首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Molecular and Functional Analyses of Amino Acid Decarboxylases Involved in Cuticle Tanning in Tribolium castaneum
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Molecular and Functional Analyses of Amino Acid Decarboxylases Involved in Cuticle Tanning in Tribolium castaneum

机译:车前草中表皮鞣制中涉及的氨基酸脱羧酶的分子和功能分析

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摘要

Aspartate 1-decarboxylase (ADC) and 3,4-dihydroxyphenylalanine decarboxylase (DDC) provide β-alanine and dopamine used in insect cuticle tanning. β-Alanine is conjugated with dopamine to yield N-β-alanyldopamine (NBAD), a substrate for the phenol oxidase laccase that catalyzes the synthesis of cuticle protein cross-linking agents and pigment precursors. We identified ADC and DDC genes in the red flour beetle, Tribolium castaneum (Tc), and investigated their functions. TcADC mRNA was most abundant prior to the pupal-adult molt. Injection of TcADC double-stranded (ds) RNA (dsTcADC) into mature larvae resulted in depletion of NBAD in pharate adults, accumulation of dopamine, and abnormally dark pigmentation of the adult cuticle. Injection of β-alanine, the expected product of ADC, into dsTcADC-treated pupae rescued the pigmentation phenotype, resulting in normal rust-red color. A similar pattern of catechol content consisting of elevated dopamine and depressed NBAD was observed in the genetic black mutants of Tribolium, in which levels of TcADC mRNA were drastically reduced. Furthermore, from the Tribolium black mutant and dsTcADC-injected insects both exhibited similar changes in material properties. Dynamic mechanical analysis of elytral cuticle from beetles with depleted TcADC transcripts revealed diminished cross-linking of cuticular components, further confirming the important role of oxidation products of NBAD as cross-linking agents during cuticle tanning. Injection of dsTcDDC into larvae produced a lethal pupal phenotype, and the resulting grayish pupal cuticle exhibited many small patches of black pigmentation. When dsTcDDC was injected into young pupae, the resulting adults had abnormally dark brown body color, but there was little mortality. Injection of dsTcDDC resulted in more than a 5-fold increase in levels of DOPA, indicating that lack of TcDDC led to accumulation of its substrate, DOPA.
机译:天门冬氨酸1-脱羧酶(ADC)和3,4-二羟基苯丙氨酸脱羧酶(DDC)提供用于昆虫表皮鞣制的β-丙氨酸和多巴胺。 β-丙氨酸与多巴胺缀合,生成N-β-丙氨酰多巴胺(NBAD),这是酚氧化酶漆酶的底物,可催化表皮蛋白交联剂和色素前体的合成。我们在红粉甲虫Tribolium castaneum(Tc)中鉴定了ADC和DDC基因,并研究了它们的功能。 TcADC mRNA在the蜕之前最丰富。将TcADC双链(ds)RNA(dsTcADC)注射到成熟幼虫中会导致在食盐成虫中NBAD消耗,多巴胺蓄积以及成年角质层异常深色。向dsTcADC处理过的p中注射ADC的预期产物β-丙氨酸可挽救色素沉着表型,产生正常的锈红色。在Tribolium的遗传黑色突变体中观察到了类似的由多巴胺升高和NBAD降低引起的邻苯二酚含量变化,其中TcADC mRNA的水平急剧下降。此外,Tribolium黑色突变体和注入dsTcADC的昆虫在材料特性上均表现出相似的变化。甲虫的Elytral角质层的动态力学分析显示TcADC转录物已耗尽,揭示了角质层成分的交联减少,进一步证实了NBAD氧化产物作为角质层鞣制过程中的交联剂的重要作用。将dsTcDDC注射到幼虫中会产生致命的p表型,并且所产生的浅灰色exhibit表皮表现出许多黑色斑点。当将dsTcDDC注射到年轻的up中时,所得成年人的体色异常暗褐色,但死亡率极低。注射dsTcDDC会导致DOPA含量增加5倍以上,这表明TcDDC的缺乏导致其底物DOPA的积累。

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