PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 26, 2026JACS Au0 citationsOpen Access

Enantioselective Hydration of Non-CoA Enoyl-Thioesters by Enoyl-CoA Hydratase (ECH): Activation of the Active Site Oxyanion Hole with 3′,5′-Adenosine-Diphosphate Enables Competent Catalysis

View Full Paper
SDSubhadra DalwaniPMPradip Kumar MondalWSWerner Schmitz

Key Points

  • The aim is to explore the hydration of non-CoA enoyl-thioesters by ECH and the role of 3′,5′-ADP in enhancing catalysis.
  • Utilized ECH enzyme for hydration reactions on PAN thioesters with the addition of 3′,5′-ADP.
  • Conducted structural enzymology studies to investigate interactions between ECH, ADP, and the oxyanion hole.
  • Evaluated the substrates' steric demands and functionalities during the enzymatic reactions.
  • Achieved high yields of 3-hydroxyacyl-PAN thioesters with excellent stereoselectivities (>99:<1 3S:3R).
  • No side products detected even with reactive functionalities like bromide or methyl esters.
  • Identified a competent oxyanion hole formed by interactions with ADP that enhances catalytic efficiency.

Abstract

Thioester chemistry is exploited in Nature by many CoA-dependent enzymes. However, the covalent nature of CoA attachment largely prevents the use of these enzymes in many applications. Replacing the CoA moiety with simpler, truncated fragments, such as its pantetheine (PAN) moiety, is also hampered by the lack of understanding of the function of the CoA moiety in enzymatic conversions. Herein, we describe the utilization of the enzyme (2E)-enoyl-CoA hydratase (ECH) using PAN thioesters and an activator, 3′,5′-ADP (PAP). ECH catalyzes the hydration of the carbon–carbon double bond of (2E)-enoyl-CoA substrates in the β-oxidation lipid-degrading pathway. The hydration reaction is very challenging to carry out by traditional chemical synthesis, as no selective catalysts are available. Structural enzymology of ECH and its complexes with (3S)-hydroxyacyl-CoA products show that hydrogen bonds between the adenine 6-amino group of the ADP moiety of CoA and loop-2 induce a small structural change in this active site loop, tightening the NN distance between the hydrogen bond donors of the oxyanion hole from 5.2 Å (unliganded) to 4.0 Å and forming a competent oxyanion hole at the catalytic site. A structurally similar and catalytically competent oxyanion hole is observed in the complex with (3S)-hydroxyhexanoyl PAN and the activator 3′,5′-ADP, both bound at the active site. The use of 3′,5′-ADP as the activator enables the synthetic use of ECH for the hydration of a wide range of (2E)-enoyl-PAN substrates with different steric demands and functionalities. The products, 3-hydroxyacyl-PAN thioesters, were obtained in good isolated yields and excellent stereoselectivities (typically >99:<1 3S:3R). Even for acyl chains that contain reactive groups such as bromide or methyl ester functionalities at C7, no side products resulting from potentially competing cyclization could be detected in the enzymatic hydration protocol.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Dalwani et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc37fdc3bde4489177f5https://doi.org/10.1021/jacsau.6c00054
Ask AI
Helpful
Bookmark
Share
View Full Paper

Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Controlling Enantioselectivity of Halohydrin Dehalogenase for Asymmetric Synthesis of Chiral Epichlorohydrin2026
  2. 2Enantioselective Synthesis of <i>α</i> ‐Hydroxy‐ <i>β</i> ‐Amino Ketones via Engineered <scp>ThDP</scp> ‐Dependent Enzyme Catalysis2026
  3. 3Regioselective Hydration of Terpenes with Cofactor‐Independent Carotenoid 1,2‐Hydratase2025
  4. 4Co(II)-Catalyzed Isomerization of Enals using Hydrogen Atom Transfer2024
  5. 5Engineering of Elizabethkingia meningoseptica Oleate Hydratase with Enhanced Activity: High-Yielding Synthesis of 10-Hydroxy Fatty Acids2026