Efficient enzymaticsynthesis of L-carnosine (L-Car) is often limited by competing hydrolysis and side reactions that reduce substrate utilization and product yield. In this study, a β-aminopeptidase (CbAP) from Caulobacter sp. was systematically engineered to enhance catalytic selectivity toward L-Car using β-alaninamide and L-histidine as substrates. Analysis of β-alaninamide-derived byproducts revealed two major competing pathways, namely β-alaninamide hydrolysis and self-ligation into short oligopeptides. To evaluate the balance between L-Car synthesis and competing reactions, a composite apparent selectivity index (RS) was introduced. Structure-guided mutagenesis targeting residues within 4-6 Å of the active site identified several improved variants. Iterative combination of beneficial mutations yielded the optimal mutant CbAPQ138FF96Y (CbAPM2), exhibiting an approximately 2.3-fold increase in RS relative to Q138F and an approximately 3.1-fold increase relative to the wild-type enzyme, with substantial suppression of undesired side reactions. Molecular dynamics simulations indicated that these improvements arise from reduced substrate binding stability and disrupted hydrogen-bonding interactions with β-alaninamide and L-Car. Under optimized 10 mL-scale conditions, CbAPM2 produced 37.3 mM L-Car within 1 h, corresponding to a 74.6% yield based on β-alanine methyl ester, with an STY of 8.44 g L- 1 h-1.
R reverse screening as an effective approach for evolving transaminases toward sterically hindered substrates is validates reverse screening as an effective approach for evolving transaminases toward sterically hindered substrates and highlights RTA-223 as a promising candidate for further biocatalyst development.
Matthew Treadell, Gareth R E Surman, G. Ford et al.· RSC Chemical Biology· 0 citations
This work establishes an efficient E. coli chassis for sustainable BIAs production by systematically tackling flux imbalance and enzyme solubility and combined solubility-enhancing strategies.
Xia-Xia Zhang, Muhammad Hassan Butt, Wen Zhang et al.· ACS Synthetic Biology· 0 citations
Results indicated that AuHex92-pNP-GlcNAc exhibited a stable, compact conformation, which enhanced its substrate affinity and transglycosylation activity, which establishes a foundation for producing (GlcNAc)3 in the food, chemical, and pharmaceutical industries.
Tian-Yu Wang, Xue-Jing Liu, Qing-Xuan Zhao et al.· Journal of Agricultural and...· 0 citations
Microbial transglutaminase (MTGase) specifically catalyzes the conjugation between primary amine-containing molecules and glutamine residues, making it a promising enzymatic approach for producing homogeneous antibody-drug conjugates (ADCs). However, this strategy faces challenges associated with glycan-induced steric...
Kan Yu, Zhe Wang, Xin-Xin Chen et al.· Bioorganic chemistry (Print)· 0 citations
(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.· International Journal of Bio...· 0 citations
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