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・ 3-hydroxy-3-methylglutaryl-CoA lyase deficiency
・ 3,5,7-Trioxododecanoyl-CoA synthase
・ 3,5-Di-tert-butylsalicylaldehyde
・ 3,5-Dihydroxy-4-isopropyl-trans-stilbene
・ 3,5-Dihydroxybenzoic acid
・ 3,5-Dihydroxycinnamic acid
・ 3,5-Dihydroxyphenylpropionoic acid
・ 3,5-Diiodothyronine
・ 3,5-Dimethylpiperidine
・ 3,5-Dinitrobenzoic acid
・ 3,5-Dinitrosalicylic acid
・ 3,7-dimethylquercetin 4'-O-methyltransferase
・ 3,7cm KPÚV vz. 34
・ 3,7cm KPÚV vz. 37
・ 3,7cm ÚV vz. 38
3,9-dihydroxypterocarpan 6a-monooxygenase
・ 3-(3-hydroxyphenyl)propanoate hydroxylase
・ 3-(4-Hydroxymethylbenzoyl)-1-pentylindole
・ 3-(cis-5,6-dihydroxycyclohexa-1,3-dien-1-yl)propanoate dehydrogenase
・ 3-(hydroxyamino)phenol mutase
・ 3-(imidazol-5-yl)lactate dehydrogenase
・ 3-(p-Fluorobenzoyloxy)tropane
・ 3-(Trifluoromethyl)aniline
・ 3-1-1
・ 3-108th Cavalry Regiment
・ 3-11 Porter
・ 3-19 shooting incident
・ 3-2 engineering
・ 3-2-1
・ 3-2-1 (Brett Kissel song)


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3,9-dihydroxypterocarpan 6a-monooxygenase : ウィキペディア英語版
3,9-dihydroxypterocarpan 6a-monooxygenase

In enzymology, a 3,9-dihydroxypterocarpan 6a-monooxygenase () is an enzyme that catalyzes the chemical reaction
:(6aR,11aR)-3,9-dihydroxypterocarpan + NADPH + H+ + O2 \rightleftharpoons (6aS,11aS)-3,6a,9-trihydroxypterocarpan + NADP+ + H2O
The 4 substrates of this enzyme are (6aR,11aR)-3,9-dihydroxypterocarpan, NADPH, H+, and O2, whereas its 3 products are (6aS,11aS)-3,6a,9-trihydroxypterocarpan, NADP+, and H2O.
This enzyme belongs to the family of oxidoreductases, specifically those acting on paired donors, with O2 as oxidant and incorporation or reduction of oxygen. The oxygen incorporated need not be derived from O2 with NADH or NADPH as one donor, and incorporation of one atom o oxygen into the other donor. The systematic name of this enzyme class is (6aR,11aR)-3,9-dihydroxypterocarpan,NADPH:oxygen oxidoreductase (6a-hydroxylating). Other names in common use include 3,9-dihydroxypterocarpan 6a-hydroxylase, and 3,9-dihydroxypterocarpan 6alpha-monooxygenase (erroneous). This enzyme participates in isoflavonoid biosynthesis. It employs one cofactor, heme.
== References ==

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