Dynamics of loops at the substrate entry channel determine the specificity of iridoid synthases

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Abstract

Iridoid synthases belong to the family of short-chain dehydrogenase/reductase involved in the biosynthesis of iridoids. Despite having high sequence and structural homology with progesterone 5β-reductase, these enzymes exhibit differential substrate specificities. Previously, two loops, L1 and L2 at substrate-binding pocket, were suggested to be involved in generating substrate specificity. However, the structural basis of specificity determinants was elusive. Here, combining sequence and structural analysis, site-directed mutagenesis, and molecular dynamics simulations, we have shown that iridoid synthase contains two channels for substrate entry whose geometries are altered by L1-L2 dynamics, primarily orchestrated by interactions of residues Glu161 and Gly162 of L1 and Asn358 of L2. A complex interplay of these interactions confer the substrate specificity to the enzyme.

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Sandholu, A. S., Mohole, M., Duax, W. L., Thulasiram, H. V., Sengupta, D., & Kulkarni, K. (2018). Dynamics of loops at the substrate entry channel determine the specificity of iridoid synthases. FEBS Letters, 592(15), 2624–2635. https://doi.org/10.1002/1873-3468.13174

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