An ice-binding and tandem beta-sandwich domain-containing protein in Shewanella frigidimarina is a potential new type of ice adhesin

The FEBS Journal
Tyler D R VancePeter L Davies

Abstract

Out of the dozen different ice-binding protein (IBP) structures known, the DUF3494 domain is the most widespread, having been passed many times between prokaryotic and eukaryotic microorganisms by horizontal gene transfer. This ~25-kDa β-solenoid domain with an adjacent parallel α-helix is most commonly associated with an N-terminal secretory signal peptide. However, examples of the DUF3494 domain preceded by tandem Bacterial Immunoglobulin-like (BIg) domains are sometimes found, though uncharacterized. Here, we present one such protein (SfIBP_1) from the Antarctic bacterium Shewanella frigidimarina. We have confirmed and characterized the ice-binding activity of its ice-binding domain using thermal hysteresis measurements, fluorescent ice plane affinity analysis, and ice recrystallization inhibition assays. X-ray crystallography was used to solve the structure of the SfIBP_1 ice-binding domain, to further characterize its ice-binding surface and unique method of stabilizing or 'capping' the ends of the solenoid structure. The latter is formed from the interaction of two loops mediated by a combination of tandem prolines and electrostatic interactions. Furthermore, given their domain architecture and membrane association, we pr...Continue Reading

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Citations

Sep 27, 2018·Physical Chemistry Chemical Physics : PCCP·Hidemasa KondoMaddalena Bayer-Giraldi
Jan 27, 2019·The FEBS Journal·Tyler D R VanceMarco Mangiagalli
May 12, 2019·Biomolecules·Heather E TomaltyPeter L Davies
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Mar 12, 2020·International Journal of Biological Macromolecules·Hong XiangYong Hu
Sep 11, 2018·Langmuir : the ACS Journal of Surfaces and Colloids·Aleksei KaledaIdo Braslavsky

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