1.1.1.77: lactaldehyde reductase
This is an abbreviated version!
For detailed information about lactaldehyde reductase, go to the full flat file.

Word Map on EC 1.1.1.77
-
1.1.1.77
-
l-fucose
-
l-1,2-propanediol
-
l-rhamnose
-
dissimilation
-
nad-linked
-
aldolase
-
subtilisin
-
typhimurium
-
1-phosphate
-
l-lactate
-
pneumoniae
-
metal-catalyzed
-
dihydroxyacetone
-
klebsiella
-
dinucleotide-linked
-
permease
-
six-carbon
-
laczya
-
metal-binding
-
rhamnose-induced
-
bacteriol
-
anaerobiosis
-
irretrievably
-
mobilis
-
rha
-
iron-containing
-
fuculose
-
zymomonas
-
noninducible
-
synthesis
- 1.1.1.77
- l-fucose
- l-1,2-propanediol
- l-rhamnose
-
dissimilation
-
nad-linked
- aldolase
- subtilisin
- typhimurium
-
1-phosphate
- l-lactate
- pneumoniae
-
metal-catalyzed
- dihydroxyacetone
-
klebsiella
-
dinucleotide-linked
-
permease
-
six-carbon
-
laczya
-
metal-binding
-
rhamnose-induced
-
bacteriol
- anaerobiosis
-
irretrievably
- mobilis
-
rha
-
iron-containing
-
fuculose
- zymomonas
-
noninducible
- synthesis
Reaction
Synonyms
L-lactaldehyde:propanediol oxidoreductase, Propanediol oxidoreductase, propanediol:nicotinamide adenine dinucleotide (NAD) oxidoreductase
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Reference
Reference on EC 1.1.1.77 - lactaldehyde reductase
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Tran-Din, K.; Gottschalk, G.
Formation of D(-)-1,2-propanediol and D(-)-lactate from glucose by Clostridium sphenoides under phosphate limitation
Arch. Microbiol.
142
87-92
1985
Lacrimispora sphenoides
-

Ting, S.M.; Sellinger, O.Z.; Miller, O.N.
The metabolism of lactaldehyde VI. The reduction of D- and L-lactaldehyde in rat liver
Biochim. Biophys. Acta
89
217-225
1965
Rattus norvegicus

Kawagishi, T.; Nishio, N.; Matsuno, R.; Kamikubo, T.
Purification of NAD-dependent 1,2-propanediol dehydrogenating enzyme from Microcyclus eberneus
Agric. Biol. Chem.
44
949-950
1980
Microcyclus eburneus
-

Weimer, P.J.
Fermentation of 6-deoxyhexoses by Bacillus macerans
Appl. Environ. Microbiol.
47
263-267
1984
Paenibacillus macerans

Boronat, A.; Aguilar,J.
Rhamnose-induced propanediol oxidoreductase in Escherichia coli: purification, properties and comparison with the fucose-induced enzyme
J. Bacteriol.
140
320-326
1979
Escherichia coli

Hacking, A.J.; Lin, E.C.C.
Disruption of the fucose pathway as a consequence of genetic adaptation to propanediol as a carbon source in Escherichia coli
J. Bacteriol.
126
1166-1172
1976
Escherichia coli

Hacking, A.J.; Aguilar, J.; Lin, E.C.C.
Evolution of propanediol utilization in Escherichia coli: mutant with improved substrate-scavenging power
J. Bacteriol.
136
522-530
1978
Escherichia coli

Cocks, G.T.; Aguilar, J.; Lin, E.C.C.
Evolution of L-1,2-propanediol catabolism in Escherichia coli by recruitment of enzymes for L-fucose and L-lactate metabolism
J. Bacteriol.
118
83-88
1974
Escherichia coli

Boronat, A.; Aguilar, J.
Metabolism of L-fucose and L-rhamnose in Escherichia coli; differences in induction of propanediol oxidoreductase
J. Bacteriol.
147
181-185
1981
Escherichia coli

Cabiscol, E.; Badia, J.; Baldoma, L.; Hidalgo, E.; Aguilar, J.; Ros, J.
Inactivation of propanediol oxidoreductase of Escherichia coli by metal-catalyzed oxidation
Biochim. Biophys. Acta
1118
155-160
1992
Escherichia coli

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