose + NAD+
6-deoxy-6-sulfo-D-glucono-1,5-lactone + NADH + H+
Substrates: - Products: -
r
additional information
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Substrates: the enzyme shows no activity with D-glucose-6-phosphate Products: -
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additional information
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Substrates: the enzyme shows no activity with D-glucose-6-phosphate Products: -
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NADP+
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when NADP+ is used as an electron acceptor, the enzyme activity is 4% of the activity with NAD+
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0.5
sulfoquinovose
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with NAD+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
2.4
sulfoquinovose
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with NADP+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
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1.4 - 33.8
sulfoquinovose
1.4
sulfoquinovose
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with NADP+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
33.8
sulfoquinovose
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with NAD+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
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0.6 - 67.6
sulfoquinovose
0.6
sulfoquinovose
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with NADP+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
67.6
sulfoquinovose
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with NAD+ as cosubstrate, in 50 mM Tris-HCl (pH 7.5), temperature not specified in the publication
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brenda
DSM 100120
UniProt
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DSM 100120
UniProt
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additional information
strain SQ1 shows the ability to utilize the plant sugar sulfoquinovose (6-deoxy-6-sulfoglucose) for growth
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additional information
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strain SQ1 shows the ability to utilize the plant sugar sulfoquinovose (6-deoxy-6-sulfoglucose) for growth
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Highest Expressing Human Cell Lines
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Cell Line Links
Gene Links
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metabolism
the enzyme is involved in the sulfoquinovose, SQ, degradation pathway, that is distinct from the entner-Doudoroff pathway and the pathway in Escherichia coli, the pathway operative in Puitida putida strain SQ1 represents a second, yet unknown bacterial degradation pathway for SQ, overview
metabolism
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the enzyme is involved in the sulfoquinovose, SQ, degradation pathway, that is distinct from the entner-Doudoroff pathway and the pathway in Escherichia coli, the pathway operative in Puitida putida strain SQ1 represents a second, yet unknown bacterial degradation pathway for SQ, overview
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physiological function
the enzyme is involved in the degradation of sugar sulfoquinovose, SQ, the polar headgroup of the plant sulfolipid sulfoquinovosyl diacylglycerol, which is present in the photosynthetic membranes of all higher plants, mosses, ferns and algae and most photosynthetic bacteria
physiological function
