Skip to content

Engineering an F-Amine Dehydrogenase for Efficient and Sustainable Biocatalytic Synthesis of a Chiral PDE10 Inhibitor Precursor

Sep 2026 · ACS Sustainable Chemistry & Engineering · 0 citations · 71 references

Abstract

(R)–4-(1H-indol-3-yl)butan-2-amine ((R)-4IBA), encompassing a nitrogen heterocycle and a chiral primary amino group, is a highly appealing precursor in the pharmaceutical domain. The direct amination of the readily available prochiral ketone 4-(1H-indol-3-yl)butan-2-one (4IBO) catalyzed by amine dehydrogenases (AmDHs) represents a green and sustainable synthetic route for (R)-4IBA, as it consumes only ammonia and releases water as the sole byproduct. However, AmDH-based biocatalytic synthesis of (R)-4IBA remains challenging due to the absence of available AmDH biocatalysts. Here, we engineered the phenylalanine AmDH originating from Bacillus badius (F-BbAmDH) for the biocatalytic synthesis of (R)-4IBA. By combining combinatorial active-site saturation test (CAST) and focused rational iterative site-specific mutagenesis (FRISM) strategies, a quintuple mutant M3-1 (V144G/L306V/V309G/Q308A/T124A) was identified with a 56.6-fold increased kcat/Km value toward substrate 4IBO. The practical application potential of M3-1 was verified in a preparative-scale biosynthesis of (R)-4IBA with a substrate fed-batch strategy. A total of 109.6 mM 4IBO was effectively transformed with 91.7% conversion after four times fed-batch operations, and the product (R)-4IBA was prepared in 82.4% isolated yield and up to 99% ee. Our work presents the first instance of the preparation of (R)-4IBA through enzyme-based sustainable biosynthesis.

View source

Similar papers

Open access Sep 2026

Engineering an (R)-Selective Transaminase for High-Substrate-Loading Asymmetric Amination of a Sterically Demanding N-Heterocyclic Ketone.

The biocatalytic asymmetric amination of bulky N-heterocyclic ketones is often limited by low enzyme activity and poor performance at high substrate loading. Herein, we developed an efficient (R)-selective transaminase for the synthesis of (R)-1-Boc-3-aminopiperidine through an integrated strategy combining phylogeny-g...

Zhe Dou, Hui-Xuan Yan, Cheng Xu et al. · 0 citations
Sep 2026

Substrate-pocket reshaping of an (R)-selective transaminase enables efficient asymmetric synthesis of (R)-3-amino-1-butanol.

(R)-Selective ω-transaminases are valuable biocatalysts for the synthesis of chiral amines and pharmaceutical intermediates, but their practical application is often limited by insufficient catalytic efficiency, poor operational stability and unfavorable reaction equilibrium. Here, an Actinomycete-derived (R)-selective...

Xin-Yu Lu, Feng Guo, Cao-Kai Zhu et al. · 0 citations
Open access Oct 2026

Ni(II)-Mediated Asymmetric Synthesis of a Conjugated Diyne-ContainingNon-Proteinogenic Amino Acid via Glaser Heterocoupling

Non-proteinogenic amino acids bearing acetylenic motifs are valuable building blocks in medicinal chemistry and chemical biology due to their structural rigidity, synthetic versatility, and biological relevance. Herein, we report an asymmetric synthesis of (S)-2-amino-8-(3,4-dihydroisoquinolin-2(1H)-yl)octa-4,6-diynoic...

Emma A. Khachatryan · 0 citations
Aug 2026

Dynamically Coupled Network-Guided Engineering of Amine Dehydrogenase With Cofactor Recycling for Efficient Biosynthesis of (R)-3-Aminobutanol.

(R)-3-Aminobutanol is a valuable chiral amino alcohol widely used in the pharmaceutical industry. The amine dehydrogenase (AmDH)-catalyzed synthesis with inorganic ammonia as the amine donor represents one of the most promising routes for its production. However, this approach is limited by the low catalytic efficiency...

Teng‐Kun Huang, Cen Huang, Du Wu et al. · 0 citations
Aug 2026

Sustainable Synthesis of Furfurylamine and Its Derivative N -(Furan-2-ylmethyl)acetamide through Hybrid Biocatalysis

In recent years, with the development of protein engineering and synthetic biology, biocatalytic systems have gradually evolved from single-enzyme reactions to multi-enzyme synergistic whole-cell catalysis. In this study, a dual-cycle regeneration system for amine donor and cofactor recycling was established by coupl...

Xiaoran Liu, Yu-Cai He · 0 citations

We use cookies to run the site and, with your consent, for analytics and to show ads. See our Cookie Policy.