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1.
Plant Physiol ; 182(2): 730-738, 2020 02.
Artigo em Inglês | MEDLINE | ID: mdl-31806737

RESUMO

In previous work, we identified a triple mutant of the castor (Ricinus communis) stearoyl-Acyl Carrier Protein desaturase (T117R/G188L/D280K) that, in addition to introducing a double bond into stearate to produce oleate, performed an additional round of oxidation to convert oleate to a trans allylic alcohol acid. To determine the contributions of each mutation, in this work we generated individual castor desaturase mutants carrying residue changes corresponding to those in the triple mutant and investigated their catalytic activities. We observed that T117R, and to a lesser extent D280K, accumulated a novel product, namely erythro-9,10-dihydroxystearate, that we identified via its methyl ester through gas chromatography-mass spectrometry and comparison with authentic standards. The use of 18O2 labeling showed that the oxygens of both hydroxyl moieties originate from molecular oxygen rather than water. Incubation with an equimolar mixture of 18O2 and 16O2 demonstrated that both hydroxyl oxygens originate from a single molecule of O2, proving the product is the result of dioxygenase catalysis. Using prolonged incubation, we discovered that wild-type castor desaturase is also capable of forming erythro-9,10-dihydroxystearate, which presents a likely explanation for its accumulation to ∼0.7% in castor oil, the biosynthetic origin of which had remained enigmatic for decades. In summary, the findings presented here expand the documented constellation of di-iron enzyme catalysis to include a dioxygenase reactivity in which an unactivated alkene is converted to a vicinal diol.


Assuntos
Dioxigenases/metabolismo , Oxigenases de Função Mista/genética , Oxigenases de Função Mista/metabolismo , Ricinus/enzimologia , Ácidos Esteáricos/metabolismo , Óleo de Rícino/química , Catálise , Dioxigenases/química , Cromatografia Gasosa-Espectrometria de Massas , Oxigenases de Função Mista/química , Mutação , Ácido Oleico/química , Ácido Oleico/metabolismo , Oxirredução , Oxigênio/metabolismo , Propanóis/metabolismo , Ricinus/genética , Ricinus/metabolismo , Ácidos Esteáricos/química
2.
Proc Natl Acad Sci U S A ; 105(38): 14738-43, 2008 Sep 23.
Artigo em Inglês | MEDLINE | ID: mdl-18796606

RESUMO

It is estimated that plants contain thousands of fatty acid structures, many of which arise by the action of membrane-bound desaturases and desaturase-like enzymes. The details of "unusual" e.g., hydroxyl or conjugated, fatty acid formation remain elusive, because these enzymes await structural characterization. However, soluble plant acyl-ACP (acyl carrier protein) desaturases have been studied in far greater detail but typically only catalyze desaturation (dehydrogenation) reactions. We describe a mutant of the castor acyl-ACP desaturase (T117R/G188L/D280K) that converts stearoyl-ACP into the allylic alcohol trans-isomer (E)-10-18:1-9-OH via a cis isomer (Z)-9-18:1 intermediate. The use of regiospecifically deuterated substrates shows that the conversion of (Z)-9-18:1 substrate to (E)-10-18:1-9-OH product proceeds via hydrogen abstraction at C-11 and highly regioselective hydroxylation (>97%) at C-9. (18)O-labeling studies show that the hydroxyl oxygen in the reaction product is exclusively derived from molecular oxygen. The mutant enzyme converts (E)-9-18:1-ACP into two major products, (Z)-10-18:1-9-OH and the conjugated linolenic acid isomer, (E)-9-(Z)-11-18:2. The observed product profiles can be rationalized by differences in substrate binding as dictated by the curvature of substrate channel at the active site. That three amino acid substitutions, remote from the diiron active site, expand the range of reaction outcomes to mimic some of those associated with the membrane-bound desaturase family underscores the latent potential of O(2)-dependent nonheme diiron enzymes to mediate a diversity of functionalization chemistry. In summary, this study contributes detailed mechanistic insights into factors that govern the highly selective production of unusual fatty acids.


Assuntos
Ácidos Graxos/metabolismo , Oxigenases de Função Mista/metabolismo , Ricinus/enzimologia , Sítios de Ligação , Hidroxilação , Isomerismo , Cinética , Ácido Linoleico/química , Oxigenases de Função Mista/química , Oxigenases de Função Mista/genética , Modelos Moleculares , Mutação , Oxirredução , Oxigênio/metabolismo , Propanóis/metabolismo , Ligação Proteica , Estrutura Terciária de Proteína , Ricinus/química , Ricinus/genética
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