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the enzyme is involved in the degradation of sugar sulfoquinovose, SQ, the polar headgroup of the plant sulfolipid sulfoquinovosyl diacylglycerol, which is present in the photosynthetic membranes of all higher plants, mosses, ferns and algae and most photosynthetic bacteria
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SQD_PSEPU
260
0
27870
Swiss-Prot
-
A0A653LPI3_9HYPH
254
0
27243
TrEMBL
-
A0A2R8B661_9RHOB
252
0
26248
TrEMBL
-
A0A2R8AE53_9RHOB
256
0
27556
TrEMBL
-
A0A4V1A8U9_9GAMM
254
0
27677
TrEMBL
-
A0A653Z225_9GAMM
256
0
27831
TrEMBL
-
A0A124HZ03_9ACTN
252
0
25553
TrEMBL
-
A0A6S7B2C1_9BURK
256
0
27722
TrEMBL
-
A0A857JPS6_9ALTE
255
0
27823
TrEMBL
-
A0A6N7CFD0_9NOCA
265
1
26708
TrEMBL
-
A0A6J5BFV3_9BURK
266
0
28541
TrEMBL
-
A0A5E7EYT1_PSEFL
255
0
27019
TrEMBL
-
A0A1X1P9Y0_9BURK
271
0
28622
TrEMBL
-
A0A6J5D677_9BURK
266
0
28416
TrEMBL
-
B1G7H1_PARG4
Paraburkholderia graminis (strain ATCC 700544 / DSM 17151 / LMG 18924 / NCIMB 13744 / C4D1M)
266
0
28614
TrEMBL
-
A0A833QCW2_BURGA
262
0
27738
TrEMBL
-
A0A2R8BHN5_9RHOB
256
1
27450
TrEMBL
-
A0A508T2A9_9BRAD
233
0
25049
TrEMBL
-
A0A5M9I6V9_PSEPA
255
0
27112
TrEMBL
-
A0A2R8C0B7_9RHOB
237
0
24783
TrEMBL
-
A0A5E4U827_9BURK
66
0
6817
TrEMBL
-
A0A6J5FGR0_9BURK
266
0
28569
TrEMBL
-
A0A6J5CR03_9BURK
266
0
28543
TrEMBL
-
A0A2W1K452_9CYAN
Acaryochloris thomasi RCC1774
181
0
19920
TrEMBL
-
A0A5E4UAE2_9BURK
120
1
12920
TrEMBL
-
A0A6G8NML5_9BURK
263
1
28101
TrEMBL
-
A0A509DUF2_9HYPH
276
0
29840
TrEMBL
-
A0A5Q4ZCY7_9BURK
Paraburkholderia dioscoreae
266
0
28436
TrEMBL
-
A0A508TV95_9BRAD
241
0
26563
TrEMBL
-
A0A2S8BCT8_9MYCO
214
0
22589
TrEMBL
-
A0A653YG70_9BURK
262
0
28081
TrEMBL
-
A0A5E6RUT6_PSEFL
255
0
26969
TrEMBL
-
A0A2R8BMQ6_9RHOB
250
0
27310
TrEMBL
-
A0A6J5E604_9BURK
262
0
27568
TrEMBL
-
A0A5E6TND6_PSEFL
255
0
27124
TrEMBL
-
A0A5M9IPT9_9PSED
255
0
27670
TrEMBL
-
A0A6S7C849_9BURK
266
0
28651
TrEMBL
-
A0A399DTV5_9DEIN
220
0
23445
TrEMBL
-
A0A2R8CE20_9RHOB
254
0
26953
TrEMBL
-
A0A508TJJ9_9BRAD
252
0
27308
TrEMBL
-
A0A346BFF4_9BURK
266
0
28496
TrEMBL
-
A0A3B0MVJ9_9RHOB
255
0
27039
TrEMBL
-
A0A2R8B497_9RHOB
232
0
23888
TrEMBL
-
A0A7K0CZ60_9NOCA
Nocardia macrotermitis
298
0
31147
TrEMBL
-
A0A2N7WR94_9BURK
266
0
28647
TrEMBL
-
A0A5B8RGP4_9ZZZZ
257
0
28020
TrEMBL
other Location (Reliability: 5 )
A0A6A7SH38_9ZZZZ
257
0
28020
TrEMBL
other Location (Reliability: 5 )
A0A6P1Q207_9GAMM
255
0
27764
TrEMBL
-
A0A7Z7IPJ0_9MYCO
275
0
29412
TrEMBL
-
A0A6J5FPU0_9BURK
265
1
28457
TrEMBL
-
A0A5E7RC79_PSEFL
255
0
27138
TrEMBL
-
A0A2H6B2W9_9BACT
255
0
27986
TrEMBL
-
A0A5M9J1U0_9PSED
255
0
27140
TrEMBL
-
A0A6J5EEN6_9BURK
266
0
28485
TrEMBL
-
A0A2H5V7J0_9ARCH
297
0
32286
TrEMBL
-
A0A6J5K6X7_9BURK
266
0
28527
TrEMBL
-
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Ni-NTA column chromatography
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expressed in Escherichia coli
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genomic analysis, DNA and amino acid sequence determination and analysis
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Felux A.-K, F.A.; Spiteller D, S.D.; Klebensberger J, K.J.; Schleheck D, S.D.
Entner-Doudoroff pathway for sulfoquinovose degradation in Pseudomonas putida SQ1
Proc. Natl. Acad. Sci. USA
112
E4298-E4305
2015
Pseudomonas putida, Pseudomonas putida SQ1
brenda
Felux A.-K, F.A.; Franchini P, F.P.; Schleheck D, S.D.
Permanent draft genome sequence of sulfoquinovose-degrading Pseudomonas putida strain SQ1
Stand. Genomic Sci.
10
42-47
2015
Pseudomonas putida (P0DOV5), Pseudomonas putida SQ1 (P0DOV5)
brenda
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