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3-deacetyl-3-vinyl-bacteriochlorophyllide a, 3-deacetyl-3-vinylbacteriochlorophyllide a, 3-vinyl-bacteriochlorophyllide a, 3-vinyl bacteriochlorophyllide a
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3-deacetyl-3-vinylbacteriochlorophyllide a + oxidized ferredoxin [iron-sulfur] cluster + ADP + phosphate = chlorophyllide a + reduced ferredoxin [iron-sulfur] cluster + ATP + H2O + H+
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3-deacetyl-3-vinyl-bacteriochlorophyllide a + H2O = 3-deacetyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = (31RS)-3-(1-hydroxyethyl) bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = 3-(1-hydroxyethyl) bacteriochlorophyllide a
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3-vinyl-bacteriochlorophyllide a + H2O = 3-devinyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-deacetyl-3-vinyl-bacteriochlorophyllide a + H2O = 3-deacetyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = (31RS)-3-(1-hydroxyethyl) bacteriochlorophyllide a
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Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
Please wait a moment until the data is sorted. This message will disappear when the data is sorted.
3-deacetyl-3-vinylbacteriochlorophyllide a + oxidized ferredoxin [iron-sulfur] cluster + ADP + phosphate = chlorophyllide a + reduced ferredoxin [iron-sulfur] cluster + ATP + H2O + H+
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3-vinyl-bacteriochlorophyllide a + H2O = 3-vinyl-pyrobacteriochlorophyllide a + methanol + CO2
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3-deacetyl-3-vinyl-bacteriochlorophyllide a + H2O = 3-deacetyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = (31RS)-3-(1-hydroxyethyl) bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = 3-(1-hydroxyethyl) bacteriochlorophyllide a
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3-vinyl-bacteriochlorophyllide a + H2O = 3-devinyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-deacetyl-3-vinyl-bacteriochlorophyllide a + H2O = 3-deacetyl-3-(1-hydroxyethyl)-bacteriochlorophyllide a
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3-vinyl bacteriochlorophyllide a + H2O = (31RS)-3-(1-hydroxyethyl) bacteriochlorophyllide a
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Chlorophyllide a oxidoreductase works as one of the divinyl reductases specifically involved in bacteriochlorophyll a biosynthesis
2014
Harada, J.; Mizoguchi, T.; Tsukatani, Y.; Yokono, M.; Tanaka, A.; Tamiaki, H.
J. Biol. Chem.
289
12716-12726
Broadened substrate specificity of 3-hydroxyethyl bacteriochlorophyllide a dehydrogenase (BchC) indicates a new route for the biosynthesis of bacteriochlorophyll a
2015
Lange, C.; Kiesel, S.; Peters, S.; Virus, S.; Scheer, H.; Jahn, D.; Moser, J.
J. Biol. Chem.
290
19697-19709
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Engineered biosynthesis of bacteriochlorophyll gF in Rhodobacter sphaeroides
2018
Ortega-Ramos, M.; Canniffe, D.; Radle, M.; Neil Hunter, C.; Bryant, D.; Golbeck, J.
Biochim. Biophys. Acta
1859
501-509
Stereochemical conversion of C3-vinyl group to 1-hydroxyethyl group in bacteriochlorophyll c by the hydratases BchF and BchV adaptation of green sulfur bacteria to limited-light environments
2015
Harada, J.; Teramura, M.; Mizoguchi, T.; Tsukatani, Y.; Yamamoto, K.; Tamiaki, H.
Mol. Microbiol.
98
1184-1198
In vitro stereospecific hydration activities of the 3-vinyl group of chlorophyll derivatives by BchF and BchV enzymes involved in bacteriochlorophyll c biosynthesis of green sulfur bacteria
2016
Teramura, M.; Harada, J.; Tamiaki, H.
Photosynth. Res.
130
33-45
In vitro enzymatic assays of photosynthetic bacterial 3-vinyl hydratases for bacteriochlorophyll biosyntheses
2018
Teramura, M.; Harada, J.; Tamiaki, H.
Photosynth. Res.
135
319-328
In vitro demethoxycarbonylation of various chlorophyll analogs by a BciC enzyme
2018
Teramura, M.; Harada, J.; Tamiaki, H.
Photosynth. Res.
139
163-171