Lemak_2026_Febs.j__

Reference

Title : Crystal structure and biochemical analysis of the polyester-degrading carboxylesterase SM0281 from the symbiotic legume-associated rhizobacterium Sinorhizobium (Ensifer) meliloti - Lemak_2026_Febs.j__
Author(s) : Lemak S , Khusnutdinova AN , Stogios PJ , Evdokimova E , Savchenko A , Golyshin PN , Edwards EA , Yakunin AF
Ref : Febs J , : , 2026
Abstract :

The microbial degradation of synthetic polyesters such as polyethylene terephthalate (PET) is mediated by diverse alpha/beta-hydrolases, many of which remain poorly characterized. In this study, we investigated SM0281, an uncharacterized alpha/beta-hydrolase from the symbiotic legume-associated rhizobacterium Sinorhizobium meliloti. Sequence analysis revealed that SM0281 shares low similarity with known polyester-degrading enzymes. Biochemical characterization of purified SM0281 demonstrated that it is a carboxylesterase with preference for medium-chain length monoester substrates (C4-C8) and displays broad tolerance to pH, salts, glycerol, and organic solvents, with maximal activity at 30 degreesC and notable cold tolerance. In addition to monoesters, SM0281 hydrolyzed the PET model substrate bis(benzoyloxyethyl) terephthalate (3PET), producing predominantly mono(2-hydroxyethyl) terephthalate (MHET), and showed detectable activity toward emulsified PET, polycaprolactone (PCL), and poly(D,L-lactide) (PLA). The crystal structure of SM0281 was determined at 2.46 A resolution and revealed a classical alpha/beta-hydrolase core domain associated with a small lid domain positioned above the catalytic Ser121. Three polyethylene glycol (PEG) molecules were observed bound to the lid domain, with one molecule (PEG1) occupying a tunnel-like cavity connecting the protein surface to the active site and suggesting a potential route for polyester binding. Structure-guided mutational analysis identified several residues from both the core domain (Tyr53, Arg54, Asp230) and the lid domain (Phe160, Leu164, Ile165, Phe183, Phe196) that contribute to catalytic activity toward monoester and polyester substrates. Together, these results expand the diversity of structurally characterized polyester-active alpha/beta-hydrolases containing lid domains and provide insights into the molecular determinants of substrate recognition and hydrolysis in these enzymes.

PubMedSearch : Lemak_2026_Febs.j__
PubMedID: 42770702
Gene_locus related to this paper: rhime-R00281

Related information

Substrate BETEB    BHET    Polycaprolactone
Gene_locus rhime-R00281
Structure 8TRF

Citations formats

Lemak S, Khusnutdinova AN, Stogios PJ, Evdokimova E, Savchenko A, Golyshin PN, Edwards EA, Yakunin AF (2026)
Crystal structure and biochemical analysis of the polyester-degrading carboxylesterase SM0281 from the symbiotic legume-associated rhizobacterium Sinorhizobium (Ensifer) meliloti
Febs J :

Lemak S, Khusnutdinova AN, Stogios PJ, Evdokimova E, Savchenko A, Golyshin PN, Edwards EA, Yakunin AF (2026)
Febs J :