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黑腹果蝇的一种酶系统对“果蝇蝶呤”的生物合成。

Biosynthesis of "drosopterins" by an enzyme system from Drosophila melanogaster.

作者信息

Dorsett D, Yim J J, Jacobson K B

出版信息

Biochemistry. 1979 Jun 12;18(12):2596-600. doi: 10.1021/bi00579a025.

DOI:10.1021/bi00579a025
PMID:109114
Abstract

The red eye pigment of Drosophila melanogaster consists of six complex pteridines known as neodrosopterin, drosopterin, isodrosopterin, fraction e, and aurodrosopterins (2); these pigments are greatly reduced in the purple mutant. Conditions for biosynthesis of these "drosopterins" are described and compared with those for the synthesis of sepiapterin. The enzymes are contained in a soluble, pteridine-free extract obtained between 40 and 60% saturated ammonium sulfate. The results indicate that sepiapterin synthase consists of two enzymes, the first of which provides a precursor for "drosopterin" biosynthesis. The evidence is (1) the purple mutant, low in accumulated sepiapterin and "drosopterins", is known to have approximately 10% of the sepiapterin synthase activity of wild type; (2) unlabeled sepiapterin does not cause isotope dilution of "drosopterin" synthesis; (3) the 600g pellet prepared from a wild-type head homogenate contains "drosopterin" synthesizing activity and no sepiapterin synthase, yet a heat-labile factor in this fraction stimulates sepiapterin synthesis in the 100000g supernatant of wild-type or pr flies; (4) sepiapterin and "drosopterin" syntheses require Mg2+; (5) sepiapterin synthesis is stimulated by NADPH; "drosopterin" synthesis responds to either NADPH or NADH. Although "drosopterins" are complex pteridine-type pigments, we have demonstrated their biosynthesis by soluble enzymes. This allows us to consider investigation into the mechanism by which the amounts of these pigments are regulated.

摘要

黑腹果蝇的红眼色素由六种复杂的蝶啶组成,即新果蝇蝶呤、果蝇蝶呤、异果蝇蝶呤、组分e和金果蝇蝶呤(2);这些色素在紫色突变体中大量减少。本文描述了这些“果蝇蝶呤”的生物合成条件,并与蝶啶合成的条件进行了比较。这些酶存在于硫酸铵饱和度为40%至60%的无蝶啶可溶性提取物中。结果表明,蝶啶合酶由两种酶组成,第一种酶为“果蝇蝶呤”的生物合成提供前体。证据如下:(1)已知紫色突变体积累的蝶啶和“果蝇蝶呤”含量低,其蝶啶合酶活性约为野生型的10%;(2)未标记的蝶啶不会导致“果蝇蝶呤”合成的同位素稀释;(3)由野生型头部匀浆制备的600g沉淀含有“果蝇蝶呤”合成活性,但没有蝶啶合酶,然而该组分中的一种热不稳定因子可刺激野生型或紫色突变体果蝇100000g上清液中的蝶啶合成;(4)蝶啶和“果蝇蝶呤”的合成需要Mg2+;(5)蝶啶的合成受NADPH的刺激;“果蝇蝶呤”的合成对NADPH或NADH均有反应。虽然“果蝇蝶呤”是复杂的蝶啶类色素,但我们已通过可溶性酶证明了它们的生物合成。这使我们能够考虑研究这些色素含量的调节机制。

相似文献

1
Biosynthesis of "drosopterins" by an enzyme system from Drosophila melanogaster.黑腹果蝇的一种酶系统对“果蝇蝶呤”的生物合成。
Biochemistry. 1979 Jun 12;18(12):2596-600. doi: 10.1021/bi00579a025.
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Purification and biosynthesis of quench spot, a drosopterin precursor in Drosophila melanogaster.黑腹果蝇中蝶啶前体——淬灭斑的纯化与生物合成
Biochemistry. 1982 Mar 16;21(6):1238-43. doi: 10.1021/bi00535a020.
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Mechanism of suppression in Drosophila: control of sepiapterin synthase at the purple locus.果蝇中的抑制机制:紫色基因座处蝶啶合酶的调控
Science. 1977 Dec 16;198(4322):1168-70. doi: 10.1126/science.412253.
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Purification and properties of the enzymes from Drosophila melanogaster that catalyze the synthesis of sepiapterin from dihydroneopterin triphosphate.黑腹果蝇中催化从三磷酸二氢新蝶呤合成蝶吡嗪三醇的酶的纯化及性质
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Mechanism of suppression in Drosophila. V. Localization of the purple mutant of Drosophila melanogaster in the pteridine biosynthetic pathway.果蝇中的抑制机制。V. 黑腹果蝇紫色突变体在蝶啶生物合成途径中的定位。
Biochem Genet. 1977 Apr;15(3-4):321-32. doi: 10.1007/BF00484463.
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Developmental changes of sepiapterin synthase activity associated with a variegated purple gene in Drosophila melanogaster.与果蝇中一个杂色紫色基因相关的蝶啶合酶活性的发育变化。
Biochem Genet. 1979 Feb;17(1-2):197-206. doi: 10.1007/BF00484485.
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Purification and properties of the enzymes from Drosophila melanogaster that catalyze the conversion of dihydroneopterin triphosphate to the pyrimidodiazepine precursor of the drosopterins.黑腹果蝇中催化三磷酸二氢新蝶呤转化为果蝇蝶呤嘧啶二氮杂卓前体的酶的纯化及性质
J Biol Chem. 1984 Nov 25;259(22):14121-7.
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Enzymatic conversion of dihydroneopterin triphosphate to the pyrimidodiazepine intermediate involved in the biosynthesis of the drosopterins in Drosophila melanogaster.二氢新蝶呤三磷酸在黑腹果蝇中参与果蝇蝶呤生物合成的嘧啶二氮杂卓中间体的酶促转化。
J Biol Chem. 1984 Feb 25;259(4):2195-200.
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The isolation and identification of an intermediate involved in the biosynthesis of drosopterin in Drosophila melanogaster.黑腹果蝇中参与果蝇蝶呤生物合成的一种中间体的分离与鉴定。
J Biol Chem. 1981 Oct 25;256(20):10399-402.
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Beta-hydroxy-alpha-ketobutyric acid in Drosophila melanogaster, with reference to biosynthesis of drosopterins.黑腹果蝇中的β-羟基-α-酮丁酸,与果蝇蝶呤的生物合成相关
Biochim Biophys Acta. 1980 Jun 5;630(1):92-102. doi: 10.1016/0304-4165(80)90140-3.

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