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迷幻蘑菇中通过非经典钙激活芳香族氨基酸脱羧酶进行单胺生物合成。

Monoamine Biosynthesis via a Noncanonical Calcium-Activatable Aromatic Amino Acid Decarboxylase in Psilocybin Mushroom.

机构信息

Whitehead Institute for Biomedical Research , 455 Main Street , Cambridge , Massachusetts 02142 , United States.

Department of Biology , Massachusetts Institute of Technology , Cambridge , Massachusetts 02139 , United States.

出版信息

ACS Chem Biol. 2018 Dec 21;13(12):3343-3353. doi: 10.1021/acschembio.8b00821. Epub 2018 Dec 10.

Abstract

Aromatic l-amino acid decarboxylases (AAADs) are a phylogenetically diverse group of enzymes responsible for the decarboxylation of aromatic amino acid substrates into their corresponding aromatic arylalkylamines. AAADs have been extensively studied in mammals and plants as they catalyze the first step in the production of neurotransmitters and bioactive phytochemicals, respectively. Unlike mammals and plants, the hallucinogenic psilocybin mushroom Psilocybe cubensis reportedly employs an unrelated phosphatidylserine-decarboxylase-like enzyme to catalyze l-tryptophan decarboxylation, the first step in psilocybin biosynthesis. To explore the origin of this chemistry in psilocybin mushroom, we generated the first de novo transcriptomes of P. cubensis and investigated several putative l-tryptophan-decarboxylase-like enzymes. We report the biochemical characterization of a noncanonical AAAD from P. cubensis ( PcncAAAD) that exhibits substrate permissiveness toward l-phenylalanine, l-tyrosine, and l-tryptophan, as well as chloro-tryptophan derivatives. The crystal structure of PcncAAAD revealed the presence of a unique C-terminal appendage domain featuring a novel double-β-barrel fold. This domain is required for PcncAAAD activity and regulates catalytic rate and thermal stability through calcium binding. PcncAAAD likely plays a role in psilocybin production in P. cubensis and offers a new tool for metabolic engineering of aromatic-amino-acid-derived natural products.

摘要

芳香族 l-氨基酸脱羧酶(AAAD)是一组在进化上多样化的酶,负责芳香族氨基酸底物的脱羧作用,生成相应的芳香族芳烷基胺。AAAD 在哺乳动物和植物中得到了广泛的研究,因为它们分别催化神经递质和生物活性植物化学物质生产的第一步。与哺乳动物和植物不同,致幻蘑菇 Psilocybe cubensis 据报道使用一种不相关的磷脂酰丝氨酸脱羧酶样酶来催化 l-色氨酸脱羧作用,这是合成 psilocybin 的第一步。为了探索致幻蘑菇中这种化学物质的起源,我们生成了 P. cubensis 的第一个从头转录组,并研究了几种假定的 l-色氨酸脱羧酶样酶。我们报告了一种非典型 AAAD 的生化特征,该酶来自 P. cubensis(PcncAAAD),对 l-苯丙氨酸、l-酪氨酸和 l-色氨酸以及氯代色氨酸衍生物具有底物宽容性。PcncAAAD 的晶体结构揭示了存在一个独特的 C 末端附加结构域,具有新颖的双β-桶折叠。该结构域是 PcncAAAD 活性所必需的,通过钙结合调节催化速率和热稳定性。PcncAAAD 可能在 P. cubensis 中参与 psilocybin 的产生,并为芳香族氨基酸衍生天然产物的代谢工程提供了新的工具。

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