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Structural and sequence comparisons of bacterial enoyl-CoA isomerase and enoyl-CoA hydratase

Authors :
Chang Sook Jeong
Jun Hyuck Lee
Sung Gu Lee
Han-Woo Kim
Chang Woo Lee
Hak Jun Kim
Chang-Sup Lee
Hyun Park
Ui Joung Youn
Hyun Ho Park
Tae-Jin Oh
Jisub Hwang
Seung Chul Shin
Source :
Journal of Microbiology. 58:606-613
Publication Year :
2020
Publisher :
Springer Science and Business Media LLC, 2020.

Abstract

Crystal structures of enoyl-coenzyme A (CoA) isomerase from Bosea sp. PAMC 26642 (BoECI) and enoyl-CoA hydratase from Hymenobacter sp. PAMC 26628 (HyECH) were determined at 2.35 and 2.70 Å resolution, respectively. BoECI and HyECH are members of the crotonase superfamily and are enzymes known to be involved in fatty acid degradation. Structurally, these enzymes are highly similar except for the orientation of their C-terminal helix domain. Analytical ultracentrifugation was performed to determine the oligomerization states of BoECI and HyECH revealing they exist as trimers in solution. However, their putative ligand-binding sites and active site residue compositions are dissimilar. Comparative sequence and structural analysis revealed that the active site of BoECI had one glutamate residue (Glu135), this site is occupied by an aspartate in some ECIs, and the active sites of HyECH had two highly conserved glutamate residues (Glu118 and Glu138). Moreover, HyECH possesses a salt bridge interaction between Glu98 and Arg152 near the active site. This interaction may allow the catalytic Glu118 residue to have a specific conformation for the ECH enzyme reaction. This salt bridge interaction is highly conserved in known bacterial ECH structures and ECI enzymes do not have this type of interaction. Collectively, our comparative sequential and structural studies have provided useful information to distinguish and classify two similar bacterial crotonase superfamily enzymes.

Details

ISSN :
19763794 and 12258873
Volume :
58
Database :
OpenAIRE
Journal :
Journal of Microbiology
Accession number :
edsair.doi.dedup.....d86f61e039d21d3468e7ded93aff91fd
Full Text :
https://doi.org/10.1007/s12275-020-0089-1