Ecdysone 20-monooxygenase: Characterization of an insect cytochrome P-450 dependent steroid hydroxylase

Ecdysone 20-monooxygenase, the enzyme system that hydroxylates ecdysone at C-20 of the side-chain to form ecdysterone, has been characterized in the fat body of early last instar larvae of the tobacco hornworn, Manduca sexta, using a radioenzymological assay. Ecdysterone was demonstrated to be the p...

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Veröffentlicht in:Molecular and cellular endocrinology 1979-01, Vol.15 (3), p.111-133
Hauptverfasser: Lee Smith, Stan, Bollenbacher, Walter E., Cooper, David Y., Schleyer, Heinz, Wielgus, John J., Gilbert, Lawrence I.
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Sprache:eng
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Zusammenfassung:Ecdysone 20-monooxygenase, the enzyme system that hydroxylates ecdysone at C-20 of the side-chain to form ecdysterone, has been characterized in the fat body of early last instar larvae of the tobacco hornworn, Manduca sexta, using a radioenzymological assay. Ecdysterone was demonstrated to be the product of the enzyme system by high-pressure liquid chromatography, gas-liquid chromatography and mass spectrometry. Differential centrifugation, sucrosegradient centrifugation, electron microscopy and organelle-marker enzyme analysis revealed that ecdysone 20-monooxygenase activity is associated with the mitochondria. The enzymatic properties of ecdysone 20-monooxygenase are that it is most active in a 0.05 M phosphate buffer, is inhibited by Mg 2+ and exhibits pH and temperature optima at 7.5 and 30°C, respectively. The enzyme complex has an apparent K m for ecdysone of 1.60 × 10 −7 M and is competitively inhibited by its product, ecdysterone, with an apparent K i of 2.72 × 10 −5 M. The cytochrome P-450 nature of this insect steroid hydroxylase was initially suggested by its obligate requirement for NADPH and its inhibition by carbon monoxide, p-chloromercuribenzoate, metyrapone and p-aminoglutethimide but not by cyanide. Difference spectroscopy revealed the presence of cytochrome P-450 in the fat-body mitochondrial fraction. A photochemical action spectrum of ecdysone 20-monooxygenase activity confirmed the involvement of cytochrome P-450 in this monooxygenase system.
ISSN:0303-7207
1872-8057
DOI:10.1016/0303-7207(79)90033-9