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Identification of Drosophila melanogaster yellow-f and yellow-f2 proteins as dopachrome-conversion enzymes.

机译:果蝇果蝇黄-f和黄-f2蛋白作为多巴色素转化酶的鉴定。

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摘要

This study describes the identification of Drosophila yellow-f and yellow-f2 as dopachrome-conversion enzymes responsible for catalysing the conversion of dopachrome into 5,6-dihydroxyindole in the melanization pathway. Drosophila yellow -y gene and yellow -b, -c, -f and -f2 genes were expressed in an insect cell/baculovirus expression system and their corresponding recombinant proteins were screened for dopachrome-conversion enzyme activity. Among the yellow and yellow -related genes, the yellow -f and yellow -f2 genes were identified as the genes coding for Drosophila dopachrome-conversion enzyme based on the high activity of their recombinant proteins in catalysing the production of 5,6-dihydroxyindole from dopachrome. Both yellow-f and yellow-f2 are capable of mediating a decarboxylative structural rearrangement of dopachrome, as well as an isomerization/tautomerization of dopamine chrome and dopa methyl ester chrome. Northern hybridization revealed the transcription of yellow -f in larvae and pupae, but a high abundance of mRNA was observed in later larval and early pupal stages. In contrast, yellow-f2 transcripts were present at all stages, but high abundance of its mRNA was observed in later-stage pupae and adults. These data indicate that yellow-f and yellow-f2 complement each other during Drosophila development and that the yellow-f is involved in larval and pupal melanization, and yellow-f2 plays a major role in melanization reactions in Drosophila during later pupal and adult development. Results from this study provide the groundwork towards a better understanding of the physiological roles of the Drosophila yellow gene family.
机译:这项研究描述了果蝇黄f和黄f2作为多巴色素转化酶的鉴定,该酶负责催化多巴色素在黑色素化途径中转化为5,6-二羟基吲哚。果蝇黄-y基因和黄-b,-c,-f和-f2基因在昆虫细胞/杆状病毒表达系统中表达,并筛选相应的重组蛋白的多巴色素转化酶活性。在黄色和黄色相关基因中,黄色-f和黄色-f2基因被鉴定为果蝇多巴色素转化酶的编码基因,这是由于它们的重组蛋白在催化从中产生5,6-二羟基吲哚的过程中具有很高的活性。多巴色素。 yellow-f和yellow-f2均能够介导多巴色素的脱羧结构重排,以及多巴胺铬和多巴甲酯铬的异构化/互变异构。 Northern杂交揭示了幼虫和ae中黄色-f的转录,但是在幼虫后期和early早期观察到了高丰度的mRNA。相比之下,黄色f2转录本在所有阶段都存在,但在后期p和成虫中观察到其mRNA的丰度很高。这些数据表明,果蝇发育过程中yellow-f和yellow-f2相互补充,并且yellow-f参与幼虫和p的黑色素化,并且在后期的later和成年发育中yellow-f2在果蝇的黑色素化反应中起主要作用。这项研究的结果为更好地了解果蝇黄色基因家族的生理作用提供了基础。

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