首页> 美国卫生研究院文献>The Plant Cell >A Root-Expressed l-Phenylalanine:4-Hydroxyphenylpyruvate Aminotransferase Is Required for Tropane Alkaloid Biosynthesis in Atropa belladonna
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A Root-Expressed l-Phenylalanine:4-Hydroxyphenylpyruvate Aminotransferase Is Required for Tropane Alkaloid Biosynthesis in Atropa belladonna

机译:根表达的1-苯丙氨酸:4-羟基苯基丙酮酸氨基转移酶是颠茄中生物碱生物合成所必需的。

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摘要

The tropane alkaloids, hyoscyamine and scopolamine, are medicinal compounds that are the active components of several therapeutics. Hyoscyamine and scopolamine are synthesized in the roots of specific genera of the Solanaceae in a multistep pathway that is only partially elucidated. To facilitate greater understanding of tropane alkaloid biosynthesis, a de novo transcriptome assembly was developed for Deadly Nightshade (Atropa belladonna). Littorine is a key intermediate in hyoscyamine and scopolamine biosynthesis that is produced by the condensation of tropine and phenyllactic acid. Phenyllactic acid is derived from phenylalanine via its transamination to phenylpyruvate, and mining of the transcriptome identified a phylogenetically distinct aromatic amino acid aminotransferase (ArAT), designated Ab-ArAT4, that is coexpressed with known tropane alkaloid biosynthesis genes in the roots of A. belladonna. Silencing of Ab-ArAT4 disrupted synthesis of hyoscyamine and scopolamine through reduction of phenyllactic acid levels. Recombinant Ab-ArAT4 preferentially catalyzes the first step in phenyllactic acid synthesis, the transamination of phenylalanine to phenylpyruvate. However, rather than utilizing the typical keto-acid cosubstrates, 2-oxoglutarate, pyruvate, and oxaloacetate, Ab-ArAT4 possesses strong substrate preference and highest activity with the aromatic keto-acid, 4-hydroxyphenylpyruvate. Thus, Ab-ArAT4 operates at the interface between primary and specialized metabolism, contributing to both tropane alkaloid biosynthesis and the direct conversion of phenylalanine to tyrosine.
机译:托烷生物碱,hyscyamine和scopolamine是药用化合物,是几种治疗剂的活性成分。烟草碱和东pol碱在茄科特定属的根中以多步途径合成,仅部分阐明。为了促进对托烷生物碱生物合成的更多了解,为Deadly Nightshade(Atropa belladonna)开发了一个从头转录组。立托林是硫辛胺和东and碱生物合成中的关键中间体,是由托品碱和苯乳酸缩合产生的。苯乳酸是通过苯丙氨酸转氨为丙酮酸而得的,而转录组的挖掘则鉴定出系统发育上独特的芳香族氨基酸转氨酶(ArAT),称为Ab-ArAT4,它与颠茄根中已知的托烷生物碱生物合成基因共表达。 。通过降低苯基乳酸水平,使Ab-ArAT4沉默会破坏羟胺和东pol碱的合成。重组Ab-ArAT4优先催化苯基乳酸合成的第一步,即苯丙氨酸向氨基丙酮酸的氨基转移。但是,Ab-ArAT4并没有利用典型的酮酸共底物2-氧代戊二酸酯,丙酮酸和草酰乙酸,而是具有较强的底物偏爱性,并且与芳族酮酸4-羟基苯基丙酮酸酯具有最高的活性。因此,Ab-ArAT4在主要代谢和专门代谢之间的界面处起作用,既促进了托烷生物碱的生物合成,又使苯丙氨酸直接转化为酪氨酸。

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