1.1.1.206: tropinone reductase I
This is an abbreviated version!
For detailed information about tropinone reductase I, go to the full flat file.
Word Map on EC 1.1.1.206
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1.1.1.206
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tropane
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reductases
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hyoscyamine
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scopolamine
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datura
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pseudotropine
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stramonium
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solanaceae
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calystegines
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putrescine
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n-methyltransferase
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solanaceous
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3-quinuclidinone
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synthesis
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nortropane
- 1.1.1.206
-
tropane
- reductases
- hyoscyamine
- scopolamine
- datura
- pseudotropine
- stramonium
- solanaceae
-
calystegines
- putrescine
- n-methyltransferase
-
solanaceous
- 3-quinuclidinone
- synthesis
-
nortropane
Reaction
Synonyms
BaTRI, dehydrogenase, tropine, DnTR1, DsTRI, EC 1.1.1.293, More, TR-I, TR1, TRI, Tri2, tropine biosynthetic tropinone reductase, Tropine dehydrogenase, tropine-forming reductase, tropine-forming tropinone reductase, tropinone reductase, tropinone reductase I, tropinone reductase II, tropinone reductase-I, tropinone reductase-I 2, WcTR-I, WsTR-I, WsTR-I protein
ECTree
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Application
Application on EC 1.1.1.206 - tropinone reductase I
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synthesis
co-expression of putrescine N-methyltransferase and tropinone reductase I genes in Anisodus acutangulus hairy roots significantly improves the yields of tropinone alkaloids and shows higher antioxidant activity than control
synthesis
transgenic hairy root lines expressing both tropinone reductase I and hyoscyamine-6beta-hydroxylase produce significantly higher levels of tropinone alkaloids compared with the control and single gene transformed lines, reaching up to 4.293 mg/g tropinone alkaloids. In addition, the content of anisodine is also greatly improved. The average content of anisodine in double transformed lines is 0.984 mg/g dry weight, about 18fold of control lines
synthesis
enzyme PtTRI is a potential candidate for modifying the TAs biosynthetic pathway on TRI to obtain high yielding scopolamine medicinal plants