Arogenate dehydratase isoforms strategically deregulate phenylalanine biosynthesis in Akebia trifoliata

Int J Biol Macromol. 2024 Jun;271(Pt 1):132587. doi: 10.1016/j.ijbiomac.2024.132587. Epub 2024 May 22.

Abstract

Arogenate dehydratase (ADT) is key for phenylalanine (Phe) biosynthesis in plants. To examine ADT components and function in Akebia trifoliata, a representative of Ranunculaceae, we first identified eight ADTs (AktADT1-8, encoding sequences varying from 1032 to 1962 bp) in the A. trifoliata reference genome and five proteins (AktADT1, AktADT4, AktADT7, AktADT8 and AktADT8s) with moonlighting prephenate dehydratase (PDT) activity and Km values varying from 0.43 to 2.17 mM. Structurally, two basic residue combinations (Val314/Ala317 and Ala314/Val317) in the PAC domain are essential for the moonlighting PDT activity of ADTs. Functionally, AktADT4 and AktADT8 successfully restored the wild-type phenotype of pha2, a knockout mutant of Saccharomyces cerevisiae. In addition, AktADTs are ubiquitously expressed, but their expression levels are tissue specific, and the half maximal inhibitory concentration (IC50) of Phe for AktADTs ranged from 49.81 to 331.17 μM. Both AktADT4 and AktADT8 and AktADT8s localized to chloroplast stromules and the cytosol, respectively, while the remaining AktADTs localized to the chloroplast stroma. These findings suggest that various strategies exist for regulating Phe biosynthesis in A. trifoliata. This provides a reasonable explanation for the high Phe content and insights for further genetic improvement of the edible fruits of A. trifoliata.

Keywords: Akebia trifoliata; Arogenate dehydratase; Complementation assay; Phenylalanine biosynthesis; Subcellular localization.

MeSH terms

  • Amino Acid Sequence
  • Gene Expression Regulation, Plant
  • Hydro-Lyases* / genetics
  • Hydro-Lyases* / metabolism
  • Isoenzymes / genetics
  • Isoenzymes / metabolism
  • Phenylalanine* / metabolism
  • Plant Proteins / genetics
  • Plant Proteins / metabolism
  • Saccharomyces cerevisiae / genetics

Substances

  • Phenylalanine
  • Hydro-Lyases
  • pretyrosine dehydratase
  • Isoenzymes
  • Plant Proteins