Engineering of human tryptophan hydroxylase 2 for efficient synthesis of 5-hydroxytryptophan

Int J Biol Macromol. 2024 Mar;260(Pt 1):129484. doi: 10.1016/j.ijbiomac.2024.129484. Epub 2024 Jan 17.

Abstract

L-Tryptophan hydroxylation catalyzed by tryptophan hydroxylase (TPH) presents a promising method for synthesizing 5-hydroxytryptophan (5-HTP), yet the limited activity of wild-type human TPH2 restricts its application. A high-activity mutant, MT10 (H318E/H323E), was developed through semi-rational active site saturation testing (CAST) of wild-type TPH2, exhibiting a 2.85-fold increase in kcat/Km over the wild type, thus enhancing catalytic efficiency. Two biotransformation systems were developed, including an in vitro one-pot system and a Whole-Cell Catalysis System (WCCS). In the WCCS, MT10 achieved a conversion rate of only 31.5 % within 32 h. In the one-pot reaction, MT10 converted 50 mM L-tryptophan to 44.5 mM 5-HTP within 8 h, achieving an 89 % conversion rate, outperforming the M1 (NΔ143/CΔ26) variant. Molecular dynamics simulations indicated enhanced interactions of MT10 with the substrate, suggesting improved binding affinity and system stability. This study offers an effective approach for the efficient production of 5-HTP.

Keywords: 5-Hydroxytryptophan; Molecular dynamics simulation; Semi-rational combinatorial active site saturation testing; Tryptophan hydroxylase.

MeSH terms

  • 5-Hydroxytryptophan* / metabolism
  • Catalytic Domain
  • Humans
  • Hydroxylation
  • Tryptophan / chemistry
  • Tryptophan Hydroxylase* / chemistry
  • Tryptophan Hydroxylase* / genetics
  • Tryptophan Hydroxylase* / metabolism

Substances

  • 5-Hydroxytryptophan
  • Tryptophan Hydroxylase
  • Tryptophan